Filatov Dmitry A
School of Biosciences, The University of Birmingham, Edgbaston, Birmingham, UK.
Mol Biol Evol. 2005 Mar;22(3):402-8. doi: 10.1093/molbev/msi003. Epub 2004 Oct 6.
Dioecious white campion Silene latifolia has sex chromosomal sex determination, with homogametic (XX) females and heterogametic (XY) males. This species has become popular in studies of sex chromosome evolution. However, the lack of genes isolated from the X and Y chromosomes of this species is a major obstacle for such studies. Here, I report the isolation of a new sex-linked gene, Slss, with strong homology to spermidine synthase genes of other species. The new gene has homologous intact copies on the X and Y chromosomes (SlssX and SlssY, respectively). Synonymous divergence between the SlssX and SlssY genes is 4.7%, and nonsynonymous divergence is 1.4%. Isolation of a homologous gene from nondioecious S. vulgaris provided a root to the gene tree and allowed the estimation of the silent and replacement substitution rates along the SlssX and SlssY lineages. Interestingly, the Y-linked gene has higher synonymous and nonsynonymous substitution rates. The elevated synonymous rate in the SlssY gene, compared with SlssX, confirms our previous suggestion that the S. latifolia Y chromosome has a higher mutation rate, compared with the X chromosome. When differences in silent substitution rate are taken into account, the Y-linked gene still demonstrates significantly faster accumulation of nonsynonymous substitutions, which is consistent with the theoretical prediction of relaxed purifying selection in Y-linked genes, leading to the accumulation of nonsynonymous substitutions and genetic degeneration of the Y-linked genes.
雌雄异株的白麦瓶草(Silene latifolia)具有性染色体性别决定机制,同配性别(XX)为雌性,异配性别(XY)为雄性。该物种在性染色体进化研究中颇受关注。然而,缺乏从该物种X和Y染色体上分离得到的基因是此类研究的主要障碍。在此,我报告分离出一个新的性连锁基因Slss,它与其他物种的亚精胺合酶基因具有高度同源性。该新基因在X和Y染色体上分别有同源的完整拷贝(分别为SlssX和SlssY)。SlssX和SlssY基因之间的同义分歧率为4.7%,非同义分歧率为1.4%。从非雌雄异株的普通麦瓶草(S. vulgaris)中分离出同源基因,为基因树提供了一个根基,并使得沿着SlssX和SlssY谱系对沉默和替换替换率进行估计成为可能。有趣的是,Y连锁基因具有更高的同义替换率和非同义替换率。与SlssX相比,SlssY基因中升高的同义替换率证实了我们之前的推测,即与X染色体相比,白麦瓶草Y染色体具有更高的突变率。当考虑沉默替换率的差异时,Y连锁基因仍然显示出非同义替换的积累明显更快,这与Y连锁基因中放松的纯化选择的理论预测一致,导致非同义替换的积累和Y连锁基因的遗传退化。