Schaeffer Stephen W, Goetting-Minesky M Paula, Kovacevic Miro, Peoples John R, Graybill Jennifer L, Miller Jonathan M, Kim Kyungsun, Nelson Julie G, Anderson Wyatt W
Department of Biology and Institute of Molecular Evolutionary Genetics, Pennsylvania State University, University Park, PA 16802-5301, USA.
Proc Natl Acad Sci U S A. 2003 Jul 8;100(14):8319-24. doi: 10.1073/pnas.1432900100. Epub 2003 Jun 24.
Drosophila pseudoobscura harbors a rich polymorphism for paracentric inversions on the third chromosome, and the clines in the inversion frequencies across the southwestern United States indicate that strong natural selection operates on them. Isogenic inversion strains were made from isofemale lines collected from four localities, and eight molecular markers were mapped on the third chromosome. Nucleotide diversity was measured for these loci and formed the basis of an evolutionary genomic analysis. The loci were differentiated among inversions. The inversions did not show significant differences among populations, however, likely the result of extensive gene flow among populations. Some loci had significant reductions in nucleotide diversity within inversions compared with interspecies divergence, suggesting that these loci are near inversion breakpoints or are near targets of directional selection. Linkage disequilibrium (LD) levels tended to decrease with distance between loci, indicating that some genetic exchange occurs among gene arrangements despite the presence of inversions. In some cases, however, adjacent genes had low levels of interlocus LD and loosely linked genes had high levels of interlocus LD, suggesting strong epistatic selection. Our results support the hypothesis that the inversions of D. pseudoobscura have emerged as suppressors of recombination to maintain positive epistatic relationships among loci within gene arrangements that developed as the species adapted to a heterogeneous environment.
拟暗果蝇在其第三条染色体上存在丰富的臂内倒位多态性,而在美国西南部,倒位频率的渐变群表明有强大的自然选择作用于这些倒位。从四个地点采集的同雌系品系构建了同基因倒位品系,并在第三条染色体上定位了八个分子标记。对这些位点进行了核苷酸多样性测定,并以此为基础进行了进化基因组分析。这些位点在不同倒位之间存在差异。然而,倒位在不同种群间并未显示出显著差异,这可能是种群间广泛基因流动的结果。与种间差异相比,一些位点在倒位内的核苷酸多样性显著降低,这表明这些位点靠近倒位断点或靠近定向选择的目标。连锁不平衡(LD)水平倾向于随着位点间距离的增加而降低,这表明尽管存在倒位,基因排列之间仍会发生一些遗传交换。然而,在某些情况下,相邻基因的基因座间LD水平较低,而松散连锁的基因的基因座间LD水平较高,这表明存在强烈的上位性选择。我们的结果支持这样一种假说:拟暗果蝇的倒位是作为重组抑制因子出现的,以维持在物种适应异质环境过程中形成的基因排列内各基因座之间的正上位性关系。