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		<title>Mongabay India</title>
		<atom:link href="https://india.mongabay.com/feed/?topic=ecology&#038;type=post" rel="self" type="application/rss+xml" />
		<link>https://india.mongabay.com/list/ecology/</link>
		<description>India&#039;s environmental science and conservation news</description>
		<lastBuildDate>Wed, 05 Aug 2026 08:57:08 +0000</lastBuildDate>
		<language>en-US</language>
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				<item>
					<title>Rare lynx photo puts spotlight on high-altitude rangelands</title>
					<link>https://india.mongabay.com/2026/08/rare-lynx-photo-puts-spotlight-on-high-altitude-rangelands/</link>
					<comments>https://india.mongabay.com/2026/08/rare-lynx-photo-puts-spotlight-on-high-altitude-rangelands/?noamp=mobile#respond</comments>
					<pubDate>04 Aug 2026 15:20:02 +0000</pubDate>
											<dc:creator>
							<![CDATA[Manish Chandra Mishra]]>
						</dc:creator>
										<author>
						<![CDATA[Shailesh Shrivastava]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[carnivores]]></category>
		<category><![CDATA[eastern himalayas]]></category>
		<category><![CDATA[Eurasian lynx]]></category>
		<category><![CDATA[Sikkim Himalayas]]></category>
		<category><![CDATA[snow leopard]]></category>
		<category><![CDATA[snow leopards]]></category>
		<category><![CDATA[Tibetan plateau]]></category>
		<category><![CDATA[wolf]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/08/04131014/Eurasian-lynx-1-Sikkim-Forest-Dept-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39845</guid>

											<reporting-project>
							<![CDATA[Almost Famous Species]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Sikkim]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Big Cats, Biodiversity, Camera traps, Cats, Conservation, Ecology, Endangered species, Himalayas, In-situ conservation, Mountains, Photos, Positive Environmental, Technology and Conservation, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[A Eurasian lynx has been recorded in a camera-trap image from the Tso Lhamo plateau in Sikkim. This encounter marks the first confirmed photographic evidence of the species in the state. It is also the second such record from the Eastern Himalayas. The image, captured in January 2026 at an altitude of 5,250 metres in [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[A Eurasian lynx has been recorded in a camera-trap image from the Tso Lhamo plateau in Sikkim. This encounter marks the first confirmed photographic evidence of the species in the state. It is also the second such record from the Eastern Himalayas. The image, captured in January 2026 at an altitude of 5,250 metres in Mangan district, shows the animal moving across a rocky, sparsely vegetated high-altitude slope. The sighting comes from a long-term snow leopard and rangeland monitoring programme led by the Sikkim forest department and WWF-India. The initiative tracks snow leopards and associated wildlife while studying the ecological condition of the trans-Himalayan rangelands. The Sikkim record follows a 2025 photographic documentation of a Eurasian lynx in Arunachal Pradesh during a joint survey by WWF-India and the Arunachal Pradesh forest department. “It highlights the ecological significance of our high-altitude rangelands and reinforces our commitment to protecting these fragile ecosystems. The cooperation of the Lachen Dzumsa (traditional local self-governance body) in facilitating access to these remote areas has been important to this work,” Sikkim’s Chief Conservator of Forests (Wildlife), Udai Gurung, said in a press note. At the Tso Lhamo plateau in Sikkim, researchers captured camera-trap images of a Eurasian lynx, along with several other elusive species. High-altitude rangelands like this region have wrongly been dismissed as barren deserts of little ecological value. Image courtesy of Forest &amp; Environment Department, Sikkim, and WWF-India. The images are part of a long-term snow leopard and trans-Himalayan rangeland monitoring programme. Image courtesy of&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/08/rare-lynx-photo-puts-spotlight-on-high-altitude-rangelands/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://india.mongabay.com/2026/08/rare-lynx-photo-puts-spotlight-on-high-altitude-rangelands/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
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						<item>
					<title>Scientists identify new deep-sea shark species from India’s southwest coast</title>
					<link>https://india.mongabay.com/2026/08/scientists-identify-new-deep-sea-shark-species-from-indias-southwest-coast/</link>
					<comments>https://india.mongabay.com/2026/08/scientists-identify-new-deep-sea-shark-species-from-indias-southwest-coast/?noamp=mobile#respond</comments>
					<pubDate>04 Aug 2026 12:15:07 +0000</pubDate>
											<dc:creator>
							<![CDATA[Ananya Singh]]>
						</dc:creator>
										<author>
						<![CDATA[Priyanka Shankar]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[bycatch]]></category>
		<category><![CDATA[deep seas]]></category>
		<category><![CDATA[fisheries]]></category>
		<category><![CDATA[shark]]></category>
		<category><![CDATA[trawling]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/08/04130134/A_drona_holotype_image_male-1-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39826</guid>

											<reporting-project>
							<![CDATA[Almost Famous Species]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Kerala]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Coast, Conservation, Ecology, Fish, Fishing, New species, Oceans, Overfishing, Positive Environmental, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[A deep-sea catshark caught off Kerala’s coast has now been identified as a new species, highlighting the need for better understanding of deep-sea biodiversity. In 2022, a team of scientists sifting through the bycatch of deep-sea shrimp trawlers came across a black, slender-bodied fish with an angular, pointed snout and striking white eyes. This fish [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[A deep-sea catshark caught off Kerala’s coast has now been identified as a new species, highlighting the need for better understanding of deep-sea biodiversity. In 2022, a team of scientists sifting through the bycatch of deep-sea shrimp trawlers came across a black, slender-bodied fish with an angular, pointed snout and striking white eyes. This fish had been caught at a depth of 400-650 metres at Kollam slope, a continental slope in the southeastern Arabian Sea off Kerala’s coast, designated as an Important Shark and Ray Area. The team confirmed that it belonged to the genus Apristurus — a group of deepwater catsharks — and brought it back to the lab for further examination. Two years later, the researchers collected three additional specimens at Sakthikulangara Fisheries Harbour, Kollam, during monitoring surveys. Through morphological and molecular analyses of the four specimens, the team found that this species was distinct from others within the genus and described it as a new species of deepwater catshark (Apristurus drona) in their paper published earlier this year in Zootaxa. The objective of the study, part of a larger project under the Ministry of Earth Sciences’ Deep Ocean Mission, was to explore the diversity of deep-sea chondrichthyans which are cartilaginous fish such as sharks (Selachimorpha), rays and skates (Batoidea) and chimaeras (Holocephali) and resolve some of the taxonomic confusion around them. “From biodiversity inventory surveys, we have realised that our understanding of deep-sea biodiversity is limited,” said Bineesh K.K., the study’s corresponding author and a scientist at&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/08/scientists-identify-new-deep-sea-shark-species-from-indias-southwest-coast/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://india.mongabay.com/2026/08/scientists-identify-new-deep-sea-shark-species-from-indias-southwest-coast/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
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						<item>
					<title>Flies are overlooked pollinators and farmers’ friends</title>
					<link>https://india.mongabay.com/2026/08/flies-are-overlooked-pollinators-and-farmers-friends/</link>
					<comments>https://india.mongabay.com/2026/08/flies-are-overlooked-pollinators-and-farmers-friends/?noamp=mobile#respond</comments>
					<pubDate>03 Aug 2026 13:24:32 +0000</pubDate>
											<dc:creator>
							<![CDATA[Geetha Iyer]]>
						</dc:creator>
										<author>
						<![CDATA[Priyanka Shankar]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[flies]]></category>
		<category><![CDATA[pollination]]></category>
		<category><![CDATA[pollinators]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/08/03095032/Syrphid-fly-from-Ladakh-e1785731238147-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39793</guid>

