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Evolutionary dynamics of transposable elements in bdelloid rotifers

机译:BDELOID转子转子转换元件的进化动力学

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摘要

Transposable elements (TEs) are selfish genomic parasites whose ability to spread autonomously is facilitated by sexual reproduction in their hosts. If hosts become obligately asexual, TE frequencies and dynamics are predicted to change dramatically, but the long-term outcome is unclear. Here, we test current theory using whole-genome sequence data from eight species of bdelloid rotifers, a class of invertebrates in which males are thus far unknown. Contrary to expectations, we find a variety of active TEs in bdelloid genomes, at an overall frequency within the range seen in sexual species. We find no evidence that TEs are spread by cryptic recombination or restrained by unusual DNA repair mechanisms. Instead, we find that that TE content evolves relatively slowly in bdelloids and that gene families involved in RNAi-mediated TE suppression have undergone significant expansion, which might mitigate the deleterious effects of active TEs and compensate for the consequences of long-term asexuality.
机译:可转换元素(TES)是自主基因组寄生虫,其宿主中的性繁殖促进了自主的能力。如果主持人变得迫切,则预测TE频率和动态急剧变化,但长期结果尚不清楚。在这里,我们使用来自八种Bdelloid Rotifers的全基因组序列数据测试当前理论,这是一种无脊椎动物,其中雄性是未知的。与期望相反,我们在性物种中观察到的整体频率,我们在Bdelloid基因组中发现了各种活性TES。我们发现没有证据表明TES通过神秘的重组或通过不寻常的DNA修复机制抑制。相反,我们发现TE含量在BDelloids中表现得比相对缓慢地演变,并且参与RNAi介导的TE抑制的基因家族经历了显着的膨胀,这可能会降低活性TES的有害影响,并补偿长期无性的后果。

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