Singh Nadia D, Koerich Leonardo B, Carvalho Antonio Bernardo, Clark Andrew G
Department of Biological Sciences, North Carolina State University
Departamento de Genética, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
Mol Biol Evol. 2014 Oct;31(10):2612-23. doi: 10.1093/molbev/msu203. Epub 2014 Jun 27.
Y chromosomes, with their reduced effective population size, lack of recombination, and male-limited transmission, present a unique collection of constraints for the operation of natural selection. Male-limited transmission may greatly increase the efficacy of selection for male-beneficial mutations, but the reduced effective size also inflates the role of random genetic drift. Together, these defining features of the Y chromosome are expected to influence rates and patterns of molecular evolution on the Y as compared with X-linked or autosomal loci. Here, we use sequence data from 11 genes in 9 Drosophila species to gain insight into the efficacy of natural selection on the Drosophila Y relative to the rest of the genome. Drosophila is an ideal system for assessing the consequences of Y-linkage for molecular evolution in part because the gene content of Drosophila Y chromosomes is highly dynamic, with orthologous genes being Y-linked in some species whereas autosomal in others. Our results confirm the expectation that the efficacy of natural selection at weakly selected sites is reduced on the Y chromosome. In contrast, purifying selection on the Y chromosome for strongly deleterious mutations does not appear to be compromised. Finally, we find evidence of recurrent positive selection for 4 of the 11 genes studied here. Our results thus highlight the variable nature of the mode and impact of natural selection on the Drosophila Y chromosome.
Y染色体有效种群规模减小、缺乏重组且雄性受限传递,这使其在自然选择作用下呈现出一系列独特的限制因素。雄性受限传递可能极大地提高对雄性有益突变的选择效率,但有效规模的减小也会增强随机遗传漂变的作用。Y染色体的这些决定性特征共同作用,预计会影响Y染色体上分子进化的速率和模式,与X连锁或常染色体位点相比。在此,我们利用9种果蝇中11个基因的序列数据,来深入了解相对于基因组其他部分,自然选择对果蝇Y染色体的作用效果。果蝇是评估Y连锁对分子进化影响的理想系统,部分原因是果蝇Y染色体的基因组成高度动态,直系同源基因在某些物种中位于Y染色体上,而在其他物种中则位于常染色体上。我们的结果证实了这样的预期:在弱选择位点上,Y染色体上自然选择的效果会降低。相比之下,对Y染色体上强烈有害突变的纯化选择似乎并未受到损害。最后,我们发现这里研究的11个基因中有4个存在反复正向选择的证据。因此,我们的结果凸显了自然选择对果蝇Y染色体作用方式和影响的多变性。