											<reporting-project>
							<![CDATA[Almost Famous Species]]>
						</reporting-project>
					
											<locations>
							<![CDATA[India]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Conservation, Ecology, Ecosystem services, and Insects]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Say flies, and one instantly thinks about dirt and disease. But in truth they are among the cleanest of insects. They are a grossly misunderstood order of insects. They are excellent pollinators, aid in criminal investigation, composting, pest control and increasing soil fertility, and of course in scientific research. They are the true flies. Why [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Say flies, and one instantly thinks about dirt and disease. But in truth they are among the cleanest of insects. They are a grossly misunderstood order of insects. They are excellent pollinators, aid in criminal investigation, composting, pest control and increasing soil fertility, and of course in scientific research. They are the true flies. Why are true flies named so? Several insects such as the butterflies, dragonflies, mayflies, or fireflies bear the word ‘flies’ in their names, but they are not flies. To distinguish what we know as the fly from such insects, they are described as true flies. These are insects that have only one pair of wings. In true flies (referred to in this article as fly/flies) the hind wings are reduced to a pair of club-shaped structures called halteres and so fly using only one pair of wings. To stay airborne and move forward, the fly must beat its wings as much as two hundred times a second. That is also why it is difficult to swat flies. The halteres function as gyroscopes, providing fine balances during flight. Flies can therefore perform complex movements in flight to deftly avoid any obstacles or swats. Along with their close relatives, the midges and mosquitoes, flies belong to the order Diptera (Di, meaning two; ptera, meaning wings). Of the 27 orders of insects, Diptera ranks second for abundance. The housefly being the frequently seen one, there is a general impression that all flies are dark and drab like them. Many&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/08/flies-are-overlooked-pollinators-and-farmers-friends/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
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						<item>
					<title>A newly-described fish sheds light on a biodiversity blind spot</title>
					<link>https://india.mongabay.com/2026/07/a-newly-described-fish-sheds-light-on-a-biodiversity-blind-spot/</link>
					<comments>https://india.mongabay.com/2026/07/a-newly-described-fish-sheds-light-on-a-biodiversity-blind-spot/?noamp=mobile#respond</comments>
					<pubDate>31 Jul 2026 10:42:59 +0000</pubDate>
											<dc:creator>
							<![CDATA[Monish Upadhyay]]>
						</dc:creator>
										<author>
						<![CDATA[Aditi Tandon]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[freshwater]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/31003452/Image-2-768x512.jpeg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39744</guid>

											<reporting-project>
							<![CDATA[Beyond Protected Areas]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Nagaland]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Conservation, Ecology, Fish, Forests, Himalayas, New species, Rivers, Water, Water Pollution, and Wetlands]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[A new catfish species, Pseudecheneis likimroensis, has been described from India&#8217;s north-eastern state of Nagaland. The species, named after the fast-flowing Likimro river, from which specimens have been collected so far, was described in the Journal of Ichthyology. The discovery took place unexpectedly when a research team was in the region to survey fish fauna [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[A new catfish species, Pseudecheneis likimroensis, has been described from India&#8217;s north-eastern state of Nagaland. The species, named after the fast-flowing Likimro river, from which specimens have been collected so far, was described in the Journal of Ichthyology. The discovery took place unexpectedly when a research team was in the region to survey fish fauna in Nagaland’s Kiphire district, said Limatemjen, co-author of the paper on the new species. Kiphire is a remote district, situated in the eastern part of the state and lies along the India-Myanmar border. “First we had to travel from Kohima to Kiphire, covering a distance of around 100 km. However, the journey takes much longer due to difficult road conditions,” Limatemjen, a professor of Zoology and Dean of Sciences at Kohima Science College, told Mongabay-India. After reaching Kiphire, the team took another four-hour journey to Likimro river where they walked yet another hour to reach the designated sampling site. Characteristic of mountain streams, the sampling site is torrential in nature and is surrounded by steep valleys. Around five specimens of Pseudecheneis likimroensis were collected by the team during the survey in October 2024. Although initially surprised by the unusual catch, found at an elevation of 446 m above sea level, it was only after bringing the specimens to the laboratory and running detailed examinations did the team realise they had an undescribed species at hand. A Pseudecheneis likimroensis specimen found in the fast flowing Likimro river in Nagaland in 2024. The species was described in&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/a-newly-described-fish-sheds-light-on-a-biodiversity-blind-spot/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://india.mongabay.com/2026/07/a-newly-described-fish-sheds-light-on-a-biodiversity-blind-spot/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
														</item>
						<item>
					<title>Insects may be guiding seasonal bird movements in the eastern Himalayas, study finds</title>
					<link>https://india.mongabay.com/2026/07/insects-may-be-guiding-seasonal-bird-movements-in-the-eastern-himalayas-study-finds/</link>
					<comments>https://india.mongabay.com/2026/07/insects-may-be-guiding-seasonal-bird-movements-in-the-eastern-himalayas-study-finds/?noamp=mobile#respond</comments>
					<pubDate>28 Jul 2026 10:45:47 +0000</pubDate>
											<dc:creator>
							<![CDATA[Manjeera Gowravaram]]>
						</dc:creator>
										<author>
						<![CDATA[Aditi Tandon]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[eastern himalayas]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/28092911/image-1-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39660</guid>

											<reporting-project>
							<![CDATA[Beyond Protected Areas]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Himalayas]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Animal Behaviour, Biodiversity, Birds, Climate Change, Climate Change Adaptation, Community based conservation, Conservation, Ecology, Forests, Global Warming, Insects, Migration, Mountains, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Every winter, in the Himalayas of Arunachal Pradesh, certain birds like babblers, laughing thrushes, yuhinas and other small mountain birds, that spent the warm months at the top of the mountains, begin making their way down. Many of them don&#8217;t really fly at all, they just hop, branch by branch, tree by tree, descending hundreds [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Every winter, in the Himalayas of Arunachal Pradesh, certain birds like babblers, laughing thrushes, yuhinas and other small mountain birds, that spent the warm months at the top of the mountains, begin making their way down. Many of them don&#8217;t really fly at all, they just hop, branch by branch, tree by tree, descending hundreds of metres over days and weeks. And come summer, they go back up again. These seasonal journeys are common in the Himalayas, where roughly 65% of high-elevation birds make some form of elevational movement. Yet, the reasons behind these shifts have remained only partially understood. &#8220;The theory behind why birds migrate has two major explanations, both connected to temperature,&#8221; said Tarun Menon, a Ph.D. researcher at the Indian Institute of Science and the study&#8217;s lead author. &#8220;One is that cold directly affects the bird and it moves to stay warm. The other is that the cold affects the food, and the bird is following the food.&#8221; What Menon had noticed during his earlier work in the Himalayas was that the birds that were most likely to migrate down the mountain in winter were almost always insectivores. That observation eventually grew into a larger question: were the birds following the insects rather than escaping the cold? A view of Eaglenest Wildlife Sanctuary, where insect availability, more than temperature alone, may be guiding the seasonal movements of birds up and down the mountain ranges. Image by Tarun Menon. The study, published in Biology Letters, offers evidence from&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/insects-may-be-guiding-seasonal-bird-movements-in-the-eastern-himalayas-study-finds/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://india.mongabay.com/2026/07/insects-may-be-guiding-seasonal-bird-movements-in-the-eastern-himalayas-study-finds/feed/</wfw:commentRss>
					<slash:comments>0</slash:comments>
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					<title>Rethinking irrigation through farm ponds [Commentary]</title>
					<link>https://india.mongabay.com/2026/07/rethinking-irrigation-through-farm-ponds-commentary/</link>
					<comments>https://india.mongabay.com/2026/07/rethinking-irrigation-through-farm-ponds-commentary/?noamp=mobile#respond</comments>
					<pubDate>27 Jul 2026 11:06:14 +0000</pubDate>
											<dc:creator>
							<![CDATA[Partik KumarParul]]>
						</dc:creator>
										<author>
						<![CDATA[Priyanka Shankar]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[farmers]]></category>
		<category><![CDATA[farming]]></category>
		<category><![CDATA[irrigation]]></category>
		<category><![CDATA[livelihood]]></category>
		<category><![CDATA[livelihoods]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/27094551/1_Jamal-scaled-e1785125772499-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39605</guid>

