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

机译:发光细菌物种组成员的系统发育分辨率和栖息地特异性

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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.
机译:关于兼性的嗜冷性发光细菌的种系状态存在很大的歧义,这些细菌被鉴定为磷酸杆菌,该物种被认为广泛分布于世界海洋中,被认为是几种深海鱼类的特定生物发光光器官共生体。磷体育菌种组的成员包括从各种不同的生境表型鉴定的发光和非发光菌株,以及在进化上似乎是不同的系统发育定义的谱系。为了解决这种歧义,并开始开发有关磷体育物种组中细菌的地理分布,生境和共生关系的有意义的知识,我们基于16S rRNA,gyrB的序列进行了多基因座,细规模的系统发育分析来自共生和腐生生境的许多新近分离出的发光菌株的lux和luxABFE基因,以及来自这些和其他生境的先前分离出的发光和非发光菌株被鉴定为磷假单胞菌。简约分析明确地解析了三个进化上不同的进化枝,即磷,i毛虫和基氏菌。这些进化枝中紧密的系统发育簇簇以及它们之间的明显分离表明它们是不同的物种,即P.phosphorum,P.iliopiscarium细菌和新近认可的“ kishitanii细菌”。以前报告的非发光菌株,在表型上被鉴定为磷假单胞菌,被明确地分离为磷假单胞菌,并检查了所有深海鱼类(绿眼科,巨眼科,盛尾科,chi科和棘皮科的标本)。 P. kishitanii',而不是其光器官中的磷。该决议还揭示了“P。 kishitanii'在地理分布上是世界性的。此外,'P内缺乏系统发育变异。 kishitanii'指出,这种兼生的共生细菌与其系统发育上不同的寄主鱼类没有共存。精细系统发育分析的结果支持了这样一种新观点,即细菌物种名称应指定单一的历史实体,即通过共享的衍生核苷酸特征的显着差异而诊断出的离散谱系。

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