In the current study, a number of salt-tolerant clones previously isolated from a human gut metagenomic library were screened using Phenotype MicroArray (PM) technology to assess their functional capacity. One clone, SMG 9, was found to be positive for utilisation/transport of L-carnitine (a well-characterised osmoprotectant) in the presence of 6% w/v sodium chloride (NaCl). Subsequent experiments revealed a significant growth advantage in minimal media containing NaCl and L-carnitine. Fosmid sequencing revealed putative candidate genes responsible for the phenotype. Subsequent cloning of two genes did not replicate the L-carnitine-associated phenotype, although one of the genes, a σ54-dependent transcriptional regulator, did confer salt ...
The human gut microbiome consists of at least 3 million non-redundant genes, 150 times that of the c...
Functional environmental screening of metagenomic libraries is a powerful means to identify and assi...
<div><p>The human gut microbiome consists of at least 3 million non-redundant genes, 150 times that ...
Metagenomics is a powerful tool that allows for the culture-independent analysis of complex microbia...
Metagenomics is a powerful tool that allows for the culture-independent analysis of complex microbia...
Metagenomics is a powerful tool that allows for the culture-independent analysis of complex microbia...
doi: 10.3389/fmicb.2014.00189 Combined metagenomic and phenomic approaches identify a novel salt tol...
Functional environmental screening of metagenomic libraries is a powerful means to identify and assi...
Functional environmental screening of metagenomic libraries is a powerful means to identify and assi...
<div><p>Functional environmental screening of metagenomic libraries is a powerful means to identify ...
Functional environmental screening of metagenomic libraries is a powerful means to identify and assi...
Every niche in the biosphere is touched by the seemingly endless capacity of microbes to transform t...
The human gut microbiome consists of at least 3 million non-redundant genes, 150 times that of the c...
Every niche in the biosphere is touched by the seemingly endless capacity of microbes to transform t...
The human gut microbiome consists of at least 3 million non-redundant genes, 150 times that of the c...
The human gut microbiome consists of at least 3 million non-redundant genes, 150 times that of the c...
Functional environmental screening of metagenomic libraries is a powerful means to identify and assi...
<div><p>The human gut microbiome consists of at least 3 million non-redundant genes, 150 times that ...
Metagenomics is a powerful tool that allows for the culture-independent analysis of complex microbia...
Metagenomics is a powerful tool that allows for the culture-independent analysis of complex microbia...
Metagenomics is a powerful tool that allows for the culture-independent analysis of complex microbia...
doi: 10.3389/fmicb.2014.00189 Combined metagenomic and phenomic approaches identify a novel salt tol...
Functional environmental screening of metagenomic libraries is a powerful means to identify and assi...
Functional environmental screening of metagenomic libraries is a powerful means to identify and assi...
<div><p>Functional environmental screening of metagenomic libraries is a powerful means to identify ...
Functional environmental screening of metagenomic libraries is a powerful means to identify and assi...
Every niche in the biosphere is touched by the seemingly endless capacity of microbes to transform t...
The human gut microbiome consists of at least 3 million non-redundant genes, 150 times that of the c...
Every niche in the biosphere is touched by the seemingly endless capacity of microbes to transform t...
The human gut microbiome consists of at least 3 million non-redundant genes, 150 times that of the c...
The human gut microbiome consists of at least 3 million non-redundant genes, 150 times that of the c...
Functional environmental screening of metagenomic libraries is a powerful means to identify and assi...
<div><p>The human gut microbiome consists of at least 3 million non-redundant genes, 150 times that ...