Bacterial biogeography of the human digestive tract

We present bacterial biogeography as sampled from the human gastrointestinal tract of four healthy subjects. This study generated >32 million paired-end sequences of bacterial 16S rRNA genes (V3 region) representing >95,000 unique operational taxonomic units (OTUs; 97% similarity clusters), wi...

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Published inScientific reports Vol. 1; no. 1; p. 170
Main Authors Stearns, Jennifer C., Lynch, Michael D. J., Senadheera, Dilani B., Tenenbaum, Howard C., Goldberg, Michael B., Cvitkovitch, Dennis G., Croitoru, Kenneth, Moreno-Hagelsieb, Gabriel, Neufeld, Josh D.
Format Journal Article
LanguageEnglish
Published London Nature Publishing Group UK 25.11.2011
Nature Publishing Group
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Abstract We present bacterial biogeography as sampled from the human gastrointestinal tract of four healthy subjects. This study generated >32 million paired-end sequences of bacterial 16S rRNA genes (V3 region) representing >95,000 unique operational taxonomic units (OTUs; 97% similarity clusters), with >99% Good's coverage for all samples. The highest OTU richness and phylogenetic diversity was found in the mouth samples. The microbial communities of multiple biopsy sites within the colon were highly similar within individuals and largely distinct from those in stool. Within an individual, OTU overlap among broad site definitions (mouth, stomach/duodenum, colon and stool) ranged from 32–110 OTUs, 25 of which were common to all individuals and included OTUs affiliated with Faecalibacterium prasnitzii and the TM7 phylum. This first comprehensive characterization of the abundant and rare microflora found along the healthy human digestive tract represents essential groundwork to investigate further how the human microbiome relates to health and disease.
AbstractList We present bacterial biogeography as sampled from the human gastrointestinal tract of four healthy subjects. This study generated >32 million paired-end sequences of bacterial 16S rRNA genes (V3 region) representing >95,000 unique operational taxonomic units (OTUs; 97% similarity clusters), with >99% Good's coverage for all samples. The highest OTU richness and phylogenetic diversity was found in the mouth samples. The microbial communities of multiple biopsy sites within the colon were highly similar within individuals and largely distinct from those in stool. Within an individual, OTU overlap among broad site definitions (mouth, stomach/duodenum, colon and stool) ranged from 32–110 OTUs, 25 of which were common to all individuals and included OTUs affiliated with Faecalibacterium prasnitzii and the TM7 phylum. This first comprehensive characterization of the abundant and rare microflora found along the healthy human digestive tract represents essential groundwork to investigate further how the human microbiome relates to health and disease.
We present bacterial biogeography as sampled from the human gastrointestinal tract of four healthy subjects. This study generated >32 million paired-end sequences of bacterial 16S rRNA genes (V3 region) representing >95,000 unique operational taxonomic units (OTUs; 97% similarity clusters), with >99% Good's coverage for all samples. The highest OTU richness and phylogenetic diversity was found in the mouth samples. The microbial communities of multiple biopsy sites within the colon were highly similar within individuals and largely distinct from those in stool. Within an individual, OTU overlap among broad site definitions (mouth, stomach/duodenum, colon and stool) ranged from 32-110 OTUs, 25 of which were common to all individuals and included OTUs affiliated with Faecalibacterium prasnitzii and the TM7 phylum. This first comprehensive characterization of the abundant and rare microflora found along the healthy human digestive tract represents essential groundwork to investigate further how the human microbiome relates to health and disease.We present bacterial biogeography as sampled from the human gastrointestinal tract of four healthy subjects. This study generated >32 million paired-end sequences of bacterial 16S rRNA genes (V3 region) representing >95,000 unique operational taxonomic units (OTUs; 97% similarity clusters), with >99% Good's coverage for all samples. The highest OTU richness and phylogenetic diversity was found in the mouth samples. The microbial communities of multiple biopsy sites within the colon were highly similar within individuals and largely distinct from those in stool. Within an individual, OTU overlap among broad site definitions (mouth, stomach/duodenum, colon and stool) ranged from 32-110 OTUs, 25 of which were common to all individuals and included OTUs affiliated with Faecalibacterium prasnitzii and the TM7 phylum. This first comprehensive characterization of the abundant and rare microflora found along the healthy human digestive tract represents essential groundwork to investigate further how the human microbiome relates to health and disease.
