Division of Basic Sciences, Fred Hutchinson Cancer Research Center, Seattle, Washington 98109, USA.
Genetics. 2011 Nov;189(3):1001-9. doi: 10.1534/genetics.111.132324. Epub 2011 Sep 6.
Understanding the genetic basis of reproductive isolation between recently diverged species is a central problem in evolutionary genetics. Here, I present analyses of the genetic architecture underlying hybrid male sterility and segregation distortion between the Bogota and USA subspecies of Drosophila pseudoobscura. Previously, a single gene, Overdrive (Ovd), was shown to be necessary but not sufficient for both male sterility and segregation distortion in F(1) hybrids between these subspecies, requiring several interacting partner loci for full manifestation of hybrid phenomena. I map these partner loci separately on the Bogota X chromosome and USA autosomes using a combination of different mapping strategies. I find that hybrid sterility involves a single hybrid incompatibility of at least seven interacting partner genes that includes three large-effect loci. Segregation distortion involves three loci on the Bogota X chromosome and one locus on the autosomes. The genetic bases of hybrid sterility and segregation distortion are at least partially--but not completely--overlapping. My results lay the foundation for fine-mapping experiments to identify the complete set of genes that interact with Overdrive. While individual genes that cause hybrid sterility or inviability have been identified in a few cases, my analysis provides a comprehensive look at the genetic architecture of all components of a hybrid incompatibility underlying F(1) hybrid sterility. Such an analysis would likely be unfeasible for most species pairs due to their divergence time and emphasizes the importance of young species pairs such as the D. pseudoobscura subspecies studied here.
了解新近分化物种之间生殖隔离的遗传基础是进化遗传学的核心问题。在这里,我分析了导致果蝇拟暗亚种的 Bogota 和 USA 亚种之间杂种雄性不育和分离失真的遗传结构。先前,单个基因 Overdrive(Ovd)被证明是这两个亚种之间 F1 杂种雄性不育和分离失真所必需的,但不是充分的,需要几个相互作用的伴侣基因才能完全表现杂种现象。我使用不同的映射策略组合,分别在 Bogota X 染色体和 USA 常染色体上定位这些伴侣基因。我发现杂种不育涉及至少七个相互作用的伴侣基因的单一杂种不兼容性,其中包括三个大效应基因座。分离失真涉及 Bogota X 染色体上的三个基因座和常染色体上的一个基因座。杂种不育和分离失真的遗传基础至少部分重叠,但不是完全重叠。我的研究结果为精细映射实验奠定了基础,以鉴定与 Overdrive 相互作用的完整基因集。虽然在少数情况下已经确定了导致杂种不育或致死的单个基因,但我的分析全面考察了导致 F1 杂种不育的杂种不兼容性的所有组成部分的遗传结构。由于它们的分化时间,这种分析在大多数物种对中可能不可行,这强调了像这里研究的果蝇拟暗亚种这样的年轻物种对的重要性。