Yi Soojin, Bachtrog Doris, Charlesworth Brian
Department of Ecology and Evolution, University of Chicago, 1101 E. 57th Street, Chicago, IL 60637-1573, USA.
Genetics. 2003 Aug;164(4):1369-81. doi: 10.1093/genetics/164.4.1369.
There have recently been several studies of the evolution of Y chromosome degeneration and dosage compensation using the neo-sex chromosomes of Drosophila miranda as a model system. To understand these evolutionary processes more fully, it is necessary to document the general pattern of genetic variation in this species. Here we report a survey of chromosomal variation, as well as polymorphism and divergence data, for 12 nuclear genes of D. miranda. These genes exhibit varying levels of DNA sequence polymorphism. Compared to its well-studied sibling species D. pseudoobscura, D. miranda has much less nucleotide sequence variation, and the effective population size of this species is inferred to be several-fold lower. Nevertheless, it harbors a few inversion polymorphisms, one of which involves the neo-X chromosome. There is no convincing evidence for a recent population expansion in D. miranda, in contrast to D. pseudoobscura. The pattern of population subdivision previously observed for the X-linked gene period is not seen for the other loci, suggesting that there is no general population subdivision in D. miranda. However, data on an additional region of period confirm population subdivision for this gene, suggesting that local selection is operating at or near period to promote differentiation between populations.
最近有几项研究以米兰达果蝇的新性染色体为模型系统,对Y染色体退化和剂量补偿的进化进行了研究。为了更全面地了解这些进化过程,有必要记录该物种遗传变异的总体模式。在此,我们报告了对米兰达果蝇12个核基因的染色体变异以及多态性和分化数据的调查。这些基因表现出不同程度的DNA序列多态性。与其研究充分的近缘物种伪暗果蝇相比,米兰达果蝇的核苷酸序列变异要少得多,据推断该物种的有效种群大小要低几倍。然而,它具有一些倒位多态性,其中之一涉及新X染色体。与伪暗果蝇不同,没有令人信服的证据表明米兰达果蝇近期种群扩张。之前在X连锁基因period中观察到的种群细分模式在其他基因座中未出现,这表明米兰达果蝇没有普遍的种群细分。然而,关于period另一个区域的数据证实了该基因的种群细分,表明局部选择在period或其附近起作用,以促进种群间的分化。