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孤雌生殖对竹节虫基因组的趋同影响。

Convergent consequences of parthenogenesis on stick insect genomes.

作者信息

Jaron Kamil S, Parker Darren J, Anselmetti Yoann, Tran Van Patrick, Bast Jens, Dumas Zoé, Figuet Emeric, François Clémentine M, Hayward Keith, Rossier Victor, Simion Paul, Robinson-Rechavi Marc, Galtier Nicolas, Schwander Tanja

机构信息

Department of Ecology and Evolution, University of Lausanne, Lausanne, Switzerland.

Swiss Institute of Bioinformatics, Lausanne, Switzerland.

出版信息

Sci Adv. 2022 Feb 25;8(8):eabg3842. doi: 10.1126/sciadv.abg3842. Epub 2022 Feb 23.

Abstract

The shift from sexual reproduction to parthenogenesis has occurred repeatedly in animals, but how the loss of sex affects genome evolution remains poorly understood. We generated reference genomes for five independently evolved parthenogenetic species in the stick insect genus and their closest sexual relatives. Using these references and population genomic data, we show that parthenogenesis results in an extreme reduction of heterozygosity and often leads to genetically uniform populations. We also find evidence for less effective positive selection in parthenogenetic species, suggesting that sex is ubiquitous in natural populations because it facilitates fast rates of adaptation. Parthenogenetic species did not show increased transposable element (TE) accumulation, likely because there is little TE activity in the genus. By using replicated sexual-parthenogenetic comparisons, our study reveals how the absence of sex affects genome evolution in natural populations, providing empirical support for the negative consequences of parthenogenesis as predicted by theory.

摘要

从有性生殖到孤雌生殖的转变在动物中反复发生,但性别丧失如何影响基因组进化仍知之甚少。我们为竹节虫属中五个独立进化的孤雌生殖物种及其最近的有性生殖亲属生成了参考基因组。利用这些参考基因组和群体基因组数据,我们表明孤雌生殖导致杂合性极度降低,并常常导致基因同质化的群体。我们还发现证据表明孤雌生殖物种中的正向选择效率较低,这表明性别在自然种群中普遍存在是因为它促进了快速的适应速度。孤雌生殖物种并未表现出转座元件(TE)积累增加,可能是因为该属中TE活性很低。通过进行重复的有性生殖与孤雌生殖比较,我们的研究揭示了性别缺失如何影响自然种群中的基因组进化,为理论预测的孤雌生殖的负面后果提供了实证支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9487/8865771/6bf8f807ea98/sciadv.abg3842-f1.jpg

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