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首页> 外文期刊>Applied and Environmental Microbiology >Phylogenetic analysis of a highly specific association between ectosymbiotic, sulfur-oxidizing bacteria and a marine nematode.
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Phylogenetic analysis of a highly specific association between ectosymbiotic, sulfur-oxidizing bacteria and a marine nematode.

机译:对系统共生,硫氧化细菌和海洋线虫之间高度特异性关联的系统发生分析。

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摘要

The phylogenetic relationship of chemoautotrophic, sulfur-oxidizing, ectosymbiotic bacteria growing on a marine nematode, a Laxus sp. (formerly a Catanema sp.), to known endosymbionts and free-living bacteria was determined. Comparative 16S rRNA sequencing was used to investigate the unculturable nematode epibionts, and rRNA-targeted oligonucleotide hybridization probes were used to identify the ectosymbionts in situ. Both analyses revealed a remarkably specific and stable symbiosis. Unique hybridization of a specific probe to the ectosymbionts indicated that only one species of bacteria was present and growing on the cuticle of the nematode. Distance and parsimony methods used to infer phylogenetic trees both placed the nematode ectosymbionts at the base of a branch containing chemoautotrophic, sulfur-oxidizing endosymbionts of three bivalve families and of the tube worm Riftia pachyptila. The most closely related free-living bacteria were chemoautotrophic sulfur oxidizers belonging to the genus Thiomicrospira. Furthermore, our results suggested that a second, only distantly related group of thioautotrophic endosymbionts has as its deepest branch surface-colonizing bacteria belonging to the genus Thiothrix, some of which are capable of sulfur-oxidizing chemoautotrophic growth.
机译:在海洋线虫(Laxus sp。)上生长的化学自养型,硫氧化型,共生细菌的系统发育关系。 (以前是Catanema sp。),确定了已知的内共生菌和自由生存细菌。比较性16S rRNA测序用于研究不可培养的线虫表皮虫,而rRNA靶向的寡核苷酸杂交探针用于原位鉴定胞外共生体。两项分析均显示出明显的特异性和稳定的共生关系。特异性探针与胞外共生体的独特杂交表明,仅存在一种细菌并在线虫的表皮上生长。用于推断系统发育树的距离和简约方法都将线虫胞外共生体放置在一个分支的基部,该分支包含三个双壳类的化学自养,硫氧化性内共生体和管状蠕虫Riftia pachyptila。最密切相关的自由细菌是属于硫微螺菌属的化学自养硫氧化剂。此外,我们的研究结果表明,硫族自养内共生菌的第二个,仅是远缘相关的组具有属于硫柳菌属的最深分支表面定殖细菌,其中一些能够硫氧化化学自养生长。

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