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雌雄异体型蚕蛾家蚕 F2 杂种雄性生育力急剧下降。

Sharp decline in male fertility in F2 hybrids of the female-heterogametic silk moth Bombyx.

机构信息

Graduate School of Science and Technology, Kyoto Institute of Technology, Matsugasaki Goshokaido-cho, Sakyo-ku, Kyoto 606-8585, Japan.

Faculty of Applied Biology, Kyoto Institute of Technology, Matsugasaki Goshokaido-cho, Sakyo-ku, Kyoto 606-8585, Japan.

出版信息

Genetics. 2024 Nov 6;228(3). doi: 10.1093/genetics/iyae149.

Abstract

Sexual selection drives rapid evolution of morphological, physiological, and behavioral traits, especially in males, and it may also drive the rapid evolution of hybrid male sterility. Indeed, the faster male theory of speciation was once viewed as a major cause of Haldane's rule in male-heterogametic XY taxa, but is increasingly being replaced by the genetic conflict hypothesis partly because it cannot explain the faster evolution of hybrid female sterility in female-heterogametic ZW taxa. The theory nonetheless predicts that there should be more genes for hybrid male sterility than for hybrid female sterility even in such taxa, but this remains untested. Thus, finding evidence for the faster male theory of reproductive isolation beyond the F1 generation in ZW systems still represents a challenge to studying the impact of sexual selection. In this study, we examined F2 hybrids between the domesticated silkworm Bombyx mori and the wild silk moth Bombyx mandarina, which have ZW sex determination. We found that although only females showed reduced fertility in the F1 generation, the F2 hybrid males had a significant reduction in fertility compared with the parental and F1 males. Importantly, 27% of the F2 males and 15% of the F2 females were completely sterile, suggesting the presence of recessive incompatibilities causing male sterility in female-heterogametic taxa.

摘要

性选择驱动形态、生理和行为特征的快速进化,尤其是在雄性中,它也可能驱动杂种雄性不育的快速进化。事实上,曾经有一个快速雄性物种形成理论被视为导致哈代规则在雄性异型 XY 分类群中出现的主要原因,但它正逐渐被遗传冲突假说所取代,部分原因是它无法解释在雌性异型 ZW 分类群中杂种雌性不育的更快进化。尽管如此,该理论预测即使在这种分类群中,也应该有更多的杂种雄性不育基因,而不是杂种雌性不育基因,但这仍然没有得到验证。因此,在 ZW 系统中,除了 F1 代之外,找到生殖隔离的快速雄性理论的证据仍然是研究性选择影响的一个挑战。在这项研究中,我们研究了具有 ZW 性别决定的家养蚕 Bombyx mori 和野生丝蛾 Bombyx mandarina 之间的 F2 杂种。我们发现,尽管只有雌性在 F1 代表现出生育力降低,但与亲本和 F1 雄性相比,F2 杂种雄性的生育力显著降低。重要的是,27%的 F2 雄性和 15%的 F2 雌性完全不育,这表明存在导致雌性异型分类群雄性不育的隐性不相容性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2afb/11538408/addf4d9eda4a/iyae149f1.jpg

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