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PMID: 17062409 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S. Review

The bacterial species dilemma and the genomic-phylogenetic species concept.

Staley JT

Abstract

The number of species of Bacteria and Archaea (ca 5000) is surprisingly small considering their early evolution, genetic diversity and residence in all ecosystems. The bacterial species definition accounts in part for the small number of named species. The primary procedures required to identify new species of Bacteria and Archaea are DNA-DNA hybridization and phenotypic characterization. Recently, 16S rRNA gene sequencing and phylogenetic analysis have been applied to bacterial taxonomy. Although 16S phylogeny is arguably excellent for classification of Bacteria and Archaea from the Domain level down to the family or genus, it lacks resolution below that level. Newer approaches, including multilocus sequence analysis, and genome sequence and microarray analyses, promise to provide necessary information to better understand bacterial speciation. Indeed, recent data using these approaches, while meagre, support the view that speciation processes may occur at the subspecies level within ecological niches (ecovars) and owing to biogeography (geovars). A major dilemma for bacterial taxonomists is how to incorporate this new information into the present hierarchical system for classification of Bacteria and Archaea without causing undesirable confusion and contention. This author proposes the genomic-phylogenetic species concept (GPSC) for the taxonomy of prokaryotes. The aim is twofold. First, the GPSC would provide a conceptual and testable framework for bacterial taxonomy. Second, the GPSC would replace the burdensome requirement for DNA hybridization presently needed to describe new species. Furthermore, the GPSC is consistent with the present treatment at higher taxonomic levels.

MeSH Terms
Archaea/classification,genetics Bacteria/classification,genetics Classification/methods Genetic Speciation Genetic Techniques Phylogeny Species Specificity
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Staley James T
Department of Microbiology, University of Washington, Seattle, WA 98195, USA. [email protected]
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Article Info
Journal
Philosophical transactions of the Royal Society of London. Series B, Biological sciences
Abbr.
Philos Trans R Soc Lond B Biol Sci
ISSN
0962-8436
Published
2006-11-29
Pages
1899-909
Language
English
Region
England
NLM ID
7503623
PMCID
PMC1857736
Subset
IM
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