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Phylogenetic resolution and habitat specificity of members of the Photobacterium phosphoreum species group.

Ast, Jennifer C (author)
University of Michigan, Department of Ecology and Evolutionary Biology
Dunlap, Paul V (author)
University of Michigan, Department of Ecology and Evolutionary Biology
 (creator_code:org_t)
Wiley, 2005
2005
English.
In: Environmental Microbiology. - : Wiley. - 1462-2912 .- 1462-2920. ; 7:10, s. 1641-54
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Substantial ambiguity exists regarding the phylogenetic status of facultatively psychrophilic luminous bacteria identified as Photobacterium phosphoreum, a species thought to be widely distributed in the world's oceans and believed to be the specific bioluminescent light-organ symbiont of several deep-sea fishes. Members of the P. phosphoreum species group include luminous and non-luminous strains identified phenotypically from a variety of different habitats as well as phylogenetically defined lineages that appear to be evolutionarily distinct. To resolve this ambiguity and to begin developing a meaningful knowledge of the geographic distributions, habitats and symbiotic relationships of bacteria in the P. phosphoreum species group, we carried out a multilocus, fine-scale phylogenetic analysis based on sequences of the 16S rRNA, gyrB and luxABFE genes of many newly isolated luminous strains from symbiotic and saprophytic habitats, together with previously isolated luminous and non-luminous strains identified as P. phosphoreum from these and other habitats. Parsimony analysis unambiguously resolved three evolutionarily distinct clades, phosphoreum, iliopiscarium and kishitanii. The tight phylogenetic clustering within these clades and the distinct separation between them indicates they are different species, P. phosphoreum, Photobacterium iliopiscarium and the newly recognized 'Photobacterium kishitanii'. Previously reported non-luminous strains, which had been identified phenotypically as P. phosphoreum, resolved unambiguously as P. iliopiscarium, and all examined deep-sea fishes (specimens of families Chlorophthalmidae, Macrouridae, Moridae, Trachichthyidae and Acropomatidae) were found to harbour 'P. kishitanii', not P. phosphoreum, in their light organs. This resolution revealed also that 'P. kishitanii' is cosmopolitan in its geographic distribution. Furthermore, the lack of phylogenetic variation within 'P. kishitanii' indicates that this facultatively symbiotic bacterium is not cospeciating with its phylogenetically divergent host fishes. The results of this fine-scale phylogenetic analysis support the emerging view that bacterial species names should designate singular historical entities, i.e. discrete lineages diagnosed by a significant divergence of shared derived nucleotide characters.

Subject headings

NATURVETENSKAP  -- Biologi (hsv//swe)
NATURAL SCIENCES  -- Biological Sciences (hsv//eng)
NATURVETENSKAP  -- Biologi -- Mikrobiologi (hsv//swe)
NATURAL SCIENCES  -- Biological Sciences -- Microbiology (hsv//eng)

Keyword

Biologi med inriktning mot systematik
Biology with specialization in Systematics
Biology with specialization in Microbiology
Biologi med inriktning mot mikrobiologi

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By the author/editor
Ast, Jennifer C
Dunlap, Paul V
About the subject
NATURAL SCIENCES
NATURAL SCIENCES
and Biological Scien ...
NATURAL SCIENCES
NATURAL SCIENCES
and Biological Scien ...
and Microbiology
Articles in the publication
Environmental Mi ...
By the university
Uppsala University

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