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Erick Cardenas

Showing results (11-20 of 24) with videos related to

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The ISME Journal|April 25, 2015
Forest harvesting reduces the soil metagenomic potential for biomass decompositionErick Cardenas, J M Kranabetter, Graeme Hope, et al.
The ISME Journal|April 25, 2015
Non-symbiotic Bradyrhizobium ecotypes dominate North American forest soilsDavid VanInsberghe, Kendra R Maas, Erick Cardenas, et al.
Applied and Environmental Microbiology|November 10, 2009
Unique ecophysiology among U(VI)-reducing bacteria as revealed by evaluation of oxygen metabolism in Anaeromyxobacter dehalogenans strain 2CP-CSara H Thomas, Robert A Sanford, Benjamin K Amos, et al.
Scientific Data|August 3, 2017
A metagenomic survey of forest soil microbial communities more than a decade after timber harvestingRoland C Wilhelm, Erick Cardenas, Hilary Leung, et al.
Mbio|February 1, 2018
Metagenomes Reveal Global Distribution of Bacterial Steroid Catabolism in Natural, Engineered, and Host EnvironmentsJohannes Holert, Erick Cardenas, Lee H Bergstrand, et al.
Plos One|July 19, 2012
Identification of bacteria utilizing biphenyl, benzoate, and naphthalene in long-term contaminated soilOndrej Uhlik, Jiri Wald, Michal Strejcek, et al.
Nature Microbiology|November 17, 2023
Multiple micronutrient deficiencies in early life cause multi-kingdom alterations in the gut microbiome and intrinsic antibiotic resistance genes in micePaula T Littlejohn, Avril Metcalfe-Roach, Erick Cardenas Poire, et al.
Applied and Environmental Microbiology|December 20, 2011
Denitrifying bacteria from the genus Rhodanobacter dominate bacterial communities in the highly contaminated subsurface of a nuclear legacy waste siteStefan J Green, Om Prakash, Puja Jasrotia, et al.
Applied and Environmental Microbiology|February 18, 2018
Bacterial Community Shift and Coexisting/Coexcluding Patterns Revealed by Network Analysis in a Uranium-Contaminated Site after Bioreduction Followed by ReoxidationBing Li, Wei-Min Wu, David B Watson, et al.
Applied and Environmental Microbiology|August 24, 2010
Significant association between sulfate-reducing bacteria and uranium-reducing microbial communities as revealed by a combined massively parallel sequencing-indicator species approachErick Cardenas, Wei-Min Wu, Mary Beth Leigh, et al.
Pageof 3

Showing results (11-20 of 24) with videos related to

Sort By:
Pageof 3
The ISME Journal|April 25, 2015
Forest harvesting reduces the soil metagenomic potential for biomass decompositionErick Cardenas, J M Kranabetter, Graeme Hope, et al.
The ISME Journal|April 25, 2015
Non-symbiotic Bradyrhizobium ecotypes dominate North American forest soilsDavid VanInsberghe, Kendra R Maas, Erick Cardenas, et al.
Applied and Environmental Microbiology|November 10, 2009
Unique ecophysiology among U(VI)-reducing bacteria as revealed by evaluation of oxygen metabolism in Anaeromyxobacter dehalogenans strain 2CP-CSara H Thomas, Robert A Sanford, Benjamin K Amos, et al.
Scientific Data|August 3, 2017
A metagenomic survey of forest soil microbial communities more than a decade after timber harvestingRoland C Wilhelm, Erick Cardenas, Hilary Leung, et al.
Mbio|February 1, 2018
Metagenomes Reveal Global Distribution of Bacterial Steroid Catabolism in Natural, Engineered, and Host EnvironmentsJohannes Holert, Erick Cardenas, Lee H Bergstrand, et al.
Plos One|July 19, 2012
Identification of bacteria utilizing biphenyl, benzoate, and naphthalene in long-term contaminated soilOndrej Uhlik, Jiri Wald, Michal Strejcek, et al.
Nature Microbiology|November 17, 2023
Multiple micronutrient deficiencies in early life cause multi-kingdom alterations in the gut microbiome and intrinsic antibiotic resistance genes in micePaula T Littlejohn, Avril Metcalfe-Roach, Erick Cardenas Poire, et al.
Applied and Environmental Microbiology|December 20, 2011
Denitrifying bacteria from the genus Rhodanobacter dominate bacterial communities in the highly contaminated subsurface of a nuclear legacy waste siteStefan J Green, Om Prakash, Puja Jasrotia, et al.
Applied and Environmental Microbiology|February 18, 2018
Bacterial Community Shift and Coexisting/Coexcluding Patterns Revealed by Network Analysis in a Uranium-Contaminated Site after Bioreduction Followed by ReoxidationBing Li, Wei-Min Wu, David B Watson, et al.
Applied and Environmental Microbiology|August 24, 2010
Significant association between sulfate-reducing bacteria and uranium-reducing microbial communities as revealed by a combined massively parallel sequencing-indicator species approachErick Cardenas, Wei-Min Wu, Mary Beth Leigh, et al.
Pageof 3