											<reporting-project>
							<![CDATA[Just Transitions]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Haryana]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Agriculture, Ecology, Ecosystem services, Food, Groundwater, Natural Resources, and Water]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[In the sandy fields of Jamal, a village in the Sirsa district of Haryana, water for irrigation does not arrive through a single source. It is mixed, stored, lifted, diluted, timed, subsidised and improvised. Jamal’s landscape first appears dry and exposed: mustard and wheat fields stretch across a semi-arid plain, field channels cutting through farms, [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[In the sandy fields of Jamal, a village in the Sirsa district of Haryana, water for irrigation does not arrive through a single source. It is mixed, stored, lifted, diluted, timed, subsidised and improvised. Jamal’s landscape first appears dry and exposed: mustard and wheat fields stretch across a semi-arid plain, field channels cutting through farms, sand dunes levelled into cultivable plots, and very few functioning tubewells in the conventional sense. But the most striking feature is the diggi — a pond, often lined and built within the farmland. Mixing canal water and groundwater Canal water has clear agronomic value for a farmer: it is usually fresh, low-cost, and is drawn from Himalayan river flows and monsoon-fed storage. But it has limits. It moves through schedules, rotations, field channels, upstream–downstream hierarchies, tail-end losses and sometimes informal diversion. For farmers, this means canal water is valuable, but rarely fully controllable. It is not “on-demand” irrigation; it is scheduled irrigation. The Green Revolution made these limits sharper. High-yielding crops require water at the right time and in the right amount. This created space for what scholars describe as “atomistic irrigation” which means private wells and pumps that give farmers control, flexibility and timely access. Groundwater offers command. But at times, the groundwater’s quality becomes its biggest limitation. In regions with high groundwater salinity, the water is undesirable for irrigation. Jamal, on the Haryana–Rajasthan border, sits precisely in that type of region. It lies near the tail end of Haryana’s canal system, where canal&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/rethinking-irrigation-through-farm-ponds-commentary/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
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					<title>Why is Conocarpus being banned across states? [Explainer]</title>
					<link>https://india.mongabay.com/2026/07/why-is-conocarpus-being-banned-across-states-explainer/</link>
					<comments>https://india.mongabay.com/2026/07/why-is-conocarpus-being-banned-across-states-explainer/?noamp=mobile#respond</comments>
					<pubDate>20 Jul 2026 17:06:07 +0000</pubDate>
											<dc:creator>
							<![CDATA[Nikhil Sreekandan]]>
						</dc:creator>
										<author>
						<![CDATA[Renuka Kulkarni]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[Infrastructure]]></category>
		<category><![CDATA[invasive plants]]></category>
		<category><![CDATA[soil]]></category>
		<category><![CDATA[urban trees]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/18120118/51866377640_3033476cd1_o-e1784357092548-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39442</guid>

											<reporting-project>
							<![CDATA[Beyond Protected Areas]]>
						</reporting-project>
					
											<locations>
							<![CDATA[India]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Agriculture, Biodiversity, Cities and Towns, Ecology, Environment, Health impacts, Plants, and Trees]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[In March, the Karnataka High Court directed the Greater Bengaluru Authority (GBA) to consider the issues highlighted in a public interest litigation (PIL) petition seeking the removal of all Conocarpus trees planted across the city. The high court advisory on Conocarpus, a genus of trees introduced to India from the Gulf, where it has been [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[In March, the Karnataka High Court directed the Greater Bengaluru Authority (GBA) to consider the issues highlighted in a public interest litigation (PIL) petition seeking the removal of all Conocarpus trees planted across the city. The high court advisory on Conocarpus, a genus of trees introduced to India from the Gulf, where it has been extensively used in urban landscaping, comes on the heels of prohibitory orders enforced by the state governments of Gujarat, Telangana, Andhra Pradesh, and Tamil Nadu. In August, 2025, based on a report by the Central Empowered Committee (CEC), the Government of India issued a national advisory to all states and union territories to stop the plantation of Conocarpus erectus (buttonwood) and Conocarpus lancifolius (damask) with immediate effect, flagging ecological and public health concerns. The report compared the Conocarpus species with invasive plants such as Lantana camara and Parthenium hysteroporus. How did Conocarpus take over urban India? There are two species of Conocarpus trees found in India, Conocarpus erectus and Conocarpus lancifolius. Of these, Plants of the World Online (POWO), a global digital database of the world’s flora, only recognises the introduction of Conocarpus erectus to the country. However,  Achyut Banerjee, a plant invasion biologist and assistant professor at Azim Premji University, Bhopal, says both species, including Conocarpus lancifolius, followed a similar route into the country. “They were brought from their native range to Gulf countries for urban landscaping, and then introduced to India from there,” he said. Over the past decade, Conocarpus has mushroomed in&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/why-is-conocarpus-being-banned-across-states-explainer/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
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						<item>
					<title>Cities need tailored restoration, not mass tree planting</title>
					<link>https://india.mongabay.com/2026/07/cities-need-tailored-restoration-not-mass-tree-planting/</link>
					<comments>https://india.mongabay.com/2026/07/cities-need-tailored-restoration-not-mass-tree-planting/?noamp=mobile#respond</comments>
					<pubDate>17 Jul 2026 15:07:46 +0000</pubDate>
											<dc:creator>
							<![CDATA[Arathi Menon]]>
						</dc:creator>
										<author>
						<![CDATA[Aditi Tandon]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/17093622/DJI_0476-Restored-grazing-commons-of-Bagepalli-scaled-e1784263951510-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39376</guid>

