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Avni Malhotra

Showing results (1-10 of 21) with videos related to

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Global Change Biology|February 10, 2024
The hidden roots of wetland methane emissionsTiia Määttä, Avni Malhotra
Scientific Reports|October 2, 2021
Warming events projected to become more frequent and last longer across AntarcticaSarah Feron, Raúl R Cordero, Alessandro Damiani, et al.
Global Change Biology|February 1, 2025
Rising Water Levels and Vegetation Shifts Drive Substantial Reductions in Methane Emissions and Carbon Dioxide Uptake in a Great Lakes Coastal Freshwater WetlandAngela Che Ing Tang, Gil Bohrer, Avni Malhotra, et al.
Global Change Biology|October 24, 2021
Warming and elevated CO<sub>2</sub> promote rapid incorporation and degradation of plant-derived organic matter in an ombrotrophic peatlandNicholas O E Ofiti, Emily F Solly, Paul J Hanson, et al.
Nature Communications|June 17, 2025
A continental scale analysis reveals widespread root bimodalityMingzhen Lu, Sili Wang, Avni Malhotra, et al.
The New Phytologist|March 22, 2024
Responses of vascular plant fine roots and associated microbial communities to whole-ecosystem warming and elevated CO<sub>2</sub> in northern peatlandsKatherine Duchesneau, Camille E Defrenne, Caitlin Petro, et al.
Proceedings of the National Academy of Sciences of the United States of America|July 15, 2020
Peatland warming strongly increases fine-root growthAvni Malhotra, Deanne J Brice, Joanne Childs, et al.
Nature Communications|November 21, 2023
Climate warming and elevated CO<sub>2</sub> alter peatland soil carbon sources and stabilityNicholas O E Ofiti, Michael W I Schmidt, Samuel Abiven, et al.
Global Change Biology|January 26, 2024
Recent increases in annual, seasonal, and extreme methane fluxes driven by changes in climate and vegetation in boreal and temperate wetland ecosystemsSarah Feron, Avni Malhotra, Sheel Bansal, et al.
Scientific Reports|June 25, 2024
Belowground plant allocation regulates rice methane emissions from degraded peat soilsNijanthini Sriskandarajah, Chloé Wüst-Galley, Sandra Heller, et al.
Pageof 3

Showing results (1-10 of 21) with videos related to

Sort By:
Pageof 3
Global Change Biology|February 10, 2024
The hidden roots of wetland methane emissionsTiia Määttä, Avni Malhotra
Scientific Reports|October 2, 2021
Warming events projected to become more frequent and last longer across AntarcticaSarah Feron, Raúl R Cordero, Alessandro Damiani, et al.
Global Change Biology|February 1, 2025
Rising Water Levels and Vegetation Shifts Drive Substantial Reductions in Methane Emissions and Carbon Dioxide Uptake in a Great Lakes Coastal Freshwater WetlandAngela Che Ing Tang, Gil Bohrer, Avni Malhotra, et al.
Global Change Biology|October 24, 2021
Warming and elevated CO<sub>2</sub> promote rapid incorporation and degradation of plant-derived organic matter in an ombrotrophic peatlandNicholas O E Ofiti, Emily F Solly, Paul J Hanson, et al.
Nature Communications|June 17, 2025
A continental scale analysis reveals widespread root bimodalityMingzhen Lu, Sili Wang, Avni Malhotra, et al.
The New Phytologist|March 22, 2024
Responses of vascular plant fine roots and associated microbial communities to whole-ecosystem warming and elevated CO<sub>2</sub> in northern peatlandsKatherine Duchesneau, Camille E Defrenne, Caitlin Petro, et al.
Proceedings of the National Academy of Sciences of the United States of America|July 15, 2020
Peatland warming strongly increases fine-root growthAvni Malhotra, Deanne J Brice, Joanne Childs, et al.
Nature Communications|November 21, 2023
Climate warming and elevated CO<sub>2</sub> alter peatland soil carbon sources and stabilityNicholas O E Ofiti, Michael W I Schmidt, Samuel Abiven, et al.
Global Change Biology|January 26, 2024
Recent increases in annual, seasonal, and extreme methane fluxes driven by changes in climate and vegetation in boreal and temperate wetland ecosystemsSarah Feron, Avni Malhotra, Sheel Bansal, et al.
Scientific Reports|June 25, 2024
Belowground plant allocation regulates rice methane emissions from degraded peat soilsNijanthini Sriskandarajah, Chloé Wüst-Galley, Sandra Heller, et al.
Pageof 3