Noor Mohamed A F
Department of Ecology and Evolution, The University of Chicago, 1101 East 57th Street, Chicago, Illinois, 60637.
Evolution. 1997 Jun;51(3):809-815. doi: 10.1111/j.1558-5646.1997.tb03663.x.
Despite the importance of sexual isolation to speciation, few studies have analyzed the genetic basis of interspecific mating discrimination, particularly using hybrid males. In this study, I investigated the genetic basis of sexual isolation using male hybrids of Drosophila pseudoobscura and D. persimilis. Hybrid male mating success was caused by interactions between the X-chromosome and autosomes (or Y-chromosome), and different arms of the X-chromosome contributed to mating success with females of each species. Further, although there was an X-chromosome component to mating success, its magnitude was not disproportionately large when compared with the proportion of the genome contained on this chromosome. Some hybrid males courted with an anomalously low intensity, so I simultaneously mapped the genetic basis of this "courtship dysfunction." The courtship dysfunction was caused by an interaction between the left arm of the X-chromosome in D. persimilis with the autosomes or Y-chromosome from D. pseudoobscura. Anomalous courtship behavior in interspecific hybrids can obscure the conclusions of studies of the genetics of sexual isolation, so courtship intensity should be evaluated in all such investigations.
尽管性隔离对物种形成很重要,但很少有研究分析种间交配歧视的遗传基础,特别是使用杂种雄性。在本研究中,我利用拟暗果蝇和果蝇的雄性杂种研究了性隔离的遗传基础。杂种雄性的交配成功是由X染色体与常染色体(或Y染色体)之间的相互作用引起的,并且X染色体的不同臂对与每个物种的雌性交配成功有贡献。此外,虽然交配成功存在X染色体成分,但与该染色体上所含基因组的比例相比,其大小并非不成比例地大。一些杂种雄性求偶强度异常低,因此我同时绘制了这种“求偶功能障碍”的遗传基础。求偶功能障碍是由拟暗果蝇X染色体左臂与果蝇的常染色体或Y染色体之间的相互作用引起的。种间杂种的异常求偶行为可能会掩盖性隔离遗传学研究的结论,因此在所有此类研究中都应评估求偶强度。