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Showing results (41-50 of 58) with videos related to

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Nature Microbiology|October 1, 2024
Microbiome-metabolite linkages drive greenhouse gas dynamics over a permafrost thaw gradientViviana Freire-Zapata, Hannah Holland-Moritz, Dylan R Cronin, et al.
Nature Communications|December 11, 2025
Population ecology and biogeochemical implications of ssDNA and dsDNA viruses along a permafrost thaw gradientGareth Trubl, Simon Roux, Mikayla A Borton, et al.
Nature Communications|January 22, 2025
Metabolic interactions underpinning high methane fluxes across terrestrial freshwater wetlandsEmily K Bechtold, Jared B Ellenbogen, Jorge A Villa, et al.
Global Change Biology|November 2, 2021
Coupling plant litter quantity to a novel metric for litter quality explains C storage changes in a thawing permafrost peatlandMoira Hough, Samantha McCabe, S Rose Vining, et al.
Msystems|October 16, 2018
Soil Viruses Are Underexplored Players in Ecosystem Carbon ProcessingGareth Trubl, Ho Bin Jang, Simon Roux, et al.
Nature Communications|October 6, 2021
Diverse sediment microbiota shape methane emission temperature sensitivity in Arctic lakesJoanne B Emerson, Ruth K Varner, Martin Wik, et al.
Msystems|December 8, 2023
Methylotrophy in the Mire: direct and indirect routes for methane production in thawing permafrostJared B Ellenbogen, Mikayla A Borton, Bridget B McGivern, et al.
Nature Communications|May 25, 2021
Ecology and molecular targets of hypermutation in the global microbiomeSimon Roux, Blair G Paul, Sarah C Bagby, et al.
Nature|July 18, 2018
Genome-centric view of carbon processing in thawing permafrostBen J Woodcroft, Caitlin M Singleton, Joel A Boyd, et al.
Nature Microbiology|June 29, 2026
Mobile genetic elements shape microbial diversity and functions in thawing permafrost soilsJiarong Guo, Samuel T N Aroney, Guillermo Domínguez-Huerta, et al.
Pageof 6

Showing results (41-50 of 58) with videos related to

Sort By:
Pageof 6
Nature Microbiology|October 1, 2024
Microbiome-metabolite linkages drive greenhouse gas dynamics over a permafrost thaw gradientViviana Freire-Zapata, Hannah Holland-Moritz, Dylan R Cronin, et al.
Nature Communications|December 11, 2025
Population ecology and biogeochemical implications of ssDNA and dsDNA viruses along a permafrost thaw gradientGareth Trubl, Simon Roux, Mikayla A Borton, et al.
Nature Communications|January 22, 2025
Metabolic interactions underpinning high methane fluxes across terrestrial freshwater wetlandsEmily K Bechtold, Jared B Ellenbogen, Jorge A Villa, et al.
Global Change Biology|November 2, 2021
Coupling plant litter quantity to a novel metric for litter quality explains C storage changes in a thawing permafrost peatlandMoira Hough, Samantha McCabe, S Rose Vining, et al.
Msystems|October 16, 2018
Soil Viruses Are Underexplored Players in Ecosystem Carbon ProcessingGareth Trubl, Ho Bin Jang, Simon Roux, et al.
Nature Communications|October 6, 2021
Diverse sediment microbiota shape methane emission temperature sensitivity in Arctic lakesJoanne B Emerson, Ruth K Varner, Martin Wik, et al.
Msystems|December 8, 2023
Methylotrophy in the Mire: direct and indirect routes for methane production in thawing permafrostJared B Ellenbogen, Mikayla A Borton, Bridget B McGivern, et al.
Nature Communications|May 25, 2021
Ecology and molecular targets of hypermutation in the global microbiomeSimon Roux, Blair G Paul, Sarah C Bagby, et al.
Nature|July 18, 2018
Genome-centric view of carbon processing in thawing permafrostBen J Woodcroft, Caitlin M Singleton, Joel A Boyd, et al.
Nature Microbiology|June 29, 2026
Mobile genetic elements shape microbial diversity and functions in thawing permafrost soilsJiarong Guo, Samuel T N Aroney, Guillermo Domínguez-Huerta, et al.
Pageof 6