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Tremblaya phenacola PPER: an evolutionary beta-gammaproteobacterium collage

机译:Tremblaya phenacola PPER:进化的β-gammaproteobacterium拼贴画

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摘要

Many insects rely on bacterial endosymbionts to obtain nutrients that are scarce in their highly specialized diets. The most surprising example corresponds to the endosymbiotic system found in mealybugs from subfamily Pseudococcinae in which two bacteria, the betaproteobacterium ‘Candidatus Tremblaya princeps’ and a gammaproteobacterium, maintain a nested endosymbiotic consortium. In the sister subfamily Phenacoccinae, however, a single beta-endosymbiont, ‘Candidatus Tremblaya phenacola’, has been described. In a previous study, we detected a trpB gene of gammaproteobacterial origin in ‘Ca. Tremblaya phenacola’ from two Phenacoccus species, apparently indicating an unusual case of horizontal gene transfer (HGT) in a bacterial endosymbiont. What we found by sequencing the genome of ‘Ca. Tremblaya phenacola’ PPER, single endosymbiont of Phenacoccus peruvianus, goes beyond a HGT phenomenon. It rather represents a genome fusion between a beta and a gammaproteobacterium, followed by massive rearrangements and loss of redundant genes, leading to an unprecedented evolutionary collage. Mediated by the presence of several repeated sequences, there are many possible genome arrangements, and different subgenomic sequences might coexist within the same population.
机译:许多昆虫依靠细菌内共生菌来获取营养,而这些营养在其高度专门化的饮食中是稀缺的。最令人惊讶的例子是在假球菌亚科的粉虱中发现的内共生系统,其中两个细菌,即β变形杆菌“ Candidatus Tremblaya princeps”和γ变形杆菌保持着一个嵌套的内共生联盟。然而,在姊妹亚科菲纳科(Phenacoccinae)中,已经描述了一个单一的β-内共生体,即“ Candidatus Tremblaya phenacola”。在先前的研究中,我们在'Ca中检测到了gproteobacterial的trpB基因。来自两个费氏球菌属的Tremblaya phenacola’,显然表明细菌内共生菌中存在异常的水平基因转移(HGT)情况。我们通过对'Ca的基因组进行测序发现了。特伦布拉球菌(Phenacoccus peruvianus)的单内共生菌Tremblaya phenacola的PPER超越了HGT现象。相反,它代表了β和γ变形杆菌之间的基因组融合,继而发生大规模的重排和冗余基因的丢失,从而导致了前所未有的进化拼贴。由于存在多个重复序列,因此存在许多可能的基因组排列,并且不同的亚基因组序列可能在同一种群中共存。

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