Filatov Dmitry A, Charlesworth Deborah
School of Biosciences, University of Birmingham, Edgbaston, United Kingdom.
Mol Biol Evol. 2002 Jun;19(6):898-907. doi: 10.1093/oxfordjournals.molbev.a004147.
Theory predicts that selection should be less effective in the nonrecombining genes of Y-chromosomes, relative to the situation for genes on the other chromosomes, and this should lead to the accumulation of deleterious nonsynonymous substitutions. In addition, synonymous substitution rates may differ between X- and Y-linked genes because of the male-driven evolution effect and also because of actual differences in per-replication mutation rates between the sex chromosomes. Here, we report the first study of synonymous and nonsynonymous substitution rates on plant sex chromosomes. We sequenced two pairs of sex-linked genes, SlX1-SlY1 and SlX4-SlY4, from dioecious Silene latifolia and S. dioica, and their non-sex-linked homologues from nondioecious S. vulgaris and Lychnis flos-jovis, respectively. The rate of nonsynonymous substitutions in the SlY4 gene is significantly higher than that in the SlX4 gene. Silent substitution rates are also significantly higher in both Y-linked genes, compared with their X-linked homologues. The higher nonsynonymous substitution rate in the SlY4 gene is therefore likely to be caused by a mutation rate difference between the sex chromosomes. The difference in silent substitution rates between the SlX4 and SlY4 genes is too great to be explained solely by a higher per-generation mutation rate in males than females. It is thus probably caused by a difference in per-replication mutation rates between the sex chromosomes. This suggests that the local mutation rate can change in a relatively short evolutionary time.
理论预测,相对于其他染色体上的基因,Y染色体上非重组基因的选择效率应该更低,这应该会导致有害非同义替换的积累。此外,由于雄性驱动的进化效应,以及性染色体之间每轮复制突变率的实际差异,X连锁基因和Y连锁基因之间的同义替换率可能会有所不同。在这里,我们报告了对植物性染色体上同义替换率和非同义替换率的首次研究。我们分别对雌雄异株的宽叶蝇子草和 dioica 的两对性连锁基因 SlX1-SlY1 和 SlX4-SlY4,以及非雌雄异株的普通蝇子草和剪秋罗的非性连锁同源基因进行了测序。SlY4 基因中的非同义替换率显著高于 SlX4 基因。与它们的X连锁同源基因相比,两个Y连锁基因中的沉默替换率也显著更高。因此,SlY4 基因中较高的非同义替换率可能是由性染色体之间的突变率差异导致的。SlX4 和 SlY4 基因之间沉默替换率的差异太大,无法仅用雄性每代的突变率高于雌性来解释。因此,这可能是由性染色体之间每轮复制突变率的差异导致的。这表明局部突变率可以在相对较短的进化时间内发生变化。