We present bacterial biogeography as sampled from the human gastrointestinal tract of four healthy subjects. This study generated >32 million paired-end sequences of bacterial 16S rRNA genes (V3 region) representing >95,000 unique operational taxonomic units (OTUs; 97% similarity clusters), with >99% Good's coverage for all samples. The highest OTU richness and phylogenetic diversity was found in the mouth samples. The microbial communities of multiple biopsy sites within the colon were highly similar within individuals and largely distinct from those in stool. Within an individual, OTU overlap among broad site definitions (mouth, stomach/duodenum, colon and stool) ranged from 32-110 OTUs, 25 of which were common to all individuals and included OTUs affiliated with Faecalibacterium prasnitzii and the TM7 phylum. This first comprehensive characterization of the abundant and rare microflora found along the healthy human digestive tract represents essential groundwork to investigate further how the human microbiome relates to health and disease.
ArticleNumber 170
Author Lynch, Michael D. J.
Moreno-Hagelsieb, Gabriel
Cvitkovitch, Dennis G.
Senadheera, Dilani B.
Stearns, Jennifer C.
Tenenbaum, Howard C.
Goldberg, Michael B.
Croitoru, Kenneth
Neufeld, Josh D.
Author_xml – sequence: 1
  givenname: Jennifer C.
  surname: Stearns
  fullname: Stearns, Jennifer C.
  organization: Department of Biology, University of Waterloo, Farncombe Family Digestive Health Research Institute, Faculty of Health Sciences, McMaster University
– sequence: 2
  givenname: Michael D. J.
  surname: Lynch
  fullname: Lynch, Michael D. J.
  organization: Department of Biology, University of Waterloo, Department of Biology, Wilfrid Laurier University
– sequence: 3
  givenname: Dilani B.
  surname: Senadheera
  fullname: Senadheera, Dilani B.
  organization: Faculty of Dentistry, University of Toronto
– sequence: 4
  givenname: Howard C.
  surname: Tenenbaum
  fullname: Tenenbaum, Howard C.
  organization: Faculty of Dentistry, University of Toronto
– sequence: 5
  givenname: Michael B.
  surname: Goldberg
  fullname: Goldberg, Michael B.
  organization: Faculty of Dentistry, University of Toronto
– sequence: 6
  givenname: Dennis G.
  surname: Cvitkovitch
  fullname: Cvitkovitch, Dennis G.
  organization: Faculty of Dentistry, University of Toronto
– sequence: 7
  givenname: Kenneth
  surname: Croitoru
  fullname: Croitoru, Kenneth
  organization: Department of Medicine, University of Toronto, Zane Cohen Center for Digestive Diseases, Mount Sinai Hospital
– sequence: 8
  givenname: Gabriel
  surname: Moreno-Hagelsieb
  fullname: Moreno-Hagelsieb, Gabriel
  organization: Department of Biology, Wilfrid Laurier University
– sequence: 9
  givenname: Josh D.
  surname: Neufeld
  fullname: Neufeld, Josh D.
  organization: Department of Biology, University of Waterloo
BackLink https://www.ncbi.nlm.nih.gov/pubmed/22355685$$D View this record in MEDLINE/PubMed
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Snippet We present bacterial biogeography as sampled from the human gastrointestinal tract of four healthy subjects. This study generated >32 million paired-end...
SourceID pubmedcentral
proquest
pubmed
crossref
springer
SourceType Open Access Repository
Aggregation Database
Index Database
Enrichment Source
Publisher
StartPage 170
SubjectTerms 631/114
631/158/670
631/326/171
Adult
Bacteria - classification
Bacteria - genetics
Bacteria - isolation & purification
Biodiversity
Biogeography
Biopsy
Colon
Duodenum
Female
Gastrointestinal tract
Gastrointestinal Tract - microbiology
Humanities and Social Sciences
Humans
Male
Metagenome - genetics
Microbial activity
Microflora
multidisciplinary
Organ Specificity
Phylogeny
RNA, Bacterial - genetics
RNA, Ribosomal, 16S - genetics
rRNA 16S
Science
Stomach
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Title Bacterial biogeography of the human digestive tract
URI https://link.springer.com/article/10.1038/srep00170
https://www.ncbi.nlm.nih.gov/pubmed/22355685
https://www.proquest.com/docview/1897393486
https://www.proquest.com/docview/923191436
https://pubmed.ncbi.nlm.nih.gov/PMC3240969
Volume 1
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