Tao Yun, Zeng Zhao-Bang, Li Jian, Hartl Daniel L, Laurie Cathy C
DCMB and Department of Zoology, Duke University, Durham, NC 27708, USA.
Genetics. 2003 Aug;164(4):1399-418. doi: 10.1093/genetics/164.4.1399.
Hybrid male sterility (HMS) is a rapidly evolving mechanism of reproductive isolation in Drosophila. Here we report a genetic analysis of HMS in third-chromosome segments of Drosophila mauritiana that were introgressed into a D. simulans background. Qualitative genetic mapping was used to localize 10 loci on 3R and a quantitative trait locus (QTL) procedure (multiple-interval mapping) was used to identify 19 loci on the entire chromosome. These genetic incompatibilities often show dominance and complex patterns of epistasis. Most of the HMS loci have relatively small effects and generally at least two or three of them are required to produce complete sterility. Only one small region of the third chromosome of D. mauritiana by itself causes a high level of infertility when introgressed into D. simulans. By comparison with previous studies of the X chromosome, we infer that HMS loci are only approximately 40% as dense on this autosome as they are on the X chromosome. These results are consistent with the gradual evolution of hybrid incompatibilities as a by-product of genetic divergence in allopatric populations.
杂种雄性不育(HMS)是果蝇中一种快速进化的生殖隔离机制。在此,我们报告了对毛里求斯果蝇第三染色体片段中HMS的遗传分析,这些片段被渐渗到拟果蝇背景中。定性遗传图谱用于在3R上定位10个基因座,定量性状基因座(QTL)程序(多重区间作图)用于在整个染色体上鉴定19个基因座。这些遗传不相容性通常表现出显性和复杂的上位性模式。大多数HMS基因座的效应相对较小,通常至少需要其中两三个才能导致完全不育。当毛里求斯果蝇第三染色体的一个小区域渐渗到拟果蝇中时,其自身就会导致高度不育。通过与先前对X染色体的研究进行比较,我们推断在这条常染色体上,HMS基因座的密度仅约为X染色体上的40%。这些结果与杂种不相容性作为异域种群遗传分化的副产品而逐渐进化的观点一致。