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Physiological homogeneity among the endosymbionts of Riftia pachyptila and Tevnia jerichonana revealed by proteogenomics

机译:蛋白质组学揭示了裂谷和内叶夜蛾内共生体之间的生理同质性

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摘要

The two closely related deep-sea tubeworms Riftia pachyptila and Tevnia jerichonana both rely exclusively on a single species of sulfide-oxidizing endosymbiotic bacteria for their nutrition. They do, however, thrive in markedly different geochemical conditions. A detailed proteogenomic comparison of the endosymbionts coupled with an in situ characterization of the geochemical environment was performed to investigate their roles and expression profiles in the two respective hosts. The metagenomes indicated that the endosymbionts are genotypically highly homogeneous. Gene sequences coding for enzymes of selected key metabolic functions were found to be 99.9% identical. On the proteomic level, the symbionts showed very consistent metabolic profiles, despite distinctly different geochemical conditions at the plume level of the respective hosts. Only a few minor variations were observed in the expression of symbiont enzymes involved in sulfur metabolism, carbon fixation and in the response to oxidative stress. Although these changes correspond to the prevailing environmental situation experienced by each host, our data strongly suggest that the two tubeworm species are able to effectively attenuate differences in habitat conditions, and thus to provide their symbionts with similar micro-environments.
机译:两种密切相关的深海结核虫Riftia pachyptila和Tevnia jerichonana都仅依靠一种硫化物氧化内共生细菌来提供营养。但是,它们确实在明显不同的地球化学条件下蓬勃发展。进行了内共生体的详细蛋白质组学比较以及地球化学环境的原位表征,以研究它们在两个宿主中的作用和表达谱。元基因组表明内共生体在基因型上是高度均一的。发现编码选定的关键代谢功能的酶的基因序列是99.9%相同。在蛋白质组学水平上,共生体显示出非常一致的代谢谱,尽管在各个宿主的羽状水平上地球化学条件明显不同。在参与硫代谢,碳固定和氧化应激反应的共生酶的表达中,仅观察到了一些微小的变化。尽管这些变化与每个宿主所处的主要环境状况相对应,但我们的数据强烈表明这两种夜蛾物种能够有效地减轻栖息地条件的差异,从而为它们的共生体提供相似的微环境。

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