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author Rusch, Douglas B
Halpern, Aaron L
Sutton, Granger
Heidelberg, Karla B
Williamson, Shannon
Yooseph, Shibu
Wu, Dongying
Eisen, Jonathan A
Hoffman, Jeff M
Remington, Karin
Beeson, Karen
Tran, Bao
Smith, Hamilton
Baden-Tillson, Holly
Stewart, Clare
Thorpe, Joyce
Freeman, Jason
Andrews-Pfannkoch, Cynthia
Venter, Joseph E
Li, Kelvin
Kravitz, Saul
Heidelberg, John F
Utterback, Terry
Rogers, Yu-Hui
Falcón, Luisa I
Souza, Valeria
Bonilla-Rosso, Germán
Eguiarte, Luis E
Karl, David M
Sathyendranath, Shubha
Platt, Trevor
Bermingham, Eldredge
Gallardo, Victor
Tamayo-Castillo, Giselle
Ferrari, Michael R
Strausberg, Robert L
Nealson, Kenneth
Friedman, Robert
Frazier, Marvin
Venter, J. Craig
author_facet Rusch, Douglas B
Halpern, Aaron L
Sutton, Granger
Heidelberg, Karla B
Williamson, Shannon
Yooseph, Shibu
Wu, Dongying
Eisen, Jonathan A
Hoffman, Jeff M
Remington, Karin
Beeson, Karen
Tran, Bao
Smith, Hamilton
Baden-Tillson, Holly
Stewart, Clare
Thorpe, Joyce
Freeman, Jason
Andrews-Pfannkoch, Cynthia
Venter, Joseph E
Li, Kelvin
Kravitz, Saul
Heidelberg, John F
Utterback, Terry
Rogers, Yu-Hui
Falcón, Luisa I
Souza, Valeria
Bonilla-Rosso, Germán
Eguiarte, Luis E
Karl, David M
Sathyendranath, Shubha
Platt, Trevor
Bermingham, Eldredge
Gallardo, Victor
Tamayo-Castillo, Giselle
Ferrari, Michael R
Strausberg, Robert L
Nealson, Kenneth
Friedman, Robert
Frazier, Marvin
Venter, J. Craig
author_sort Rusch, Douglas B
collection PubMed
description The world's oceans contain a complex mixture of micro-organisms that are for the most part, uncharacterized both genetically and biochemically. We report here a metagenomic study of the marine planktonic microbiota in which surface (mostly marine) water samples were analyzed as part of the Sorcerer II Global Ocean Sampling expedition. These samples, collected across a several-thousand km transect from the North Atlantic through the Panama Canal and ending in the South Pacific yielded an extensive dataset consisting of 7.7 million sequencing reads (6.3 billion bp). Though a few major microbial clades dominate the planktonic marine niche, the dataset contains great diversity with 85% of the assembled sequence and 57% of the unassembled data being unique at a 98% sequence identity cutoff. Using the metadata associated with each sample and sequencing library, we developed new comparative genomic and assembly methods. One comparative genomic method, termed “fragment recruitment,” addressed questions of genome structure, evolution, and taxonomic or phylogenetic diversity, as well as the biochemical diversity of genes and gene families. A second method, termed “extreme assembly,” made possible the assembly and reconstruction of large segments of abundant but clearly nonclonal organisms. Within all abundant populations analyzed, we found extensive intra-ribotype diversity in several forms: (1) extensive sequence variation within orthologous regions throughout a given genome; despite coverage of individual ribotypes approaching 500-fold, most individual sequencing reads are unique; (2) numerous changes in gene content some with direct adaptive implications; and (3) hypervariable genomic islands that are too variable to assemble. The intra-ribotype diversity is organized into genetically isolated populations that have overlapping but independent distributions, implying distinct environmental preference. We present novel methods for measuring the genomic similarity between metagenomic samples and show how they may be grouped into several community types. Specific functional adaptations can be identified both within individual ribotypes and across the entire community, including proteorhodopsin spectral tuning and the presence or absence of the phosphate-binding gene PstS.
