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蚜虫 X 染色体是功能重要基因的危险之地:基于染色体水平组装的半翅目基因组的多样化进化。

The Aphid X Chromosome Is a Dangerous Place for Functionally Important Genes: Diverse Evolution of Hemipteran Genomes Based on Chromosome-Level Assemblies.

机构信息

Department of Integrative Biology, University of Texas at Austin, Austin, TX.

Laboratory of Predatory Mites, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, People's Republic of China.

出版信息

Mol Biol Evol. 2020 Aug 1;37(8):2357-2368. doi: 10.1093/molbev/msaa095.

Abstract

Different evolutionary forces shape gene content and sequence evolution on autosomes versus sex chromosomes. Location on a sex chromosome can favor male-beneficial or female-beneficial mutations depending on the sex determination system and selective pressure on different sexual morphs. An X0 sex determination can lead to autosomal enrichment of male-biased genes, as observed in some hemipteran insect species. Aphids share X0 sex determination; however, models predict the opposite pattern, due to their unusual life cycles, which alternate between all-female asexual generations and a single sexual generation. Predictions include enrichment of female-biased genes on autosomes and of male-biased genes on the X, in contrast to expectations for obligately sexual species. Robust tests of these models require chromosome-level genome assemblies for aphids and related hemipterans with X0 sex determination and obligate sexual reproduction. In this study, we built the first chromosome-level assembly of a psyllid, an aphid relative with X0 sex determination and obligate sexuality, and compared it with recently resolved chromosome-level assemblies of aphid genomes. Aphid and psyllid X chromosomes differ strikingly. In aphids, female-biased genes are strongly enriched on autosomes and male-biased genes are enriched on the X. In psyllids, male-biased genes are enriched on autosomes. Furthermore, functionally important gene categories of aphids are enriched on autosomes. Aphid X-linked genes and male-biased genes are under relaxed purifying selection, but gene content and order on the X is highly conserved, possibly reflecting constraints imposed by unique chromosomal mechanisms associated with the unusual aphid life cycle.

摘要

不同的进化力量塑造了常染色体和性染色体上的基因内容和序列进化。性染色体上的位置可以根据性别决定系统和对不同性态的选择压力,有利于雄性有益或雌性有益的突变。X0 性别决定可以导致雄性偏向基因在常染色体上富集,就像在一些半翅目昆虫物种中观察到的那样。蚜虫具有 X0 性别决定;然而,由于其不寻常的生命周期,模型预测了相反的模式,它们在全雌性无性世代和单一有性世代之间交替。预测包括常染色体上雌性偏向基因的富集和 X 染色体上雄性偏向基因的富集,这与对强制性有性物种的预期相反。这些模型的稳健测试需要具有 X0 性别决定和强制性有性生殖的蚜虫和相关半翅目昆虫的染色体水平基因组组装。在这项研究中,我们构建了第一个具有 X0 性别决定和强制性有性生殖的粉虱的染色体水平组装体,这是蚜虫的一个近亲,并将其与最近解决的蚜虫基因组的染色体水平组装体进行了比较。蚜虫和粉虱的 X 染色体差异很大。在蚜虫中,雌性偏向基因在常染色体上强烈富集,而雄性偏向基因在 X 染色体上富集。在粉虱中,雄性偏向基因在常染色体上富集。此外,蚜虫的功能重要基因类别在常染色体上富集。蚜虫的 X 连锁基因和雄性偏向基因受到松弛的净化选择,但 X 上的基因内容和顺序高度保守,可能反映了与不寻常的蚜虫生命周期相关的独特染色体机制所施加的限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bcb/7403619/848ccbd94edc/msaa095f1.jpg

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