Scinovex
article Open AccessTop 10% cited

Phylogenetic Relationships of Butyrate-Producing Bacteria from the Human Gut

Applied and Environmental Microbiology · 2000 · Vol. 66(4) · pp. 1654–1661

Abstract

Butyrate is a preferred energy source for colonic epithelial cells and is thought to play an important role in maintaining colonic health in humans. In order to investigate the diversity and stability of butyrate-producing organisms of the colonic flora, anaerobic butyrate-producing bacteria were isolated from freshly voided human fecal samples from three healthy individuals: an infant, an adult omnivore, and an adult vegetarian. A second isolation was performed on the same three individuals 1 year later. Of a total of 313 bacterial isolates, 74 produced more than 2 mM butyrate in vitro. Butyrate-producing isolates were grouped by 16S ribosomal DNA (rDNA) PCR-restriction fragment length polymorphism analysis. The results indicate very little overlap between the predominant ribotypes of the three subjects; furthermore, the flora of each individual changed significantly between the two isolations. Complete sequences of 16S rDNAs were determined for 24 representative strains and subjected to phylogenetic analysis. Eighty percent of the butyrate-producing isolates fell within the XIVa cluster of gram-positive bacteria as defined by M. D. Collins et al. (Int. J. Syst. Bacteriol. 44:812-826, 1994) and A. Willems et al. (Int. J. Syst. Bacteriol. 46:195-199, 1996), with the most abundant group (10 of 24 or 42%) clustering with Eubacterium rectale, Eubacterium ramulus, and Roseburia cecicola. Fifty percent of the butyrate-producing isolates were net acetate consumers during growth, suggesting that they employ the butyryl coenzyme A-acetyl coenzyme A transferase pathway for butyrate production. In contrast, only 1% of the 239 non-butyrate-producing isolates consumed acetate.

Food composition and propertiesMicrobial Metabolites in Food BiotechnologyBiofuel production and bioconversionButyrateBiologyEubacteriumMicrobiologyBacteriaRoseburia16S ribosomal RNAFecesAnaerobic bacteriaBacteroides

MeSH terms

AdultBacteriaButyratesColonDNA, BacterialDNA, RibosomalFecesHumansInfantMiddle AgedPhylogenyPolymorphism, Restriction Fragment LengthRNA, Ribosomal, 16SPolymerase Chain Reaction
Citations
998
FWCI
9.98
field-weighted impact
References
53
Percentile
98%
vs. same field & year
Citations per year
References
The neighbor-joining method: a new method for reconstructing phylogenetic trees.
Molecular Biology and Evolution · 1987 · 60,290 citations
16S ribosomal DNA amplification for phylogenetic study
Journal of Bacteriology · 1991 · 11,689 citations
Molecular cloning: A laboratory manual
Analytical Biochemistry · 1990 · 86,156 citations
Current protocols in molecular biology
Trends in Biochemical Sciences · 1988 · 4,255 citations
Related articles
The microbiology of butyrate formation in the human colon
FEMS Microbiology Letters · 2002 · 1,265 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.