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葡萄根瘤蚜和蚜虫尽管繁殖方式相似,但在基因组进化方面表现出不同的特征。

Phylloxera and aphids show distinct features of genome evolution despite similar reproductive modes.

作者信息

Li Zheng, Xue Allen Z, Maeda Gerald P, Li Yiyuan, Nabity Paul D, Moran Nancy A

出版信息

bioRxiv. 2023 Aug 29:2023.08.28.555181. doi: 10.1101/2023.08.28.555181.

Abstract

Genomes of aphids (family Aphididae) show several unusual evolutionary patterns. In particular, within the XO sex determination system of aphids, the X chromosome exhibits a lower rate of interchromosomal rearrangements, fewer highly expressed genes, and faster evolution at nonsynonymous sites compared to the autosomes. In contrast, other hemipteran lineages have similar rates of interchromosomal rearrangement for autosomes and X chromosomes. One possible explanation for these differences is the aphid's life cycle of cyclical parthenogenesis, where multiple asexual generations alternate with one sexual generation. If true, we should see similar features in the genomes of Phylloxeridae, an outgroup of aphids which also undergoes cyclical parthenogenesis. To investigate this, we generated a chromosome-level assembly for the grape phylloxera, an agriculturally important species of Phylloxeridae, and identified its single X chromosome. We then performed synteny analysis using the phylloxerid genome and 30 high-quality genomes of aphids and other hemipteran species. Unexpectedly, we found that the phylloxera does not share aphids' patterns of chromosome evolution. By estimating interchromosomal rearrangement rates on an absolute time scale, we found that rates are elevated for aphid autosomes compared to their X chromosomes, but this pattern does not extend to the phylloxera branch. Potentially, the conservation of X chromosome gene content is due to selection on XO males that appear in the sexual generation. We also examined gene duplication patterns across Hemiptera and uncovered horizontal gene transfer events contributing to phylloxera evolution.

摘要

蚜虫(蚜科)的基因组呈现出几种不同寻常的进化模式。特别是,在蚜虫的XO性别决定系统中,与常染色体相比,X染色体的染色体间重排率较低,高表达基因较少,非同义位点的进化速度更快。相比之下,其他半翅目谱系的常染色体和X染色体的染色体间重排率相似。这些差异的一个可能解释是蚜虫的周期性孤雌生殖生命周期,即多个无性世代与一个有性世代交替出现。如果真是这样,我们应该在球蚜科的基因组中看到类似的特征,球蚜科是蚜虫的一个外类群,也经历周期性孤雌生殖。为了研究这一点,我们为葡萄根瘤蚜(一种在农业上具有重要意义的球蚜科物种)生成了染色体水平的组装,并确定了其单一的X染色体。然后,我们使用葡萄根瘤蚜基因组以及30个高质量的蚜虫和其他半翅目物种的基因组进行了共线性分析。出乎意料的是,我们发现葡萄根瘤蚜并不具有蚜虫的染色体进化模式。通过在绝对时间尺度上估计染色体间重排率,我们发现蚜虫常染色体的重排率相对于其X染色体有所升高,但这种模式并未延伸到葡萄根瘤蚜分支。潜在地,X染色体基因含量的保守性可能是由于对有性世代中出现的XO雄性的选择。我们还研究了整个半翅目的基因复制模式,并发现了有助于葡萄根瘤蚜进化的水平基因转移事件。

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