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George W Kling

Showing results (1-10 of 27) with videos related to

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Environmental Microbiology|September 22, 2022
Summer thaw duration is a strong predictor of the soil microbiome and its response to permafrost thaw in arctic tundraKarl J Romanowicz, George W Kling
Ecology|August 23, 2006
Microbial community composition and function across an arctic tundra landscapeDonald R Zak, George W Kling
Environmental Microbiology|March 3, 2010
Temperature controls on aquatic bacterial production and community dynamics in arctic lakes and streamsHeather E Adams, Byron C Crump, George W Kling
Frontiers in Microbiology|April 16, 2015
Isolating the effects of storm events on arctic aquatic bacteria: temperature, nutrients, and community composition as controls on bacterial productivityHeather E Adams, Byron C Crump, George W Kling
Frontiers in Microbiology|March 14, 2014
Metacommunity dynamics of bacteria in an arctic lake: the impact of species sorting and mass effects on bacterial production and biogeographyHeather E Adams, Byron C Crump, George W Kling
Ecology|August 30, 2006
Variation in dissolved organic matter controls bacterial production and community compositionKristin E Judd, Byron C Crump, George W Kling
ISME Communications|November 23, 2023
Genomic evidence that microbial carbon degradation is dominated by iron redox metabolism in thawing permafrostKarl J Romanowicz, Byron C Crump, George W Kling
Environmental Science. Processes & Impacts|October 20, 2020
Interannual, summer, and diel variability of CH<sub>4</sub> and CO<sub>2</sub> effluxes from Toolik Lake, Alaska, during the ice-free periods 2010-2015Werner Eugster, Tonya DelSontro, Gaius R Shaver, et al.
The ISME Journal|March 2, 2012
Microbial diversity in arctic freshwaters is structured by inoculation of microbes from soilsByron C Crump, Linda A Amaral-Zettler, George W Kling
Applied and Environmental Microbiology|April 5, 2003
Bacterioplankton community shifts in an arctic lake correlate with seasonal changes in organic matter sourceByron C Crump, George W Kling, Michele Bahr, et al.
Pageof 3

Showing results (1-10 of 27) with videos related to

Sort By:
Pageof 3
Environmental Microbiology|September 22, 2022
Summer thaw duration is a strong predictor of the soil microbiome and its response to permafrost thaw in arctic tundraKarl J Romanowicz, George W Kling
Ecology|August 23, 2006
Microbial community composition and function across an arctic tundra landscapeDonald R Zak, George W Kling
Environmental Microbiology|March 3, 2010
Temperature controls on aquatic bacterial production and community dynamics in arctic lakes and streamsHeather E Adams, Byron C Crump, George W Kling
Frontiers in Microbiology|April 16, 2015
Isolating the effects of storm events on arctic aquatic bacteria: temperature, nutrients, and community composition as controls on bacterial productivityHeather E Adams, Byron C Crump, George W Kling
Frontiers in Microbiology|March 14, 2014
Metacommunity dynamics of bacteria in an arctic lake: the impact of species sorting and mass effects on bacterial production and biogeographyHeather E Adams, Byron C Crump, George W Kling
Ecology|August 30, 2006
Variation in dissolved organic matter controls bacterial production and community compositionKristin E Judd, Byron C Crump, George W Kling
ISME Communications|November 23, 2023
Genomic evidence that microbial carbon degradation is dominated by iron redox metabolism in thawing permafrostKarl J Romanowicz, Byron C Crump, George W Kling
Environmental Science. Processes & Impacts|October 20, 2020
Interannual, summer, and diel variability of CH<sub>4</sub> and CO<sub>2</sub> effluxes from Toolik Lake, Alaska, during the ice-free periods 2010-2015Werner Eugster, Tonya DelSontro, Gaius R Shaver, et al.
The ISME Journal|March 2, 2012
Microbial diversity in arctic freshwaters is structured by inoculation of microbes from soilsByron C Crump, Linda A Amaral-Zettler, George W Kling
Applied and Environmental Microbiology|April 5, 2003
Bacterioplankton community shifts in an arctic lake correlate with seasonal changes in organic matter sourceByron C Crump, George W Kling, Michele Bahr, et al.
Pageof 3