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Obesity alters gut microbial ecology
by
Knight, R.D
, Ley, R.E
, Gordon, J.I
, Backhed, F
, Turnbaugh, P
, Lozupone, C.A
in
anaerobes
/ Animals
/ Bacteria
/ Bacteria - classification
/ Bacteria - genetics
/ Bacteria - isolation & purification
/ Bacteriodetes
/ Bacteroidetes
/ Base Sequence
/ Biological Sciences
/ Communities
/ Community composition
/ community ecology
/ Community structure
/ Cyanobacteria - classification
/ Cyanobacteria - genetics
/ Cyanobacteria - isolation & purification
/ DNA - genetics
/ Ecosystem
/ Energy balance
/ Female
/ Firmicutes
/ Genes
/ Genes, Bacterial
/ Humans
/ intestinal microorganisms
/ Intestines - microbiology
/ Kinship
/ Large intestine
/ Mice
/ Mice, Inbred C57BL
/ Mice, Obese
/ microbial ecology
/ Microbiology
/ Microbiota
/ Molecular Sequence Data
/ nucleotide sequences
/ Obesity
/ Obesity - etiology
/ Obesity - microbiology
/ Pregnancy
/ ribosomal RNA
/ RNA, Ribosomal, 16S - genetics
/ Rodents
/ Siblings
/ Small intestine
/ species diversity
/ Taxa
2005
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Obesity alters gut microbial ecology
by
Knight, R.D
, Ley, R.E
, Gordon, J.I
, Backhed, F
, Turnbaugh, P
, Lozupone, C.A
in
anaerobes
/ Animals
/ Bacteria
/ Bacteria - classification
/ Bacteria - genetics
/ Bacteria - isolation & purification
/ Bacteriodetes
/ Bacteroidetes
/ Base Sequence
/ Biological Sciences
/ Communities
/ Community composition
/ community ecology
/ Community structure
/ Cyanobacteria - classification
/ Cyanobacteria - genetics
/ Cyanobacteria - isolation & purification
/ DNA - genetics
/ Ecosystem
/ Energy balance
/ Female
/ Firmicutes
/ Genes
/ Genes, Bacterial
/ Humans
/ intestinal microorganisms
/ Intestines - microbiology
/ Kinship
/ Large intestine
/ Mice
/ Mice, Inbred C57BL
/ Mice, Obese
/ microbial ecology
/ Microbiology
/ Microbiota
/ Molecular Sequence Data
/ nucleotide sequences
/ Obesity
/ Obesity - etiology
/ Obesity - microbiology
/ Pregnancy
/ ribosomal RNA
/ RNA, Ribosomal, 16S - genetics
/ Rodents
/ Siblings
/ Small intestine
/ species diversity
/ Taxa
2005
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Obesity alters gut microbial ecology
by
Knight, R.D
, Ley, R.E
, Gordon, J.I
, Backhed, F
, Turnbaugh, P
, Lozupone, C.A
in
anaerobes
/ Animals
/ Bacteria
/ Bacteria - classification
/ Bacteria - genetics
/ Bacteria - isolation & purification
/ Bacteriodetes
/ Bacteroidetes
/ Base Sequence
/ Biological Sciences
/ Communities
/ Community composition
/ community ecology
/ Community structure
/ Cyanobacteria - classification
/ Cyanobacteria - genetics
/ Cyanobacteria - isolation & purification
/ DNA - genetics
/ Ecosystem
/ Energy balance
/ Female
/ Firmicutes
/ Genes
/ Genes, Bacterial
/ Humans
/ intestinal microorganisms
/ Intestines - microbiology
/ Kinship
/ Large intestine
/ Mice
/ Mice, Inbred C57BL
/ Mice, Obese
/ microbial ecology
/ Microbiology
/ Microbiota
/ Molecular Sequence Data
/ nucleotide sequences
/ Obesity
/ Obesity - etiology
/ Obesity - microbiology
/ Pregnancy
/ ribosomal RNA
/ RNA, Ribosomal, 16S - genetics
/ Rodents
/ Siblings
/ Small intestine
/ species diversity
/ Taxa
2005
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Journal Article
Obesity alters gut microbial ecology
2005
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Overview
We have analyzed 5,088 bacterial 16S rRNA gene sequences from the distal intestinal (cecal) microbiota of genetically obese ob/ob mice, lean ob/+ and wild-type siblings, and their ob/+ mothers, all fed the same polysaccharide-rich diet. Although the majority of mouse gut species are unique, the mouse and human microbiota(s) are similar at the division (superkingdom) level, with Firmicutes and Bacteroidetes dominating. Microbial-community composition is inherited from mothers. However, compared with lean mice and regardless of kinship, ob/ob animals have a 50% reduction in the abundance of Bacteroidetes and a proportional increase in Firmicutes. These changes, which are division-wide, indicate that, in this model, obesity affects the diversity of the gut microbiota and suggest that intentional manipulation of community structure may be useful for regulating energy balance in obese individuals.
Publisher
National Academy of Sciences,National Acad Sciences
Subject
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