											<reporting-project>
							<![CDATA[Beyond the Hype and Nature-based Solutions]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Karnataka]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Cities and Towns, Ecology, Forests, Plantations, Plants, Reforestation, and Trees]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Thousands of Bengaluru residents came together late last month in an attempt to set a Guinness World Record for planting the largest number of tree saplings in a single day. Nearly 1.5 million saplings were planted across 240 acres in the drive organised by the Bangalore Development Authority (BDA), with funding from multiple corporate social [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Thousands of Bengaluru residents came together late last month in an attempt to set a Guinness World Record for planting the largest number of tree saplings in a single day. Nearly 1.5 million saplings were planted across 240 acres in the drive organised by the Bangalore Development Authority (BDA), with funding from multiple corporate social responsibility (CSR) initiatives and support from environmental organisations. A growing number of ecologists, however, say the enthusiasm for mass tree planting in cities has outpaced the science behind it. This tree plantation drive, billed as one of the country&#8217;s largest urban greening exercises, was designed using the Japanese Miyawaki method of dense native tree planting, a method that is popular but also has been criticised for overstating its effectiveness. “The idea is to make Bengaluru greener. There is global warming, so we want to start this movement with the city,” BDA chairman N.A. Haris told Mongabay-India before the event. He said the plantations, spread across lakes, nala buffer zones and public spaces, are intended to reduce the urban heat island effect and build the city&#8217;s climate resilience. Authorities say every sapling will be geo-tagged and monitored for survival. But mass tree plantation is hardly a quick fix to urban green loss. “What exactly are we trying to achieve? Is it setting a record or greening the city? If it&#8217;s ecology, then what environmental problem are we trying to solve?” asks Rajkamal Goswami, a scientist at ATREE who studies forests and biodiversity dynamics. For Goswami, the&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/cities-need-tailored-restoration-not-mass-tree-planting/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
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						<item>
					<title>Finless porpoises are disappearing before they are counted</title>
					<link>https://india.mongabay.com/2026/07/finless-porpoises-are-disappearing-before-they-are-counted/</link>
					<comments>https://india.mongabay.com/2026/07/finless-porpoises-are-disappearing-before-they-are-counted/?noamp=mobile#respond</comments>
					<pubDate>16 Jul 2026 11:20:28 +0000</pubDate>
											<dc:creator>
							<![CDATA[Mansab Sayyad]]>
						</dc:creator>
										<author>
						<![CDATA[Arathimenon]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[dolphins]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/15233911/Image-4-Imran-Samad-768x512.jpeg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39334</guid>

											<reporting-project>
							<![CDATA[Almost Famous Species]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Goa]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Coast, Conservation, Ecology, Environment, Extinction, Oceans, and Wildlife]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[The Arabian Sea was listless as we headed out one morning to spot Indian Ocean humpback dolphins, famously extroverted and known for their acrobatics. A needlefish darted across the surface, pirouetting over the chop as the sun beat down on the deck, turning the railings hot to the touch. When you stare at the ocean [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[The Arabian Sea was listless as we headed out one morning to spot Indian Ocean humpback dolphins, famously extroverted and known for their acrobatics. A needlefish darted across the surface, pirouetting over the chop as the sun beat down on the deck, turning the railings hot to the touch. When you stare at the ocean long enough, your mind starts to play tricks: every shifting shadow looks like a flipper, every cresting wave, a dorsal fin. Then a shape appeared. To my untrained eye, it looked like a dolphin. But Imran Samad, a Ph.D. researcher at the Centre for Ecological Sciences at the Indian Institute of Science, whose work focuses on marine megafauna bycatch in India’s multi-gear fisheries, leaned forward over the roar of the outboard engine and said, “It&#8217;s a porpoise.” It was a blink-and-you-miss-it moment. The animal surfaced for barely a second before vanishing back into the brown water. And that, as Samad would explain over the course of the morning, is precisely the problem — not just for researchers trying to spot them, but for the conservation of a species that most of India does not know exists in these waters. An animal built for invisibility The Indo-Pacific finless porpoise (Neophocaena phocaenoides) is one of the smallest cetaceans in Indian waters, measuring just 1.5 to 1.9 metres in length and weighing 30 to 45 kilograms. It belongs to the family Phocoenidae — an entirely different lineage from dolphins — and the differences run deeper than the obvious&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/finless-porpoises-are-disappearing-before-they-are-counted/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
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						<item>
					<title>The neem patent case and India&#8217;s next battle over traditional knowledge [Commentary]</title>
					<link>https://india.mongabay.com/2026/07/the-neem-patent-case-and-indias-next-battle-over-traditional-knowledge-commentary/</link>
					<comments>https://india.mongabay.com/2026/07/the-neem-patent-case-and-indias-next-battle-over-traditional-knowledge-commentary/?noamp=mobile#respond</comments>
					<pubDate>14 Jul 2026 14:36:47 +0000</pubDate>
											<dc:creator>
							<![CDATA[Deepanjana SahaG. RavikanthSarvesh J.P.]]>
						</dc:creator>
										<author>
						<![CDATA[Kundan Pandey]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[traditional farming]]></category>
		<category><![CDATA[traditional grains]]></category>
		<category><![CDATA[Traditional Knowledge]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/14101205/AP26003660066972-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39258</guid>

											<reporting-project>
							<![CDATA[Beyond Protected Areas]]>
						</reporting-project>
					
											<locations>
							<![CDATA[India]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Agriculture, Biodiversity, Community based conservation, Ecology, Technology, and Trees]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[In 1994, a U.S. company and the United States Department of Agriculture secured a European patent for a method of using neem extracts to control fungi. The neem tree, however, was not a discovery. Across the Indian subcontinent, it had long been used in traditional medicine, agriculture, and furniture making, with its pesticidal properties documented [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[In 1994, a U.S. company and the United States Department of Agriculture secured a European patent for a method of using neem extracts to control fungi. The neem tree, however, was not a discovery. Across the Indian subcontinent, it had long been used in traditional medicine, agriculture, and furniture making, with its pesticidal properties documented in Sanskrit texts and embedded in everyday agricultural practice. After a six-year legal challenge led by an Indian organisation named the Research Foundation for Science, Technology, and Ecology, supported by international allies, the patent was revoked in 2000. Five years after that, the decision was upheld on appeal, with the board ruling that the method lacked novelty and an inventive step, given its long-documented use in India. Now, three decades later, the neem case looks less like an aberration than a template. The frontier has moved from isolated plant compounds to the systems-level ecological knowledge that smallholder and Adivasi communities have developed over generations. The next dispute may involve a soil microbiome product, an agroecological decision-support tool, or a machine-learning model trained on data from traditional preparations. India&#8217;s current legal architecture is not designed to respond to it. Why is this knowledge different? Most public discussion of biopiracy still focuses on the misappropriation of specific biological resources: a plant compound, a seed variety, or a fermentation culture. The legal response has focused correspondingly on access and benefit-sharing rules, prior art databases, and geographical indication protections. These instruments work, imperfectly, for that kind of theft. The&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/the-neem-patent-case-and-indias-next-battle-over-traditional-knowledge-commentary/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
														</item>
						<item>
					<title>The insect that syncs up with the football World Cup</title>
					<link>https://india.mongabay.com/2026/07/the-insect-that-syncs-up-with-the-football-world-cup/</link>
					<comments>https://india.mongabay.com/2026/07/the-insect-that-syncs-up-with-the-football-world-cup/?noamp=mobile#respond</comments>
					<pubDate>14 Jul 2026 14:12:07 +0000</pubDate>
											<dc:creator>
							<![CDATA[Nabarun Guha]]>
						</dc:creator>
										<author>
						<![CDATA[Aditi Tandon]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[cicada]]></category>
		<category><![CDATA[insects]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/14110800/World-Cup-cicada-insect_-scaled-e1784008437972-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39269</guid>

