Abstract Background Analyses of DNA sequences from cultivated microorganisms have revealed genome-wide, taxa-specific nucleotide compositional characteristics, referred to as genome signatures. These signatures have far-reaching implications for understanding genome evolution and potential application in classification of metagenomic sequence fragments. However, little is known regarding the distribution of genome signatures in natural microbial communities or the extent to which environmental factors shape them. Results We analyzed metagenomic sequence data from two acidophilic biofilm communities, including composite genomes reconstructed for nine archaea, three bacteria, and numerous associated viruses, as well as thousands of unassigned...
© 2011 Dr. Isaam SaeedTapping into the remarkable power of the uncultured majority of microbial orga...
Deeply sampled community genomic (metagenomic) datasets enable comprehensive analysis of heterogenei...
Deeply sampled community genomic (metagenomic) datasets enable comprehensive analysis of heterogenei...
Background: Analyses of DNA sequences from cultivated microorganisms have revealed genome-wide, taxa...
Background: Analyses of DNA sequences from cultivated microorganisms have revealed genome-wide, taxa...
Abstract Background Analyses of DNA sequences from cu...
permits unrestricted use, distribution, and reproduction in any medium, provided the original work i...
Microbes comprise the majority of extant organisms, yet much remains to be learned about the nature ...
Previous studies have shown that dinucleotide abundances capture the majority of variation in genome...
Microorganisms and the viruses that infect them are the most numerous biological entities on Earth a...
Microbes comprise the majority of extant organisms, yet much remains to be learned about the nature ...
Microorganisms and the viruses that infect them are the most numerous biological entities on Earth a...
Microorganisms and the viruses that infect them are the most numerous biological entities on Earth a...
Microorganisms and the viruses that infect them are the most numerous biological entities on Earth a...
Item does not contain fulltextMicroorganisms and the viruses that infect them are the most numerous ...
© 2011 Dr. Isaam SaeedTapping into the remarkable power of the uncultured majority of microbial orga...
Deeply sampled community genomic (metagenomic) datasets enable comprehensive analysis of heterogenei...
Deeply sampled community genomic (metagenomic) datasets enable comprehensive analysis of heterogenei...
Background: Analyses of DNA sequences from cultivated microorganisms have revealed genome-wide, taxa...
Background: Analyses of DNA sequences from cultivated microorganisms have revealed genome-wide, taxa...
Abstract Background Analyses of DNA sequences from cu...
permits unrestricted use, distribution, and reproduction in any medium, provided the original work i...
Microbes comprise the majority of extant organisms, yet much remains to be learned about the nature ...
Previous studies have shown that dinucleotide abundances capture the majority of variation in genome...
Microorganisms and the viruses that infect them are the most numerous biological entities on Earth a...
Microbes comprise the majority of extant organisms, yet much remains to be learned about the nature ...
Microorganisms and the viruses that infect them are the most numerous biological entities on Earth a...
Microorganisms and the viruses that infect them are the most numerous biological entities on Earth a...
Microorganisms and the viruses that infect them are the most numerous biological entities on Earth a...
Item does not contain fulltextMicroorganisms and the viruses that infect them are the most numerous ...
© 2011 Dr. Isaam SaeedTapping into the remarkable power of the uncultured majority of microbial orga...
Deeply sampled community genomic (metagenomic) datasets enable comprehensive analysis of heterogenei...
Deeply sampled community genomic (metagenomic) datasets enable comprehensive analysis of heterogenei...