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减数分裂驱动向果蝇杂种不育的转化。

Transformation of meiotic drive into hybrid sterility in Drosophila.

机构信息

School of Biological Sciences, University of Utah, Salt Lake City, UT 84112, USA.

出版信息

Genetics. 2024 Oct 7;228(2). doi: 10.1093/genetics/iyae133.

Abstract

Hybrid male sterility is one of the fastest evolving intrinsic reproductive barriers between recently isolated populations. A leading explanation for the evolution of hybrid male sterility involves genomic conflicts with meiotic drivers in the male germline. There are, however, few examples directly linking meiotic drive to hybrid sterility. In this study, we report that the Sex-Ratio chromosome of Drosophila pseudoobscura, which causes X-chromosome drive within the USA subspecies, causes near-complete male sterility when it is moved into the genetic background of the Bogota subspecies. In addition, we show that this new form of sterility is genetically distinct from the sterility of F1 hybrid males in crosses between USA males and Bogota females. Our observations provide a tractable study system where noncryptic drive within species is transformed into strong hybrid sterility between very young subspecies.

摘要

杂种雄性不育是新近隔离种群之间进化最快的内在生殖障碍之一。杂种雄性不育进化的一个主要解释涉及与雄性生殖细胞减数分裂驱动因子的基因组冲突。然而,直接将减数分裂驱动与杂种不育联系起来的例子很少。在这项研究中,我们报告说,在 USA 亚种中引起 X 染色体驱动的果蝇 pseudoobscura 的性染色体,当它被转移到 Bogota 亚种的遗传背景中时,会导致近完全的雄性不育。此外,我们还表明,这种新形式的不育在 USA 雄性与 Bogota 雌性杂交的 F1 杂种雄性的不育之间在遗传上是不同的。我们的观察提供了一个可行的研究系统,其中物种内非隐性驱动被转化为非常年轻亚种之间的强杂种不育。

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