											<reporting-project>
							<![CDATA[Beyond Protected Areas]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Assam and Meghalaya]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Ecology, Elephants, Forests, Insects, Plants, Reserved Forest, and Villages]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[As the football world cup began in the United States, Canada and Mexico this year, in one part of India, an insect emerged, as it does, every four years, in sync with the sporting event. However, this year, it was found beyond its typical home range. Aptly named the World Cup cicada, the insect, Chremistica [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[As the football world cup began in the United States, Canada and Mexico this year, in one part of India, an insect emerged, as it does, every four years, in sync with the sporting event. However, this year, it was found beyond its typical home range. Aptly named the World Cup cicada, the insect, Chremistica ribhoi, has been recorded in Meghalaya in Northeast India. This year though it was spotted in the neighbouring state of Assam during a field assessment around the Rani Reserve Forest conducted by wildlife biologist Pulakeswar Basumatary, with Langtuk Terang, Assistant Professor, Pragjyotish College, Mann Kumar Thapa, a research scholar at Royal Global University, M.Sc. student Lakhinandan Dutta and butterfly researcher Rajat Joshi. Basumatary told Mongabay-India, “Until now, Chremistica ribhoi was known only from Saiden village and Lailad, near Nongkhyllem Wildlife Sanctuary in Meghalaya’s Ri-Bhoi district. The 2026 sighting across the Rani-Garbhanga-Basistha Reserve Forest is the first record of the species in Assam, and a real extension of its known range.” However, while it has been scientifically recorded now, the local communities always knew of the cicada in Assam. “The Rabha community of Satargaon, in the Rani area (of Assam), say they had been seeing this cicada before the year 2000. That&#8217;s earlier than the first scientific record from Meghalaya. The species was almost certainly always here, just undocumented,” said Basumatary. Periodical cicadas are among nature’s most precise timekeepers. Their mass emergence is triggered largely by soil temperature and humidity cues built up over years underground.&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/the-insect-that-syncs-up-with-the-football-world-cup/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
														</item>
						<item>
					<title>Fishers, naturalists worry about the impacts of turning a coastal wetland into a reservoir</title>
					<link>https://india.mongabay.com/2026/07/a-coastal-wetland-could-soon-become-a-reservoir-to-meet-a-citys-water-demand/</link>
					<comments>https://india.mongabay.com/2026/07/a-coastal-wetland-could-soon-become-a-reservoir-to-meet-a-citys-water-demand/?noamp=mobile#respond</comments>
					<pubDate>13 Jul 2026 17:18:48 +0000</pubDate>
											<dc:creator>
							<![CDATA[Smitha T.K.]]>
						</dc:creator>
										<author>
						<![CDATA[Priyanka Shankar]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[cities]]></category>
		<category><![CDATA[urban wetlands]]></category>
		<category><![CDATA[Wetlands]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/13161843/4-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39239</guid>

											<reporting-project>
							<![CDATA[Just Transitions]]>
						</reporting-project>
					
											<locations>
							<![CDATA[India and Tamil Nadu]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Birds, Coast, Ecology, Ecosystem services, Environment, Fishing, Floods, Habitat Loss, Lakes, and Wetlands]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Narayanan R. stood on the muddy bund of the Great Salt Lake, watching a group of flamingoes pick their way across the shallows. He remembered standing in the same spot as a 10-year-old, knee-deep in water — the day his father showed him how to fish. &#8220;The flamingoes may not come next season,” he said. [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Narayanan R. stood on the muddy bund of the Great Salt Lake, watching a group of flamingoes pick their way across the shallows. He remembered standing in the same spot as a 10-year-old, knee-deep in water — the day his father showed him how to fish. &#8220;The flamingoes may not come next season,” he said. “These pools will dry soon. A few hundred metres away, Gowriamma waded through the shallow waters of the lake, her fingers sifting through the mud for shrimp. “Everything depends on these small pools. We know this water through the mud and the thorns.&#8221; Located between Nemmeli and Kovalam in Chennai, the Great Salt Lake also known as Kovalam-Nemmeli backwaters, is a coastal wetland that spans 5,000 acres. The Tamil Nadu government plans to convert this coastal wetland into Chennai’s sixth drinking water reservoir: the Mamallan reservoir. Chennai currently supplies between 700 and 800 million litres per day (MLD) of water. The demand already exceeds 1,100 MLD and is projected to cross 2,500 MLD by 2035, according to the project&#8217;s environmental impact assessment (EIA). The Mamallan reservoir aims to supply 170 MLD for the city’s needs. The reservoir is designed to store 1.65 thousand million cubic feet (TMC) in a single filling and an annual storage of 2.25 TMC. However, for Narayanan, Gowriamma and many fishing families in the area, losing the Great Salt Lake means losing the only world they have ever known. “Who are we to change the contours drawn by nature?” Narayanan asks.&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/a-coastal-wetland-could-soon-become-a-reservoir-to-meet-a-citys-water-demand/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
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						<item>
					<title>Why looking at trees is a type of rebellion [Book Review]</title>
					<link>https://india.mongabay.com/2026/07/why-looking-at-trees-is-a-type-of-rebellion-book-review/</link>
					<comments>https://india.mongabay.com/2026/07/why-looking-at-trees-is-a-type-of-rebellion-book-review/?noamp=mobile#respond</comments>
					<pubDate>13 Jul 2026 12:16:36 +0000</pubDate>
											<dc:creator>
							<![CDATA[Aarushi Agrawal]]>
						</dc:creator>
										<author>
						<![CDATA[Renuka Kulkarni]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[book]]></category>
		<category><![CDATA[book review]]></category>
		<category><![CDATA[trees outside forests]]></category>
		<category><![CDATA[urban trees]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/13102344/2560px-hill-mynah-28gracula-religiosa29-leaving-its-nest-28806409492329-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39207</guid>

											<reporting-project>
							<![CDATA[Beyond Protected Areas]]>
						</reporting-project>
					
											<locations>
							<![CDATA[India]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Birds, Ecology, Ecosystem services, Environment, Forests, Plants, and Trees]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[According to an analysis by Down to Earth of the environment ministry&#8217;s advisory committee records, more than 2.8 million trees, on forest land, were approved for felling or recorded as felled across India between July 2023 and May 2026. About 90% of this felling has happened because of mining, hydropower and rehabilitation projects. Where efforts [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[According to an analysis by Down to Earth of the environment ministry&#8217;s advisory committee records, more than 2.8 million trees, on forest land, were approved for felling or recorded as felled across India between July 2023 and May 2026. About 90% of this felling has happened because of mining, hydropower and rehabilitation projects. Where efforts are being made to increase green cover in the country, we are starkly falling short. A recent study published in the journal Environmental Research Communications, which examines eight major government policies and programmes and their impact on tree cover, finds that only one showed positive associations with tree cover. Essentially, most government efforts are ill-informed and falling short. The more we consume news about this war against trees, the harder we fight. Until we can’t anymore. Until we’re exhausted and depleted. Writer and wildlife scientist T.R. Shankar Raman’s book The Trees of My Country: A Natural History of India in 50 Trees, with illustrations by Manali Patil, is a balm for those tired times. The book doesn’t try to advocate for trees or talk about their functionality and importance to human life. It doesn’t talk about why trees are needed and all the bad that will happen if trees are gone. It doesn’t make excuses on their behalf. The tactics tree lovers normally use to try to get the unaffected to care about trees are all thrown out the window. Here, trees deserve to exist because they are living beings. That’s reason enough. In not&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/why-looking-at-trees-is-a-type-of-rebellion-book-review/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
														</item>
						<item>
					<title>In high altitude soils, microbes may be limiting the warming they trigger</title>
					<link>https://india.mongabay.com/2026/07/in-high-altitude-soils-microbes-may-be-limiting-the-warming-they-trigger/</link>
					<comments>https://india.mongabay.com/2026/07/in-high-altitude-soils-microbes-may-be-limiting-the-warming-they-trigger/?noamp=mobile#respond</comments>
					<pubDate>10 Jul 2026 13:17:35 +0000</pubDate>
											<dc:creator>
							<![CDATA[Lekha Bandopadhyay]]>
						</dc:creator>
										<author>
						<![CDATA[Arathimenon]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/10105814/Tsomoriri_Vegetation-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39164</guid>

