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Robert L Sinsabaugh

Showing results (1-10 of 34) with videos related to

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Global Change Biology|December 29, 2020
Linking microbial functional gene abundance and soil extracellular enzyme activity: Implications for soil carbon dynamicsJi Chen, Robert L Sinsabaugh
Ecology|May 28, 2010
Integrating resource utilization and temperature in metabolic scaling of riverine bacterial productionRobert L Sinsabaugh, Jennifer J Follstad Shah
Microbial Ecology|January 4, 2006
Microbial responses to long-term N deposition in a semiarid grasslandMartina Stursova, Chelsea L Crenshaw, Robert L Sinsabaugh
Microbial Ecology|September 2, 2008
Laccase gene composition and relative abundance in oak forest soil is not affected by short-term nitrogen fertilizationChristian L Lauber, Robert L Sinsabaugh, Donald R Zak
American Journal of Botany|July 17, 2018
Biocrusts benefit from plant removalEva Dettweiler-Robinson, Robert L Sinsabaugh, Jennifer A Rudgers
Nature|December 17, 2009
Ecoenzymatic stoichiometry of microbial organic nutrient acquisition in soil and sedimentRobert L Sinsabaugh, Brian H Hill, Jennifer J Follstad Shah
Ecology Letters|May 1, 2013
Carbon use efficiency of microbial communities: stoichiometry, methodology and modellingRobert L Sinsabaugh, Stefano Manzoni, Daryl L Moorhead, et al.
The New Phytologist|February 25, 2017
Plant, microbial and ecosystem carbon use efficiencies interact to stabilize microbial growth as a fraction of gross primary productionRobert L Sinsabaugh, Daryl L Moorhead, Xiaofeng Xu, et al.
Oecologia|August 29, 2007
Microbial responses to nitrogen addition in three contrasting grassland ecosystemsLydia H Zeglin, Martina Stursova, Robert L Sinsabaugh, et al.
Environmental Microbiology|May 3, 2007
Molecular analysis of fungal communities and laccase genes in decomposing litter reveals differences among forest types but no impact of nitrogen depositionChristopher B Blackwood, Mark P Waldrop, Donald R Zak, et al.
Pageof 4

Showing results (1-10 of 34) with videos related to

Sort By:
Pageof 4
Global Change Biology|December 29, 2020
Linking microbial functional gene abundance and soil extracellular enzyme activity: Implications for soil carbon dynamicsJi Chen, Robert L Sinsabaugh
Ecology|May 28, 2010
Integrating resource utilization and temperature in metabolic scaling of riverine bacterial productionRobert L Sinsabaugh, Jennifer J Follstad Shah
Microbial Ecology|January 4, 2006
Microbial responses to long-term N deposition in a semiarid grasslandMartina Stursova, Chelsea L Crenshaw, Robert L Sinsabaugh
Microbial Ecology|September 2, 2008
Laccase gene composition and relative abundance in oak forest soil is not affected by short-term nitrogen fertilizationChristian L Lauber, Robert L Sinsabaugh, Donald R Zak
American Journal of Botany|July 17, 2018
Biocrusts benefit from plant removalEva Dettweiler-Robinson, Robert L Sinsabaugh, Jennifer A Rudgers
Nature|December 17, 2009
Ecoenzymatic stoichiometry of microbial organic nutrient acquisition in soil and sedimentRobert L Sinsabaugh, Brian H Hill, Jennifer J Follstad Shah
Ecology Letters|May 1, 2013
Carbon use efficiency of microbial communities: stoichiometry, methodology and modellingRobert L Sinsabaugh, Stefano Manzoni, Daryl L Moorhead, et al.
The New Phytologist|February 25, 2017
Plant, microbial and ecosystem carbon use efficiencies interact to stabilize microbial growth as a fraction of gross primary productionRobert L Sinsabaugh, Daryl L Moorhead, Xiaofeng Xu, et al.
Oecologia|August 29, 2007
Microbial responses to nitrogen addition in three contrasting grassland ecosystemsLydia H Zeglin, Martina Stursova, Robert L Sinsabaugh, et al.
Environmental Microbiology|May 3, 2007
Molecular analysis of fungal communities and laccase genes in decomposing litter reveals differences among forest types but no impact of nitrogen depositionChristopher B Blackwood, Mark P Waldrop, Donald R Zak, et al.
Pageof 4