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Phylogenomics of Reichenowia parasitica, an Alphaproteobacterial Endosymbiont of the Freshwater Leech Placobdella parasitica

机译:Reichenowia parasitica(淡水水ch寄生的杆状细菌内生菌)的系统生物学

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摘要

Although several commensal alphaproteobacteria form close relationships with plant hosts where they aid in (e.g.,) nitrogen fixation and nodulation, only a few inhabit animal hosts. Among these, Reichenowia picta, R. ornata and R. parasitica, are currently the only known mutualistic, alphaproteobacterial endosymbionts to inhabit leeches. These bacteria are harbored in the epithelial cells of the mycetomal structures of their freshwater leech hosts, Placobdella spp., and these structures have no other obvious function than housing bacterial symbionts. However, the function of the bacterial symbionts has remained unclear. Here, we focused both on exploring the genomic makeup of R. parasitica and on performing a robust phylogenetic analysis, based on more data than previous hypotheses, to test its position among related bacteria. We sequenced a combined pool of host and symbiont DNA from 36 pairs of mycetomes and performed an in silico separation of the different DNA pools through subtractive scaffolding. The bacterial contigs were compared to 50 annotated bacterial genomes and the genome of the freshwater leech Helobdella robusta using a BLASTn protocol. Further, amino acid sequences inferred from the contigs were used as queries against the 50 bacterial genomes to establish orthology. A total of 358 orthologous genes were used for the phylogenetic analyses. In part, results suggest that R. parasitica possesses genes coding for proteins related to nitrogen fixation, iron/vitamin B translocation and plasmid survival. Our results also indicate that R. parasitica interacts with its host in part by transmembrane signaling and that several of its genes show orthology across Rhizobiaceae. The phylogenetic analyses support the nesting of R. parasitica within the Rhizobiaceae, as sister to a group containing Agrobacterium and Rhizobium species.
机译:尽管几种共生的α-蛋白细菌与植物宿主形成密切的关系,在植物宿主中它们有助于(例如)固氮和结瘤,但是只有少数栖息于动物宿主中。在这些物种中,目前仅存在于栖Re中的已知的互惠的α-蛋白细菌内共生菌是小菜蛾(Reichenowia picta),红景天(R. ornata)和寄生寄生的R. parasitica。这些细菌藏在其淡水水hosts宿主Placobdella spp。的菌丝结构的上皮细胞中,这些结构除了容纳细菌共生体外没有其他明显的功能。然而,细菌共生体的功能仍不清楚。在这里,我们不仅着眼于寄生寄生罗非鱼的基因组组成,而且基于比以前的假设更多的数据来进行可靠的系统发育分析,以测试其在相关细菌中的位置。我们对36对分枝杆菌的宿主和共生体DNA组合池进行了测序,并通过扣除支架对不同DNA池进行了计算机分离。使用BLASTn方案,将细菌重叠群与50个带注释的细菌基因组和淡水水robust罗氏沼虾的基因组进行了比较。此外,从重叠群推导的氨基酸序列被用作对50个细菌基因组的查询,以建立直系同源性。总共358个直系同源基因用于系统发育分析。部分结果表明,寄生疟原虫具有编码与固氮,铁/维生素B易位和质粒存活有关的蛋白质的基因。我们的结果还表明,寄生寄生性疟原虫部分地通过跨膜信号传导与其宿主相互作用,并且其几个基因在整个根瘤菌科中显示出直立性。系统发育分析支持寄生根瘤菌在根瘤菌科中筑巢,是包含农杆菌属和根瘤菌属的一组的姐妹。

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