											<reporting-project>
							<![CDATA[Beyond Protected Areas]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Ladakh]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Climate Change, Climate Change Mitigation, Climate Science, Ecology, Environment, and Greenhouse Gas Emissions]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Amid the mountain folds of eastern Ladakh’s Changthang plateau lies Tso Moriri, the highest Ramsar-listed wetland of international importance. Part of a Trans-Himalayan lake-desert ecosystem, the lake remains frozen for nearly one-third of the year and is surrounded by barren hills, broken only by small patches of green meadows and marshes along its northern and [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Amid the mountain folds of eastern Ladakh’s Changthang plateau lies Tso Moriri, the highest Ramsar-listed wetland of international importance. Part of a Trans-Himalayan lake-desert ecosystem, the lake remains frozen for nearly one-third of the year and is surrounded by barren hills, broken only by small patches of green meadows and marshes along its northern and south-western shores. These high-altitude ecosystems are increasingly vulnerable to climate warming. As summer arrives, Tso Moriri and the surrounding landscape begin to thaw, activating native microbes that can accelerate warming by releasing greenhouse gases. A recent study led by Wriddhiman Ghosh, Professor, Department of Biological Sciences, Bose Institute, Kolkata, explored this process, hypothesising that as cold-adapted microbes become more active, they supply native methanogens — the methane-producing microbes — with compounds such as carbon dioxide and acetate. These compounds fuel methanogenesis, the final stage in the breakdown of organic matter, during which methanogens produce methane and carbon dioxide. This creates a microbe-driven positive feedback loop: warming stimulates microbial activity, which releases more greenhouse gases, leading to further warming. The study set out to determine how strong this feedback could become. Cold-adapted microbes While deserts are ideal habitats for oligotrophic microbes that survive in nutrient-poor soil, the study focused on high-throughput copiotrophic microbes that thrive in nutrient-rich habitats. Copiotrophic microbes consume significantly larger amounts of complex organic matter and release plenty of simple organic matter into the environment. Commenting on the choice of microbes for the study, Raju Biswas, a microbial ecologist and postdoctoral research associate&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/in-high-altitude-soils-microbes-may-be-limiting-the-warming-they-trigger/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://india.mongabay.com/2026/07/in-high-altitude-soils-microbes-may-be-limiting-the-warming-they-trigger/feed/</wfw:commentRss>
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					<title>Why feasibility matters for land use projects in India [Commentary]</title>
					<link>https://india.mongabay.com/2026/07/why-feasibility-matters-for-land-use-projects-in-india-commentary/</link>
					<comments>https://india.mongabay.com/2026/07/why-feasibility-matters-for-land-use-projects-in-india-commentary/?noamp=mobile#respond</comments>
					<pubDate>07 Jul 2026 15:37:29 +0000</pubDate>
											<dc:creator>
							<![CDATA[J.V. SharmaSayanta Ghosh]]>
						</dc:creator>
										<author>
						<![CDATA[Kundan Pandey]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[land management]]></category>
		<category><![CDATA[livelihoods]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/07142040/AP274368273581-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39054</guid>

											<reporting-project>
							<![CDATA[Climate Finance]]>
						</reporting-project>
					
											<locations>
							<![CDATA[India]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Agriculture, Biodiversity, Carbon emissions, Carbon Finance, Carbon Offset, Carbon Trading, Climate Change Mitigation, Deforestation, Ecology, Ecosystem services, Forestry, Forests, Grasslands, Green Business, and Reforestation]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[India’s carbon market conversation is widening beyond energy and industry. Forests, farms, grasslands, wetlands, mangroves and rice fields are increasingly being viewed as spaces where climate action, ecological restoration and rural livelihoods can converge. Carbon credits are expected to help bring private finance into these landscapes. But the global experience of the voluntary carbon market [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[India’s carbon market conversation is widening beyond energy and industry. Forests, farms, grasslands, wetlands, mangroves and rice fields are increasingly being viewed as spaces where climate action, ecological restoration and rural livelihoods can converge. Carbon credits are expected to help bring private finance into these landscapes. But the global experience of the voluntary carbon market shows that a project can be registered, verified and even generate credits without necessarily delivering the climate or community outcomes that buyers assume. After evaluating 2,346 carbon-crediting projects and nearly one billion tonnes of issued credits, a 2024 study in Nature Communications estimated that less than 16% of the credits examined, represented real emission reductions. The study does not mean that every carbon project has failed, but it shows how badly results can diverge from claims when baselines, additionality or monitoring are weak. Specific cases make the warning harder to ignore. In 2025, the carbon certifier Verra reviewed Zimbabwe’s Kariba REDD+ project and found that actual deforestation in the reference area was far lower than originally projected. Verra identified 15.22 million excess credits among 26.82 million credits already issued and said these could no longer be corrected through future monitoring periods because the project had withdrawn from its registry. Similarly, in 2024, Verra rejected 37 rice-cultivation projects in China. It sanctioned project proponents and validation bodies and required compensation for overissued credits after concerns were raised about project areas, additionality and emission-reduction calculations. Community governance can be equally decisive. The Northern Kenya Grassland Carbon Project&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/why-feasibility-matters-for-land-use-projects-in-india-commentary/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://india.mongabay.com/2026/07/why-feasibility-matters-for-land-use-projects-in-india-commentary/feed/</wfw:commentRss>
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						<item>
					<title>Warming lake threatens fish habitats and the wetland economy</title>
					<link>https://india.mongabay.com/2026/07/warming-lake-threatens-fish-habitats-and-the-wetland-economy/</link>
					<comments>https://india.mongabay.com/2026/07/warming-lake-threatens-fish-habitats-and-the-wetland-economy/?noamp=mobile#respond</comments>
					<pubDate>07 Jul 2026 13:34:16 +0000</pubDate>
											<dc:creator>
							<![CDATA[Barasha Das]]>
						</dc:creator>
										<author>
						<![CDATA[Priyanka Shankar]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[climate change]]></category>
		<category><![CDATA[Fish]]></category>
		<category><![CDATA[global warming]]></category>
		<category><![CDATA[lake]]></category>
		<category><![CDATA[Loktak Lake]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/07121938/Fishing-community-in-Loktak-Lake.-PC-R.K.-Neetu-Sana-1-scaled-e1783407009209-768x512.jpeg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39035</guid>

