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安纳托利亚沿海和内陆地区同域龟类(Emys 和 Mauremys)的种群结构和基因流动:来自线粒体和微卫星数据的结果。

Population structure and gene flow of the syntopic turtles Emys and Mauremys from coastal and inland regions of Anatolia (Turkey): results from mitochondrial and microsatellite data.

机构信息

Department of Biology, Faculty of Science and Letters, Manisa Celal Bayar University, Muradiye, 45140, Manisa, Turkey.

Museum of Zoology, Senckenberg Dresden, A. B. Meyer Building, 01109, Dresden, Germany.

出版信息

Mol Biol Rep. 2021 May;48(5):4163-4169. doi: 10.1007/s11033-021-06429-3. Epub 2021 Jun 4.

DOI:10.1007/s11033-021-06429-3
PMID:34086161
Abstract

Revealing the genetic basis of the existence of different species living together in different geographic regions provides clarification of this phylogeographic differentiation. In this study, we investigated the population genetics and evaluated the level of genetic variation of inland and coastal populations of Mauremys and Emys in Turkey. Tissue samples of 196 terrapins were studied which were collected from syntopic coastal (Gölbent-Söke/Aydın; M. rivulata and E. orbicularis) and inland populations (Bahçesaray/Aksaray; M. caspica and E. orbicularis). DNA was isolated using the InnuPREP DNA Mini Kit. Mitochondrial DNA sequences and allelic variation at 13 microsatellite loci for Mauremys and 12 microsatellite loci for Emys were examined.  Three haplotypes were found for Emys orbicularis (Im, Ip and Iw) collected from the coastal region and two haplotypes for Emys orbicularis (Ig and Im) collected from inland. Two haplotypes were identified for M. caspica (Cmt8 and Cmt9) and three haplotypes were identified for M. rivulata (Rmt3, Rmt24 and Rmt26). Using microsatellites and the software STRUCTURE the most probable value for K was revealed as two 2 for both species. The F value between M. rivulata and M. caspica was 0.39, and between the coastal and inland populations of E. orbicularis 0.09. It can be concluded that Emys populations tend to evolve by somehow preserving the allelic richness they have and Mauremys populations continue to differentiate so that new species emerge in the evolutionary process to reach the ideal allelic structure.

摘要

揭示生活在不同地理区域的不同物种存在的遗传基础,为这种系统地理分化提供了明确的解释。在这项研究中,我们调查了土耳其内陆和沿海地区的鳖和淡水龟种群的群体遗传学,并评估了遗传变异水平。研究采集了 196 只龟鳖类组织样本,这些样本来自沿海(Gölbent-Söke/Aydın;丽龟和扁龟)和内陆(Bahçesaray/Aksaray;凹甲陆龟和扁龟)的同域种群。使用 InnuPREP DNA Mini Kit 提取 DNA。检查了鳖和淡水龟的线粒体 DNA 序列和 13 个微卫星位点的等位基因变异。从沿海地区采集的 3 种扁龟(Emys orbicularis;Im、Ip 和 Iw)和从内陆采集的 2 种扁龟(Emys orbicularis;Ig 和 Im)发现了 3 种单倍型。鉴定了 2 种凹甲陆龟(M. caspica;Cmt8 和 Cmt9)和 3 种丽龟(M. rivulata;Rmt3、Rmt24 和 Rmt26)的单倍型。使用微卫星和 STRUCTURE 软件,揭示了两个物种的最可能 K 值为 2。丽龟和凹甲陆龟之间的 F 值为 0.39,而扁龟的沿海和内陆种群之间的 F 值为 0.09。可以得出结论,Emys 种群倾向于通过某种方式进化,以保持其等位基因丰富度,而 Mauremys 种群则继续分化,以便在进化过程中出现新的物种,以达到理想的等位基因结构。

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