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No Accumulation of Transposable Elements in Asexual Arthropods

机译:无性节肢动物中没有转座元件的积累

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摘要

Transposable elements (TEs) and other repetitive DNA can accumulate in the absence of recombination, a process contributing to the degeneration of Y-chromosomes and other nonrecombining genome portions. A similar accumulation of repetitive DNA is expected for asexually reproducing species, given their entire genome is effectively nonrecombining. We tested this expectation by comparing the whole-genome TE loads of five asexual arthropod lineages and their sexual relatives, including asexual and sexual lineages of crustaceans (Daphnia water fleas), insects (Leptopilina wasps), and mites (Oribatida). Surprisingly, there was no evidence for increased TE load in genomes of asexual as compared to sexual lineages, neither for all classes of repetitive elements combined nor for specific TE families. Our study therefore suggests that nonrecombining genomes do not accumulate TEs like nonrecombining genomic regions of sexual lineages. Even if a slight but undetected increase of TEs were caused by asexual reproduction, it appears to be negligible compared to variance between species caused by processes unrelated to reproductive mode. It remains to be determined if molecular mechanisms underlying genome regulation in asexuals hamper TE activity. Alternatively, the differences in TE dynamics between nonrecombining genomes in asexual lineages versus nonrecombining genome portions in sexual species might stem from selection for benign TEs in asexual lineages because of the lack of genetic conflict between TEs and their hosts and/or because asexual lineages may only arise from sexual ancestors with particularly low TE loads.
机译:转座元件 (TE) 和其他重复 DNA 可以在没有重组的情况下积累,这一过程会导致 Y 染色体和其他非重组基因组部分的退化。对于无性繁殖物种,预计会有类似的重复DNA积累,因为它们的整个基因组实际上是非重组的。我们通过比较五种无性节肢动物谱系及其性亲缘的全基因组 TE 载荷来测试这一预期,包括甲壳类动物(水蚤)、昆虫(Leptopilina 黄蜂)和螨虫(Oribatida)的无性和有性谱系。令人惊讶的是,与有性谱系相比,没有证据表明无性基因组中的TE负荷增加,无论是对于所有类别的重复元件组合,还是对于特定的TE家族。因此,我们的研究表明,非重组基因组不会像性谱系的非重组基因组区域那样积累TE。即使无性繁殖导致了TE的轻微但未被发现的增加,与与繁殖模式无关的过程引起的物种之间的差异相比,它似乎可以忽略不计。无性恋者基因组调控的分子机制是否阻碍了TE活性还有待确定。或者,无性谱系中非重组基因组与有性物种中非重组基因组部分之间的 TE 动态差异可能源于无性谱系中良性 TE 的选择,因为 TE 与其宿主之间没有遗传冲突和/或因为无性谱系可能仅来自具有特别低 TE 负荷的有性祖先。

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