											<reporting-project>
							<![CDATA[Climate Connections]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Manipur]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Climate Change, Conservation, Ecology, Environment, Fish, Impacts of Climate Change, Lakes, and Wetlands]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Loktak lake is northeast India’s largest freshwater wetland and is the ecological heart of Manipur. The lake spans about 287 square kilometres, about half the size of the capital Imphal, and is already under growing stress from pollution, altered hydrology and catchment degradation. Now, a new study warns that climate change could further reduce the [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Loktak lake is northeast India’s largest freshwater wetland and is the ecological heart of Manipur. The lake spans about 287 square kilometres, about half the size of the capital Imphal, and is already under growing stress from pollution, altered hydrology and catchment degradation. Now, a new study warns that climate change could further reduce the fish habitat that sustains livelihoods and food systems. The study published in the journal Ecological Indicators finds that rising temperatures and shifting monsoon patterns could reduce habitat suitability for native fish species. Using predictive methods, researchers have mapped out how a changing climate will fundamentally alter the lake’s water depth, temperature, and oxygen levels. Loktak is an indelible part of the Manipuri identity — lives, lore, legends, history, and aquatic ecosystems. It was designated a Ramsar site in 1990, and made its way into the Montreux Record, a register of wetlands that face significant ecological threats, in 1993. Loktak in Manipur is northeast India’s largest freshwater wetland. Amidst growing stress from pollution, altered hydrology and catchment degradation, a new study warns that climate change could further impact fish habitat that sustain livelihoods and food systems. Image by zehawk via Flickr (CC BY-NC-ND 2.0). Fish habitat under threat &#8220;We wanted to gauge the health of the entire lake,” says Vicky Anand, lead author of the study. “Fish are considered the most sensitive indicator of a water body’s health. We bypassed harder pollution-tolerant fish that can survive anywhere, choosing instead the rohu (Labeo rohita), an indigenous carp,&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/warming-lake-threatens-fish-habitats-and-the-wetland-economy/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
										<wfw:commentRss>https://india.mongabay.com/2026/07/warming-lake-threatens-fish-habitats-and-the-wetland-economy/feed/</wfw:commentRss>
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					<title>Scientists test turning aquatic weeds into liquid fertilisers</title>
					<link>https://india.mongabay.com/2026/07/scientists-test-turning-aquatic-weeds-into-liquid-fertilisers/</link>
					<comments>https://india.mongabay.com/2026/07/scientists-test-turning-aquatic-weeds-into-liquid-fertilisers/?noamp=mobile#respond</comments>
					<pubDate>07 Jul 2026 11:59:56 +0000</pubDate>
											<dc:creator>
							<![CDATA[Hirra Azmat]]>
						</dc:creator>
										<author>
						<![CDATA[Renuka Kulkarni]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[farming]]></category>
		<category><![CDATA[invasive plants]]></category>
		<category><![CDATA[invasive species]]></category>
		<category><![CDATA[organic farming]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/07104509/retiredlife-scaled-e1783401379419-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=39022</guid>

											<reporting-project>
							<![CDATA[Nature-based Solutions]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Jammu and Kashmir]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Agriculture, Conservation, Ecology, Environment, Himalayas, Lakes, Natural Resources, Nature-based Climate Solutions, Plants, Positive Environmental, Sustainability, and Wetlands]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[The uncontrolled growth of aquatic plants has become a major environmental challenge in Dal lake, an important freshwater lake in the Kashmir Himalaya. A new study has tested a way to convert these excess plants into fermented liquid fertilisers, offering a potential solution to manage weed overgrowth while producing a useful agricultural input. Dal, a [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[The uncontrolled growth of aquatic plants has become a major environmental challenge in Dal lake, an important freshwater lake in the Kashmir Himalaya. A new study has tested a way to convert these excess plants into fermented liquid fertilisers, offering a potential solution to manage weed overgrowth while producing a useful agricultural input. Dal, a culturally and ecologically important lake in Kashmir, has been showing visible symptoms of eutrophication, with runoff from surrounding areas, untreated sewage, and other pollutants adding excess nutrients to the lake and leading to the rapid growth of aquatic plants. While aquatic vegetation can be useful as food, medicine, and fodder, overgrowth disrupts water quality, alters ecohydrology, and threatens native biodiversity. “While the overgrowth of aquatic plants and algae blooms follows a seasonal cycle, the underlying decline in water quality is palpable year-round. We’ve seen the lake struggle under the weight of these excess nutrients, which is exactly why we are focused on repurposing that biomass into something useful for our land,” Kowsar Majid, one of the study authors and a professor in the department of chemistry at National Institute of Technology, Srinagar, told Mongabay-India. The study was published in ACS Sustainable Resource Management journal in March 2026. The findings are a proof of concept, with further studies needed to assess costs, large-scale feasibility and regulatory approval before the approach can be adopted widely. Majid explains that most previous work on Dal lake biomass has focused on solid soil amendments such as compost, vermicompost or hydrochar.&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/scientists-test-turning-aquatic-weeds-into-liquid-fertilisers/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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						<item>
					<title>Indigenous women build new livelihoods with hive boxes</title>
					<link>https://india.mongabay.com/2026/07/indigenous-women-build-new-livelihoods-with-hive-boxes/</link>
					<comments>https://india.mongabay.com/2026/07/indigenous-women-build-new-livelihoods-with-hive-boxes/?noamp=mobile#respond</comments>
					<pubDate>03 Jul 2026 13:31:24 +0000</pubDate>
											<dc:creator>
							<![CDATA[Arathi Menon]]>
						</dc:creator>
										<author>
						<![CDATA[Aditi Tandon]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[Beekeeping]]></category>
		<category><![CDATA[bees]]></category>
		<category><![CDATA[honey]]></category>
		<category><![CDATA[honeybees]]></category>
		<category><![CDATA[livelihood]]></category>
		<category><![CDATA[livelihoods]]></category>
		<category><![CDATA[pollination]]></category>
		<category><![CDATA[pollinators]]></category>
		<category><![CDATA[women]]></category>
		<category><![CDATA[women in agriculture]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/03101916/Sigur_070725_7-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=38951</guid>

