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Pyrosequencing of the Chaperonin-60 Universal Target as a Tool for Determining Microbial Community Composition.

Authors :
Schellenberg, John
Links, Matthew G.
Hill, Janet E.
Dumonceaux, Tim J.
Peters, Geoffrey A.
Tyler, Shaun
Ball, T. Blake
Severini, Alberto
Plummer, Francis A.
Source :
Applied & Environmental Microbiology. May2009, Vol. 75 Issue 9, p2889-2898. 10p. 4 Diagrams, 2 Charts, 3 Graphs.
Publication Year :
2009

Abstract

We compared dideoxy sequencing of cloned chaperonin-60 universal target (cpn6O UT) amplicons to pyrosequencing of amplicons derived from vaginal microbial communities. In samples pooled from a number of individuals, the pyrosequencing method produced a data set that included virtually all of the sequences that were found within the clone library and revealed an additional level of taxonomic richness. However, the relative abundances of the sequences were different in the two datasets. These observations were expanded and confirmed by the analysis of paired clone library and pyrosequencing datasets from vaginal swabs taken from four individuals. Both for individuals with a normal vaginal microbiota and for those with bacterial vaginosis, the pyrosequencing method revealed a large number of low-abundance taxa that were missed by the clone library approach. In addition, we showed that the pyrosequencing method generates a reproducible profile of microbial community structure in replicate amplifications from the same community. We also compared the taxonomic composition of a vaginal microbial community determined by pyrosequencing of 16S rRNA ampli- cons to that obtained using cpn6O universal primers. We found that the profiles generated by the two molecular targets were highly similar, with slight differences in the proportional representation of the taxa detected. However, the number of operational taxonomic units was significantly higher in the cpn6O data set, suggesting that the protein-encoding gene provides improved species resolution over the 16S rRNA target. These obser- vations demonstrate that pyrosequencing of cpn6O UT amplicons provides a robust, reliable method for deep sequencing of microbial communities. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00992240
Volume :
75
Issue :
9
Database :
Academic Search Index
Journal :
Applied & Environmental Microbiology
Publication Type :
Academic Journal
Accession number :
40309187
Full Text :
https://doi.org/10.1128/AEM.01640-08