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Philippe Constant

Showing results (1-10 of 46) with videos related to

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Applied and Environmental Microbiology|December 20, 2015
Identification of Unknown Carboxydovore Bacteria Dominant in Deciduous Forest Soil via Succession of Bacterial Communities, coxL Genotypes, and Carbon Monoxide Oxidation Activity in Soil MicrocosmsIsabelle Lalonde, Philippe Constant
Microbiologyopen|November 7, 2015
Breathing air to save energy--new insights into the ecophysiological role of high-affinity [NiFe]-hydrogenase in Streptomyces avermitilisQuentin Liot, Philippe Constant
Peerj|September 15, 2025
The potential biofertilization effect of H<sub>2</sub> is accompanied by a modest impact on the composition of microbial communities in the rhizosphere of common vetchDiana Dip, Philippe Constant
FEMS Microbiology Ecology|December 1, 2023
Carbon amendments in soil microcosms induce uneven response on H2 oxidation activity and microbial community compositionXavier Baril, Philippe Constant
Letters in Applied Microbiology|April 18, 2025
Life history strategies to study the succession of H2-oxidizing bacteria and their ecological role along H2 concentration gradients in upland soilsXavier Baril, Philippe Constant
Applied and Environmental Microbiology|January 20, 2019
Molecular Hydrogen, a Neglected Key Driver of Soil Biogeochemical ProcessesSarah Piché-Choquette, Philippe Constant
The Science of the Total Environment|January 22, 2009
Tropospheric H(2) budget and the response of its soil uptake under the changing environmentPhilippe Constant, Laurier Poissant, Richard Villemur
The ISME Journal|June 13, 2008
Isolation of Streptomyces sp. PCB7, the first microorganism demonstrating high-affinity uptake of tropospheric H2Philippe Constant, Laurier Poissant, Richard Villemur
Trends in Microbiology|December 22, 2022
The forecasting power of the microbiomeSara Correa-Garcia, Philippe Constant, Etienne Yergeau
Microbial Ecology|June 18, 2017
Survey of High-Affinity H<sub>2</sub>-Oxidizing Bacteria in Soil Reveals Their Vast Diversity Yet Underrepresentation in Genomic DatabasesSarah Piché-Choquette, Mondher Khdhiri, Philippe Constant
Pageof 5

Showing results (1-10 of 46) with videos related to

Sort By:
Pageof 5
Applied and Environmental Microbiology|December 20, 2015
Identification of Unknown Carboxydovore Bacteria Dominant in Deciduous Forest Soil via Succession of Bacterial Communities, coxL Genotypes, and Carbon Monoxide Oxidation Activity in Soil MicrocosmsIsabelle Lalonde, Philippe Constant
Microbiologyopen|November 7, 2015
Breathing air to save energy--new insights into the ecophysiological role of high-affinity [NiFe]-hydrogenase in Streptomyces avermitilisQuentin Liot, Philippe Constant
Peerj|September 15, 2025
The potential biofertilization effect of H<sub>2</sub> is accompanied by a modest impact on the composition of microbial communities in the rhizosphere of common vetchDiana Dip, Philippe Constant
FEMS Microbiology Ecology|December 1, 2023
Carbon amendments in soil microcosms induce uneven response on H2 oxidation activity and microbial community compositionXavier Baril, Philippe Constant
Letters in Applied Microbiology|April 18, 2025
Life history strategies to study the succession of H2-oxidizing bacteria and their ecological role along H2 concentration gradients in upland soilsXavier Baril, Philippe Constant
Applied and Environmental Microbiology|January 20, 2019
Molecular Hydrogen, a Neglected Key Driver of Soil Biogeochemical ProcessesSarah Piché-Choquette, Philippe Constant
The Science of the Total Environment|January 22, 2009
Tropospheric H(2) budget and the response of its soil uptake under the changing environmentPhilippe Constant, Laurier Poissant, Richard Villemur
The ISME Journal|June 13, 2008
Isolation of Streptomyces sp. PCB7, the first microorganism demonstrating high-affinity uptake of tropospheric H2Philippe Constant, Laurier Poissant, Richard Villemur
Trends in Microbiology|December 22, 2022
The forecasting power of the microbiomeSara Correa-Garcia, Philippe Constant, Etienne Yergeau
Microbial Ecology|June 18, 2017
Survey of High-Affinity H<sub>2</sub>-Oxidizing Bacteria in Soil Reveals Their Vast Diversity Yet Underrepresentation in Genomic DatabasesSarah Piché-Choquette, Mondher Khdhiri, Philippe Constant
Pageof 5