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减数分裂前和减数分裂失败导致冈比亚按蚊复合体中的杂种雄性不育。

Premeiotic and meiotic failures lead to hybrid male sterility in the Anopheles gambiae complex.

机构信息

1 Department of Entomology, Virginia Polytechnic Institute and State University , Blacksburg, VA , USA.

2 Department of Cytology and Genetics, Tomsk State University , Tomsk , Russian Federation.

出版信息

Proc Biol Sci. 2019 Jul 10;286(1906):20191080. doi: 10.1098/rspb.2019.1080.

Abstract

Hybrid male sterility (HMS) contributes to speciation by restricting gene flow between related taxa. Detailed cytological characterization of reproductive organs in hybrid males is important for identifying phenotypes that can help guide searches of speciation genes. To investigate possible cellular causes of HMS, we performed crosses between closely related species of the Anopheles gambiae complex: An. merus with An. gambiae or An. coluzzii. We demonstrate that HMS in African malaria mosquitoes involves two defects in the reciprocal crosses: a premeiotic arrest of germline stem cells in degenerate testes and a failure of the reductional meiotic division of primary spermatocytes in normal-like testes. The premeiotic arrest in degenerate testes of hybrids is accompanied by a strong suppression of meiotic and postmeiotic genes. Unlike pure species, sex chromosomes in normal-like testes of F1 hybrids are largely unpaired during meiotic prophase I and all chromosomes show various degrees of insufficient condensation. Instead of entering reductional division in meiosis I, primary spermatocytes prematurely undergo an equational mitotic division producing non-motile diploid sperm. Thus, our study identified cytogenetic errors in interspecies hybrids that arise during the early stages of postzygotic isolation.

摘要

杂种雄性不育(HMS)通过限制相关分类单元之间的基因流动来促进物种形成。详细的生殖器官细胞学特征分析对于鉴定有助于指导物种形成基因搜索的表型非常重要。为了研究 HMS 的可能细胞原因,我们在冈比亚按蚊复合体的近缘种之间进行了杂交:用冈比亚按蚊或库蚊与苍白按蚊进行杂交。我们证明,在非洲疟蚊中 HMS 涉及到两个在正反交中都存在的缺陷:退化睾丸中的生殖干细胞在减数分裂前停滞,以及正常睾丸中的初级精母细胞减数分裂失败。杂种退化睾丸中的减数分裂前停滞伴随着减数分裂和减数分裂后基因的强烈抑制。与纯物种不同,F1 杂种正常睾丸中的性染色体在减数分裂前期 I 中大部分未配对,所有染色体都显示出不同程度的不完全凝聚。初级精母细胞不是在减数分裂 I 中进入减数分裂,而是过早地进行均等有丝分裂,产生非运动的二倍体精子。因此,我们的研究鉴定了在合子后隔离的早期阶段出现的种间杂种中的细胞遗传学错误。

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