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Betaproteobacterial symbionts of the ciliate Euplotes: Origin and tangled evolutionary path of an obligate microbial association

机译:纤毛虫Euplotes的betaproteobacterial共生:专性微生物协会的起源和纠结的进化路径。

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摘要

The Polynucleobacter-Euplotes association is an obligatory symbiotic system between a monophyletic group of ciliate species belonging to the genus Euplotes and bacteria of the species Polynucleobacter necessarius (Betaproteobacteria). Both organisms are unable to survive independently. Several studies revealed the existence of free-living populations of Polynucleobacter bacteria which are phylogenetically closely related to the endosymbiotic ones, but never share associations with Euplotes in the natural environment. Hence, following the most parsimonious explanation on the origin of the association, this symbiosis should represent a synapomorphic character for the hosts' clade. Nevertheless, phylogenetic analyses performed on an increased number of strains here presented suggest that Euplotes species, during their evolution, recruited Polynucleobacter bacteria as symbionts more than once. Moreover, in three cases, we observed different bacteria as obligate symbionts. These symbionts are the first characterized representatives of a phylogenetic lineage branching in a basal position with respect to the genus Polynucleobacter. The hypothesis that the original obligate symbionts belonged to this newly discovered clade and that, only subsequently, in most cases they have been replaced by Polynucleobacter bacteria recruited from the environment is proposed and discussed. The evolutionary path of this association seems anyway to have been more complex than so far supposed.
机译:多核细菌-埃普洛特协会是属于Euplotes属的一类纤毛虫物种和必要的多核细菌(Betaproteobacteria)细菌之间的强制性共生系统。两种生物都无法独立生存。多项研究表明,存在着多核苷酸细菌的自由生活种群,这些细菌在系统发育上与内共生细菌密切相关,但在自然环境中从未与Euplotes共享关联。因此,按照关于该协会起源的最简约的解释,这种共生应该代表宿主进化枝的一个同型特征。尽管如此,这里对数量增加的菌株进行的系统进化分析表明,Eupplotes物种在进化过程中不止一次招募多核细菌作为共生体。此外,在三种情况下,我们观察到不同的细菌为专性共生体。这些共生体是相对于多核细菌属在基础位置的系统发生谱系分支的第一个特征性代表。提出并讨论了原始专性共生体属于这一新发现的进化枝,并且只有在随后的大多数情况下,它们才被从环境中募集的多核细菌所取代的假设。无论如何,这种联系的进化之路似乎比迄今为止想象的要复杂。

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