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Kelly C Wrighton

Showing results (31-40 of 108) with videos related to

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The ISME Journal|September 5, 2008
A novel ecological role of the Firmicutes identified in thermophilic microbial fuel cellsKelly C Wrighton, Peter Agbo, Falk Warnecke, et al.
Frontiers in Microbiology|March 11, 2020
Identification of Persistent Sulfidogenic Bacteria in Shale Gas Produced WatersLisa Cliffe, Sophie L Nixon, Rebecca A Daly, et al.
Microbiology Resource Announcements|April 23, 2024
Untargeted, tandem mass spectrometry metaproteome of Columbia River sedimentsJosué Rodríguez-Ramos, Carrie D Nicora, Samuel O Purvine, et al.
The ISME Journal|June 4, 2010
Bacterial community structure corresponds to performance during cathodic nitrate reductionKelly C Wrighton, Bernardino Virdis, Peter Clauwaert, et al.
Global Change Biology|August 7, 2025
Metabolic Redox Coupling Controls Methane Production in Permafrost-Affected Peatlands Through Organic Matter Quality-Dependent Energy AllocationJohn A Bouranis, Bridget B McGivern, Ghiwa Makke, et al.
Microbiome|January 17, 2022
Microbial colonization and persistence in deep fractured shales is guided by metabolic exchanges and viral predationKaela K Amundson, Mikayla A Borton, Rebecca A Daly, et al.
Microbiome|January 24, 2014
Community genomic analyses constrain the distribution of metabolic traits across the Chloroflexi phylum and indicate roles in sediment carbon cyclingLaura A Hug, Cindy J Castelle, Kelly C Wrighton, et al.
The ISME Journal|March 1, 2013
Enrichment of specific protozoan populations during in situ bioremediation of uranium-contaminated groundwaterDawn E Holmes, Ludovic Giloteaux, Kenneth H Williams, et al.
Microbiome|February 12, 2022
Correction to: Microbial colonization and persistence in deep fractured shales is guided by metabolic exchanges and viral predationKaela K Amundson, Mikayla A Borton, Rebecca A Daly, et al.
Msphere|December 20, 2019
Genome-Resolved Metagenomics Extends the Environmental Distribution of the <i>Verrucomicrobia</i> Phylum to the Deep Terrestrial SubsurfaceSophie L Nixon, Rebecca A Daly, Mikayla A Borton, et al.
Pageof 11

Showing results (31-40 of 108) with videos related to

Sort By:
Pageof 11
The ISME Journal|September 5, 2008
A novel ecological role of the Firmicutes identified in thermophilic microbial fuel cellsKelly C Wrighton, Peter Agbo, Falk Warnecke, et al.
Frontiers in Microbiology|March 11, 2020
Identification of Persistent Sulfidogenic Bacteria in Shale Gas Produced WatersLisa Cliffe, Sophie L Nixon, Rebecca A Daly, et al.
Microbiology Resource Announcements|April 23, 2024
Untargeted, tandem mass spectrometry metaproteome of Columbia River sedimentsJosué Rodríguez-Ramos, Carrie D Nicora, Samuel O Purvine, et al.
The ISME Journal|June 4, 2010
Bacterial community structure corresponds to performance during cathodic nitrate reductionKelly C Wrighton, Bernardino Virdis, Peter Clauwaert, et al.
Global Change Biology|August 7, 2025
Metabolic Redox Coupling Controls Methane Production in Permafrost-Affected Peatlands Through Organic Matter Quality-Dependent Energy AllocationJohn A Bouranis, Bridget B McGivern, Ghiwa Makke, et al.
Microbiome|January 17, 2022
Microbial colonization and persistence in deep fractured shales is guided by metabolic exchanges and viral predationKaela K Amundson, Mikayla A Borton, Rebecca A Daly, et al.
Microbiome|January 24, 2014
Community genomic analyses constrain the distribution of metabolic traits across the Chloroflexi phylum and indicate roles in sediment carbon cyclingLaura A Hug, Cindy J Castelle, Kelly C Wrighton, et al.
The ISME Journal|March 1, 2013
Enrichment of specific protozoan populations during in situ bioremediation of uranium-contaminated groundwaterDawn E Holmes, Ludovic Giloteaux, Kenneth H Williams, et al.
Microbiome|February 12, 2022
Correction to: Microbial colonization and persistence in deep fractured shales is guided by metabolic exchanges and viral predationKaela K Amundson, Mikayla A Borton, Rebecca A Daly, et al.
Msphere|December 20, 2019
Genome-Resolved Metagenomics Extends the Environmental Distribution of the <i>Verrucomicrobia</i> Phylum to the Deep Terrestrial SubsurfaceSophie L Nixon, Rebecca A Daly, Mikayla A Borton, et al.
Pageof 11