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spelling pubmed-18210602007-03-14 The Sorcerer II Global Ocean Sampling Expedition: Northwest Atlantic through Eastern Tropical Pacific Rusch, Douglas B Halpern, Aaron L Sutton, Granger Heidelberg, Karla B Williamson, Shannon Yooseph, Shibu Wu, Dongying Eisen, Jonathan A Hoffman, Jeff M Remington, Karin Beeson, Karen Tran, Bao Smith, Hamilton Baden-Tillson, Holly Stewart, Clare Thorpe, Joyce Freeman, Jason Andrews-Pfannkoch, Cynthia Venter, Joseph E Li, Kelvin Kravitz, Saul Heidelberg, John F Utterback, Terry Rogers, Yu-Hui Falcón, Luisa I Souza, Valeria Bonilla-Rosso, Germán Eguiarte, Luis E Karl, David M Sathyendranath, Shubha Platt, Trevor Bermingham, Eldredge Gallardo, Victor Tamayo-Castillo, Giselle Ferrari, Michael R Strausberg, Robert L Nealson, Kenneth Friedman, Robert Frazier, Marvin Venter, J. Craig PLoS Biol Research Article The world's oceans contain a complex mixture of micro-organisms that are for the most part, uncharacterized both genetically and biochemically. We report here a metagenomic study of the marine planktonic microbiota in which surface (mostly marine) water samples were analyzed as part of the Sorcerer II Global Ocean Sampling expedition. These samples, collected across a several-thousand km transect from the North Atlantic through the Panama Canal and ending in the South Pacific yielded an extensive dataset consisting of 7.7 million sequencing reads (6.3 billion bp). Though a few major microbial clades dominate the planktonic marine niche, the dataset contains great diversity with 85% of the assembled sequence and 57% of the unassembled data being unique at a 98% sequence identity cutoff. Using the metadata associated with each sample and sequencing library, we developed new comparative genomic and assembly methods. One comparative genomic method, termed “fragment recruitment,” addressed questions of genome structure, evolution, and taxonomic or phylogenetic diversity, as well as the biochemical diversity of genes and gene families. A second method, termed “extreme assembly,” made possible the assembly and reconstruction of large segments of abundant but clearly nonclonal organisms. Within all abundant populations analyzed, we found extensive intra-ribotype diversity in several forms: (1) extensive sequence variation within orthologous regions throughout a given genome; despite coverage of individual ribotypes approaching 500-fold, most individual sequencing reads are unique; (2) numerous changes in gene content some with direct adaptive implications; and (3) hypervariable genomic islands that are too variable to assemble. The intra-ribotype diversity is organized into genetically isolated populations that have overlapping but independent distributions, implying distinct environmental preference. We present novel methods for measuring the genomic similarity between metagenomic samples and show how they may be grouped into several community types. Specific functional adaptations can be identified both within individual ribotypes and across the entire community, including proteorhodopsin spectral tuning and the presence or absence of the phosphate-binding gene PstS. Public Library of Science 2007-03 2007-03-13 /pmc/articles/PMC1821060/ /pubmed/17355176 http://dx.doi.org/10.1371/journal.pbio.0050077 Text en © 2007 Rusch et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Rusch, Douglas B
Halpern, Aaron L
Sutton, Granger
Heidelberg, Karla B
Williamson, Shannon
Yooseph, Shibu
Wu, Dongying
Eisen, Jonathan A
Hoffman, Jeff M
Remington, Karin
Beeson, Karen
Tran, Bao
Smith, Hamilton
Baden-Tillson, Holly
Stewart, Clare
Thorpe, Joyce
Freeman, Jason
Andrews-Pfannkoch, Cynthia
Venter, Joseph E
Li, Kelvin
Kravitz, Saul
Heidelberg, John F
Utterback, Terry
Rogers, Yu-Hui
Falcón, Luisa I
Souza, Valeria
Bonilla-Rosso, Germán
Eguiarte, Luis E
Karl, David M
Sathyendranath, Shubha
Platt, Trevor
Bermingham, Eldredge
Gallardo, Victor
Tamayo-Castillo, Giselle
Ferrari, Michael R
Strausberg, Robert L
Nealson, Kenneth
Friedman, Robert
Frazier, Marvin
Venter, J. Craig
The Sorcerer II Global Ocean Sampling Expedition: Northwest Atlantic through Eastern Tropical Pacific
title The Sorcerer II Global Ocean Sampling Expedition: Northwest Atlantic through Eastern Tropical Pacific
title_full The Sorcerer II Global Ocean Sampling Expedition: Northwest Atlantic through Eastern Tropical Pacific
title_fullStr The Sorcerer II Global Ocean Sampling Expedition: Northwest Atlantic through Eastern Tropical Pacific
title_full_unstemmed The Sorcerer II Global Ocean Sampling Expedition: Northwest Atlantic through Eastern Tropical Pacific
title_short The Sorcerer II Global Ocean Sampling Expedition: Northwest Atlantic through Eastern Tropical Pacific
title_sort sorcerer ii global ocean sampling expedition: northwest atlantic through eastern tropical pacific
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1821060/
https://www.ncbi.nlm.nih.gov/pubmed/17355176
http://dx.doi.org/10.1371/journal.pbio.0050077
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