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雌性线粒体DNA的种间转移与紫贻贝角色反转及偏离中性相关。

Interspecies transfer of female mitochondrial DNA is coupled with role-reversals and departure from neutrality in the mussel Mytilus trossulus.

作者信息

Quesada H, Wenne R, Skibinski D O

机构信息

School of Biological Sciences, University of Wales, Swansea, United Kingdom.

出版信息

Mol Biol Evol. 1999 May;16(5):655-65. doi: 10.1093/oxfordjournals.molbev.a026148.

Abstract

Mussels of the genus Mytilus have distinct and highly diverged male and female mitochondrial DNA (mtDNA) genomes with separate routes of inheritance. Previous studies of European populations of Mytilus trossulus demonstrated that 33% of males are heteroplasmic for a second mtDNA genome of increased length and that hybridization with Mytilus edulis does not block mtDNA introgression, in contrast to reports for American populations. Here, we demonstrate that the female mtDNA type of M. edulis has replaced the resident female mtDNA type of European M. trossulus. This is supported by COIII sequence data indicating that the female mtDNA of European M. trossulus is very similar to that of M. edulis and that in phylogenetic trees, the mtDNAs of these two species cluster together but separately from American M. trossulus sequences, the latter not being disturbed by introgressive hybridization. We also provide evidence that the mtDNA genome of increased length found in heteroplasmic males of European M. trossulus derives from a recent partition of an introgressed M. edulis female type into the male route of transmission. Neutrality tests reveal that European populations of M. trossulus display an excess of replacement polymorphism within the female mtDNA type with respect to conspecific American populations, as well as a significant excess of rare variants, of a similar magnitude to those previously reported for the invading European M. edulis mtDNA. Results are consistent with a nearly neutral model of molecular evolution and suggest that selection acting on European M. trossulus mtDNA is largely independent of the nuclear genetic background.

摘要

紫贻贝属的贻贝具有独特且高度分化的雄性和雌性线粒体DNA(mtDNA)基因组,其遗传途径相互独立。先前对欧洲绿贻贝种群的研究表明,33%的雄性对于长度增加的第二个mtDNA基因组是异质的,并且与蓝贻贝杂交并不会阻止mtDNA渗入,这与美国种群的报道情况相反。在此,我们证明蓝贻贝的雌性mtDNA类型已经取代了欧洲绿贻贝原有的雌性mtDNA类型。这得到了细胞色素氧化酶亚基III(COIII)序列数据的支持,该数据表明欧洲绿贻贝的雌性mtDNA与蓝贻贝的非常相似,并且在系统发育树中,这两个物种的mtDNA聚集在一起,但与美国绿贻贝的序列分开,后者未受到渗入杂交的干扰。我们还提供证据表明,在欧洲绿贻贝异质雄性中发现的长度增加的mtDNA基因组源自最近渗入的蓝贻贝雌性类型向雄性遗传途径的分化。中性检验表明,相对于同属的美国种群,欧洲绿贻贝种群在雌性mtDNA类型中表现出过多的替换多态性,以及显著过多的稀有变异,其程度与先前报道的入侵欧洲的蓝贻贝mtDNA相似。结果与近乎中性的分子进化模型一致,并表明作用于欧洲绿贻贝mtDNA的选择在很大程度上独立于核遗传背景。

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