Understanding the interplay between genotype and phenotype is a fundamental goal of functional genomics. Methane oxidation is a microbial phenotype with global-scale significance as part of the carbon biogeochemical cycle and a sink for greenhouse gas. Microorganisms that oxidize methane (methanotrophs) are taxonomically diverse and widespread around the globe. In methanotrophic bacteria, enzymes in the methane oxidation metabolic module (KEGG module M00174, conversion of methane to formaldehyde) are encoded in four operons (pmoCAB, mmoXYZBCD, mxaFI, and xoxF). Recent reports have suggested that methanotrophs in Proteobacteria acquired methane monooxygenases through horizontal gene transfer. Here, we used a genomic meta-analysis to infer th...
We describe experiments that follow species dynamics and gene expression patterns in synthetic bacte...
The Zoige wetland of the Tibetan Plateau is one of the largest alpine wetlands in the world and a ma...
Methanotrophs are a specialized group of bacteria that can utilize methane (CH4) as a sole energy so...
Understanding the interplay between genotype and phenotype is a fundamental goal of functional genom...
Methanotrophs are ubiquitous bacteria that can use the greenhouse gas methane as a sole carbon and e...
Methanotrophs are ubiquitous bacteria that can use the greenhouse gas methane as a sole carbon and e...
Genomes of alphaproteobacterial and verrucomicrobial methane-oxidizing bacteria (MOB) encode sequenc...
Aerobic methanotrophic bacteria consume methane as it diffuses away from methanogenic zones of soil ...
Aerobic methane?oxidizing bacteria (methanotrophs) are a diverse group of bacteria that are currentl...
Over the past years, metagenomics has revolutionized our view of microbial diversity. Moreover, extr...
Aerobic methane-oxidizing bacteria (methanotrophs) are a diverse group of bacteria that are currentl...
Aerobic methanotrophic bacteria consume methane as it diffuses away from methanogenic zones of soil ...
Methanotrophic bacteria performmajor roles in global carbon cycles via their unique enzymatic activi...
Genomes of alphaproteobacterial and verrucomicrobial methane-oxidizing bacteria (MOB) encode sequenc...
Methanotrophs are ubiquitous bacteria that can use the greenhouse gas methane as a sole carbon and e...
We describe experiments that follow species dynamics and gene expression patterns in synthetic bacte...
The Zoige wetland of the Tibetan Plateau is one of the largest alpine wetlands in the world and a ma...
Methanotrophs are a specialized group of bacteria that can utilize methane (CH4) as a sole energy so...
Understanding the interplay between genotype and phenotype is a fundamental goal of functional genom...
Methanotrophs are ubiquitous bacteria that can use the greenhouse gas methane as a sole carbon and e...
Methanotrophs are ubiquitous bacteria that can use the greenhouse gas methane as a sole carbon and e...
Genomes of alphaproteobacterial and verrucomicrobial methane-oxidizing bacteria (MOB) encode sequenc...
Aerobic methanotrophic bacteria consume methane as it diffuses away from methanogenic zones of soil ...
Aerobic methane?oxidizing bacteria (methanotrophs) are a diverse group of bacteria that are currentl...
Over the past years, metagenomics has revolutionized our view of microbial diversity. Moreover, extr...
Aerobic methane-oxidizing bacteria (methanotrophs) are a diverse group of bacteria that are currentl...
Aerobic methanotrophic bacteria consume methane as it diffuses away from methanogenic zones of soil ...
Methanotrophic bacteria performmajor roles in global carbon cycles via their unique enzymatic activi...
Genomes of alphaproteobacterial and verrucomicrobial methane-oxidizing bacteria (MOB) encode sequenc...
Methanotrophs are ubiquitous bacteria that can use the greenhouse gas methane as a sole carbon and e...
We describe experiments that follow species dynamics and gene expression patterns in synthetic bacte...
The Zoige wetland of the Tibetan Plateau is one of the largest alpine wetlands in the world and a ma...
Methanotrophs are a specialized group of bacteria that can utilize methane (CH4) as a sole energy so...