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Horizontal gene transfer from diverse bacteria to an insect genome enables a tripartite nested mealybug symbiosis

机译:水平基因从多种细菌到昆虫基因组的转移使三方嵌套粉虱共生

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Summary The smallest reported bacterial genome belongs to Tremblaya princeps, a symbiont of Planococcus citri mealybugs (PCIT). Tremblaya PCIT not only has a 139 kb genome, but possesses its own bacterial endosymbiont, Moranella endobia. Genome and transcriptome sequencing, including genome sequencing from a Tremblaya lineage lacking intracellular bacteria, reveals that the extreme genomic degeneracy of Tremblaya PCIT likely resulted from acquiring Moranella as an endosymbiont. In addition, at least 22 expressed horizontally transferred genes from multiple diverse bacteria to the mealybug genome likely complement missing symbiont genes. However, none of these horizontally transferred genes are from Tremblaya, showing that genome reduction in this symbiont has not been enabled by gene transfer to the host nucleus. Our results thus indicate that the functioning of this three-way symbiosis is dependent on genes from at least six lineages of organisms and reveal a path to intimate endosymbiosis distinct from that followed by organelles.
机译:简介报道的最小细菌基因组属于Tremblaya princeps,它是柠檬葡萄球菌粉虱(PCIT)的共生体。 Tremblaya PCIT不仅具有139 kb的基因组,而且拥有自己的细菌内共生菌,Moranella endobia。基因组和转录组测序,包括缺乏细胞内细菌的Tremblaya谱系的基因组测序,揭示了Tremblaya PCIT的极端基因组简并性可能是由于将Moranella作为内共生菌而获得的。此外,至少有22种水平表达的基因从多种细菌转移到粉虱基因组,可能与缺失的共生基因互补。但是,这些水平转移的基因均不是来自Tremblaya,表明该共生体的基因组减少尚未通过基因转移至宿主核而得以实现。因此,我们的结果表明,这种三向共生的功能取决于至少六个生物体谱系的基因,并揭示了与细胞器不同的亲密共生途径。

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