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J Blazewicz

Showing results (31-40 of 47) with videos related to

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Nature Communications|June 8, 2021
Nutrients cause consolidation of soil carbon flux to small proportion of bacterial communityBram W Stone, Junhui Li, Benjamin J Koch, et al.
Nature Communications|June 25, 2021
Author Correction: Nutrients cause consolidation of soil carbon flux to small proportion of bacterial communityBram W Stone, Junhui Li, Benjamin J Koch, et al.
Microbiome|April 10, 2026
Reduced legacy precipitation decreases microbial community growth efficiency and alters soil organic carbon in a California grasslandLinnea K Hernandez, Nicole DiDonato, Ljiljana Pasa-Tolic, et al.
Nature|March 6, 2015
Multi-omics of permafrost, active layer and thermokarst bog soil microbiomesJenni Hultman, Mark P Waldrop, Rachel Mackelprang, et al.
Global Change Biology|September 29, 2021
Decreased growth of wild soil microbes after 15 years of transplant-induced warming in a montane meadowAlicia M Purcell, Michaela Hayer, Benjamin J Koch, et al.
Nature Reviews. Microbiology|March 1, 2022
Life and death in the soil microbiome: how ecological processes influence biogeochemistryNoah W Sokol, Eric Slessarev, Gianna L Marschmann, et al.
Msystems|June 28, 2023
A standardized quantitative analysis strategy for stable isotope probing metagenomicsDariia Vyshenska, Pranav Sampara, Kanwar Singh, et al.
Microbiome|November 27, 2021
Minnesota peat viromes reveal terrestrial and aquatic niche partitioning for local and global viral populationsAnneliek M Ter Horst, Christian Santos-Medellín, Jackson W Sorensen, 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.
Microbiome|December 16, 2021
Correction to: Minnesota peat viromes reveal terrestrial and aquatic niche partitioning for local and global viral populationsAnneliek M Ter Horst, Christian Santos-Medellín, Jackson W Sorensen, et al.
Pageof 5

Showing results (31-40 of 47) with videos related to

Sort By:
Pageof 5
Nature Communications|June 8, 2021
Nutrients cause consolidation of soil carbon flux to small proportion of bacterial communityBram W Stone, Junhui Li, Benjamin J Koch, et al.
Nature Communications|June 25, 2021
Author Correction: Nutrients cause consolidation of soil carbon flux to small proportion of bacterial communityBram W Stone, Junhui Li, Benjamin J Koch, et al.
Microbiome|April 10, 2026
Reduced legacy precipitation decreases microbial community growth efficiency and alters soil organic carbon in a California grasslandLinnea K Hernandez, Nicole DiDonato, Ljiljana Pasa-Tolic, et al.
Nature|March 6, 2015
Multi-omics of permafrost, active layer and thermokarst bog soil microbiomesJenni Hultman, Mark P Waldrop, Rachel Mackelprang, et al.
Global Change Biology|September 29, 2021
Decreased growth of wild soil microbes after 15 years of transplant-induced warming in a montane meadowAlicia M Purcell, Michaela Hayer, Benjamin J Koch, et al.
Nature Reviews. Microbiology|March 1, 2022
Life and death in the soil microbiome: how ecological processes influence biogeochemistryNoah W Sokol, Eric Slessarev, Gianna L Marschmann, et al.
Msystems|June 28, 2023
A standardized quantitative analysis strategy for stable isotope probing metagenomicsDariia Vyshenska, Pranav Sampara, Kanwar Singh, et al.
Microbiome|November 27, 2021
Minnesota peat viromes reveal terrestrial and aquatic niche partitioning for local and global viral populationsAnneliek M Ter Horst, Christian Santos-Medellín, Jackson W Sorensen, 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.
Microbiome|December 16, 2021
Correction to: Minnesota peat viromes reveal terrestrial and aquatic niche partitioning for local and global viral populationsAnneliek M Ter Horst, Christian Santos-Medellín, Jackson W Sorensen, et al.
Pageof 5