											<reporting-project>
							<![CDATA[Indigenous Knowledge]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Western Ghats]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Agriculture, Biodiversity, Ecology, Ecosystem services, Environment, Food, Indigenous Peoples, Insects, Non-Timber Forest Produce, and Western Ghats]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Neelavathi (37), an Irula woman from Vazhaithottam village in Tamil Nadu&#8217;s Nilgiris district, has had several reasons to celebrate over the past few months — a new occupation, a higher income, and enough money to celebrate the annual festival at her village temple, Mariyamman Kovil. “I have already sold around six litres of honey,” she [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Neelavathi (37), an Irula woman from Vazhaithottam village in Tamil Nadu&#8217;s Nilgiris district, has had several reasons to celebrate over the past few months — a new occupation, a higher income, and enough money to celebrate the annual festival at her village temple, Mariyamman Kovil. “I have already sold around six litres of honey,” she says with pride. “Since I am the beekeeper at home, my family lets me keep the income for my own needs.” Apart from buying new clothes for herself and her kids, Neelavathi could buy two stone dosa griddles with the income from honey sales over time. Nine Irula women from the Sigur Plateau, including Neelavathi, gathered in a small community hall in Vazhaithottam to share with Mongabay-India their experiences of learning beekeeping. Over the past year, they have been trained to manage bee colonies in hive boxes, grow fruit trees that provide nectar for the bees, and harvest honey — an enterprise that has significantly boosted their household incomes. Women trained on beekeeping as a livelihood In April 2025, UNESCO partnered with the Nilgiris-based non-profit Keystone Foundation to bring its Women for Bees project to India. The Nilgiris Biosphere Reserve was chosen as the programme’s first site in the country, with activities launched across five locations in two states — Kerala and Tamil Nadu. Beekeepers at work in Nilambur, Kerala. In April 2025, UNESCO&#8217;s Women for Bees project debuted in India, at the Nilgiris Biosphere Reserve, engaging 50 Indigenous women from Sigur, Pillur, Kuzhiyoor, Wayanad&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/indigenous-women-build-new-livelihoods-with-hive-boxes/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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						<item>
					<title>Delhi witnesses a travesty of ecological restoration [Commentary]</title>
					<link>https://india.mongabay.com/2026/07/delhi-witnesses-a-travesty-of-ecological-restoration-commentary/</link>
					<comments>https://india.mongabay.com/2026/07/delhi-witnesses-a-travesty-of-ecological-restoration-commentary/?noamp=mobile#respond</comments>
					<pubDate>01 Jul 2026 16:10:38 +0000</pubDate>
											<dc:creator>
							<![CDATA[Ankila HiremathVikram Iyer]]>
						</dc:creator>
										<author>
						<![CDATA[Arathimenon]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[restoration]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/07/01141654/2_EarthMovers-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=38879</guid>

											<reporting-project>
							<![CDATA[Beyond Protected Areas]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Delhi and India]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Ecology, Environment, Forestry, Forests, Plantations, Plants, and Reforestation]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[Delhi’s Central Ridge, a mosaic of forest and open savannah with patches dominated by species such as dhok (Terminalia pendula), is a landscape that would be a rare gem anywhere. The location of this remnant of the ancient Aravallis — spanning a little over 850 hectares in the heart of a sprawling urban metropolis — [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[Delhi’s Central Ridge, a mosaic of forest and open savannah with patches dominated by species such as dhok (Terminalia pendula), is a landscape that would be a rare gem anywhere. The location of this remnant of the ancient Aravallis — spanning a little over 850 hectares in the heart of a sprawling urban metropolis — makes it even more special. Yet, for over a century, it has remained misunderstood and misconstrued. In the early 20th century, the planners of New Delhi sought to create a forested backdrop for the Government House (now Rashtrapati Bhavan). Successive waves of tree planting were carried out, but very few of the introduced trees survived because they were poorly suited to local conditions. The exception was the South American tree Neltuma juliflora (formerly Prosopis juliflora). Better known as vilayati keekar, it is now a widespread invasive alien tree across arid and semi-arid regions of India. Since its introduction to the Central Ridge, it has come to dominate the landscape, along with other invasive species such as gaajar ghaas (Parthenium hysterophorus), lantana (Lantana camara), and subabool (Leucaena leucocephala), which arrived more recently. Delhi&#8217;s Central Ridge in the dry season. Invasive plant species dominate the 850 hectares in the heart of the capital city. Image by Pradip Krishen. What are invasive alien species? Invasive alien species must meet two criteria. First, they must be non-native to a region. Typically, these are species intentionally introduced by people, though some introductions occur inadvertently. In India, many non-native plants originated&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/07/delhi-witnesses-a-travesty-of-ecological-restoration-commentary/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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					<slash:comments>0</slash:comments>
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						<item>
					<title>India’s native dwarf honey bee faces a quiet urban crisis</title>
					<link>https://india.mongabay.com/2026/06/indias-native-dwarf-honey-bee-faces-a-quiet-urban-crisis/</link>
					<comments>https://india.mongabay.com/2026/06/indias-native-dwarf-honey-bee-faces-a-quiet-urban-crisis/?noamp=mobile#respond</comments>
					<pubDate>19 Jun 2026 11:12:40 +0000</pubDate>
											<dc:creator>
							<![CDATA[Nivedhika Krishnan]]>
						</dc:creator>
										<author>
						<![CDATA[Arathimenon]]>
					</author>
							<category><![CDATA[Uncategorized]]></category>
		<category><![CDATA[bees]]></category>
		<category><![CDATA[honeybees]]></category>
		<category><![CDATA[pollination]]></category>
		<category><![CDATA[pollinators]]></category>
										<enclosure url="https://imgs.mongabay.com/wp-content/uploads/sites/30/2026/06/18183622/A_florea_colony-768x512.jpg" type="image/jpeg" />
					<guid isPermaLink="false">https://india.mongabay.com/?p=38733</guid>

											<reporting-project>
							<![CDATA[Nature-based Solutions]]>
						</reporting-project>
					
											<locations>
							<![CDATA[Karnataka]]>
						</locations>
					
											<topic-tags>
							<![CDATA[Biodiversity, Cities and Towns, Climate Change, Ecology, Impacts of Climate Change, and Plants]]>
						</topic-tags>
					
					
											<description>
							<![CDATA[As Bengaluru’s temperatures peaked at 38.5°C in April this year, natural landscape architect Akshay Vidhate stood in his terrace garden among 30 varieties of flowering plants. The air was eerily quiet. He noticed the absence of the familiar buzz of wild honey bees in his garden. Vidhate turned an empty bottle into a makeshift feeder, [&#8230;]]]>
						</description>
																					<content:encoded>
							<![CDATA[As Bengaluru’s temperatures peaked at 38.5°C in April this year, natural landscape architect Akshay Vidhate stood in his terrace garden among 30 varieties of flowering plants. The air was eerily quiet. He noticed the absence of the familiar buzz of wild honey bees in his garden. Vidhate turned an empty bottle into a makeshift feeder, filled it with a light sugar-water mixture, and hung it in the shade. “For the first few days, nothing happened,” he recalls. “Then, suddenly, there were bees everywhere. Now they arrive every morning, almost on schedule.” Vidhate’s experience reflects a slow shift unfolding across India’s urban landscapes — the transition from environments that naturally sustain wild, open-air bees to ones that increasingly require human intervention to keep ecosystem functions alive. Native bees face challenges in cities Global pollinator research has focused heavily on the Western honey bee (Apis mellifera), a cavity-dwelling species managed in commercial hives. However, pollination in India’s agricultural and urban ecosystems depend largely on free-living wild bee populations such as the dwarf honey bee (Apis florea) and giant honey bee (Apis dorsata). A dwarf honey bee collects pollen from a eucalyptus flower in Bengaluru. India’s agricultural and urban ecosystems depend on wild bee populations such as the dwarf honey bee and giant honey bee. Image by Bharath Kumar A.K. Between these two species, the native dwarf honey bee serves as a foundational ecological safety net. “The size of a pollinator is often proportional to the size of the flower it pollinates,” explains&hellip;This article was originally published on <a href="https://india.mongabay.com/2026/06/indias-native-dwarf-honey-bee-faces-a-quiet-urban-crisis/" data-wpel-link="internal">Mongabay</a>]]>
						</content:encoded>
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