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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Recurrent replacement of mtDNA and cryptic hybridization between two sibling bat species Myotis myotis and Myotis blythii
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Recurrent replacement of mtDNA and cryptic hybridization between two sibling bat species Myotis myotis and Myotis blythii

机译:轮换mtDNA和两个兄弟蝙蝠物种Myotis myotis和Bythii Myotis之间的隐性杂交

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摘要

The two sibling bat species Myotis myotis and Myotis blythii occur in sympatry over wide areas of Southern and Central Europe. Morphological, ecological and previous genetic evidence supported the view that the two species constitute two well-differentiated groups, but recent phylogenetic analyses have shown that the two species share some mtDNA haplotypes when they occur in sympatry. In order to see whether some genetic exchange has occurred between the two species, we sequenced a highly variable segment of the mitochondrial control region in both species living in sympatry and in allopatry. We also analysed the nuclear diversity of 160 individuals of both species found in two mixed nursery colonies located north and south of the Alps. MtDNA analysis confirmed that European M. blythii share multiple, identical or very similar haplotypes with M. myotis. Since allopatric Asian M. blythii presents mtDNA sequences that are very divergent from those of the two species found in Europe, we postulate that the mitochondrial genome of the European M. blythii has been replaced by that of M. myotis. The analysis of nuclear diversity shows a strikingly different pattern, as both species are well differentiated within mixed nursery colonies (F-ST = 0.18). However, a Bayesian analysis of admixture reveals that the hybrids can be frequently observed, as about 25% of sampled M. blythii show introgressed genes of M. myotis origin. In contrast, less than 4% of the M. myotis analysed were classified as non-parental genotypes, revealing an asymmetry in the pattern of hybridization between the two species. These results show that the two species can interbreed and that the hybridization is still ongoing in the areas of sympatry. The persistence of well-differentiated nuclear gene pools, in spite of an apparent replacement of mitochondrial genome in European M. blythii by that of M. myotis, is best explained by a series of introgression events having occurred repeatedly during the recent colonization of Europe by M. blythii from Asia. The sharp contrast obtained from the analysis of mitochondrial and nuclear markers further points to the need to cautiously interpret results based on a single class of genetic markers.
机译:这两个兄弟蝙蝠物种Myotis myotis和Myotis blythii分布在南欧和中欧的广泛地区。形态学,生态学和先前的遗传学证据支持以下观点:这两个物种构成了两个高度分化的群体,但是最近的系统进化分析表明,当这两个物种在交配体中出现时,它们具有某些mtDNA单倍型。为了了解两个物种之间是否发生了某种遗传交换,我们对生活在交配和异相中的两个物种的线粒体控制区进行了高度可变的测序。我们还分析了在阿尔卑斯山北部和南部的两个混合苗圃殖民地中发现的两个物种的160个个体的核多样性。 MtDNA分析证实欧洲欧洲分枝杆菌与肌分枝杆菌具有多种,相同或非常相似的单倍型。由于同种异体亚洲分枝杆菌的mtDNA序列与在欧洲发现的两个物种的mtDNA序列非常不同,因此我们假设欧洲分枝杆菌的线粒体基因组已被Myotis的线粒体基因组取代。核多样性的分析显示出截然不同的模式,因为两种物种在混合苗圃殖民地中都有很好的分化(F-ST = 0.18)。然而,对混合物的贝叶斯分析表明,可以经常观察到杂种,因为约25%的采样的毕赤酵母显示出了M. myotis的渗入基因。相反,只有不到4%的M. myotis被归类为非亲本基因型,这表明这两个物种之间的杂交方式不对称。这些结果表明,这两个物种可以杂交,并且杂交在交配区域仍在进行。尽管欧洲分枝杆菌的线粒体基因组明显被肌分枝杆菌取代了,但分化良好的核基因库的持久性仍可以通过最近在欧洲殖民期间反复发生的一系列渗入事件得到最好的解释。来自亚洲的M. blythii。从线粒体和核标记物的分析中获得的鲜明对比进一步表明,需要基于一类遗传标记物谨慎地解释结果。

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