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高山蝎子(Euscorpiidae: Euscorpius)中的隐匿多样性和动态染色体进化。

Cryptic diversity and dynamic chromosome evolution in Alpine scorpions (Euscorpiidae: Euscorpius).

机构信息

Department of Zoology, Faculty of Science, Charles University, Viničná 7, 12844 Prague, Czech Republic.

Department of Zoology, Faculty of Science, Charles University, Viničná 7, 12844 Prague, Czech Republic; Department of Zoology, National Museum, Cirkusová 1740, Prague, Czech Republic.

出版信息

Mol Phylogenet Evol. 2019 May;134:152-163. doi: 10.1016/j.ympev.2019.02.002. Epub 2019 Feb 8.

Abstract

Over time, mountain biota has undergone complex evolutionary histories that have left imprints on its genomic arrangement, geographical distribution and diversity of contemporary lineages. Knowledge on these biogeographical aspects still lags behind for invertebrates inhabiting the Alpine region. In the present study, we examined three scorpion species of the subgenus Euscorpius (Alpiscorpius) from the European Alps using cytogenetic and molecular phylogenetic approaches to determine the variation and population structure of extant lineages at both chromosome and genetic level, and to provide an insight into the species diversification histories. We detected considerable intraspecific variability in chromosome complements and localization of the 18S rDNA loci in all studied species. Such chromosome differences were noticeable as the existence of three [in E. (A.) alpha and E. (A.) germanus] or four [in E. (A.) gamma] range-restricted karyotypic races. These races differed from one another either by 2n [in E. (A.) alpha 2n = 54, 60, 90; in E. (A.) gamma 2n = 58, 60, 88, 86-92], or by the karyotypic formula [in E. (A.) germanus 2n = 34m + 12sm; 36m + 10sm; 42m + 4sm]. Using mitochondrial (16S rRNA, COI) and nuclear (28S rDNA) genetic markers, we examined genetic variation and reconstructed phylogenetic relationships among the karyotypic races. Both approaches provided evidence for the existence of ten deeply divergent lineages exhibiting the features of local endemics and indicating the presence of cryptic species. Molecular dating analyses suggest that these lineages diversified during the Plio-Pleistocene and this process was presumably accompanied by dynamic structural changes in the genome organization.

摘要

随着时间的推移,山地生物群经历了复杂的进化历史,这些历史在其基因组排列、地理分布和当代谱系多样性上留下了印记。对于栖息在阿尔卑斯地区的无脊椎动物来说,这些生物地理学方面的知识仍然滞后。在本研究中,我们使用细胞遗传学和分子系统发育方法研究了来自欧洲阿尔卑斯山的三个亚属 Euscorpius(Alpiscorpius)的蝎子物种,以确定现存谱系在染色体和遗传水平上的变异和种群结构,并深入了解物种多样化历史。我们在所有研究的物种中都检测到染色体组成和 18S rDNA 基因座定位的显著种内变异性。这种染色体差异表现为存在三种[在 E.(A.)alpha 和 E.(A.)germanus 中]或四种[在 E.(A.)gamma 中]的范围受限的染色体种族。这些种族彼此之间存在差异,要么是 2n [在 E.(A.)alpha 中 2n=54、60、90;在 E.(A.)gamma 中 2n=58、60、88、86-92],要么是染色体型公式[在 E.(A.)germanus 中 2n=34m+12sm;36m+10sm;42m+4sm]。使用线粒体(16S rRNA、COI)和核(28S rDNA)遗传标记,我们研究了染色体种族之间的遗传变异并重建了系统发育关系。这两种方法都为存在十个深度分化的谱系提供了证据,这些谱系表现出地方特有种的特征,并表明存在隐种。分子年代分析表明,这些谱系在上新世-更新世期间多样化,这个过程可能伴随着基因组组织的动态结构变化。

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