基于mtDNA分析的土耳其Van湖盆地濒危Alburnus tarichi (Güldenstädt, 1814)种群遗传结构和人口统计学历史

Mitochondrial DNA. Part A, DNA mapping, sequencing, and analysis Pub Date : 2021-07-01 Epub Date: 2022-02-21
Yılmaz Çiftci, Oğuzhan Eroğlu, Şirin Firidin, Hacı Savaş, Yusuf Bektaş
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引用次数: 0

摘要

利用两种线粒体DNA标记分析了土耳其东部凡湖流域17个种群(包括常住种群和异种种群)特有和濒危鲤科物种tarichi Alburnus的遗传多样性、遗传结构和人口统计学历史。凡湖流域柽柽树种群具有遗传异质性,16S rRNA标记1233 bp的高单倍型和低核苷酸多样性(44个单倍型;70个多态性位点,单倍体多样性(Hd) = 0.9130, π = 0.0032), cyt b标记1140 bp(47个单倍型;多态性位点82个,Hd = 0.9339, π = 0.0057)。基于这些进化支,AMOVA分析显示,16S rRNA-cyt b序列的总变异发生率为80.76%发生在群体间,10.74%发生在群体内,仅8.50%发生在群体内。串联的16S rRNA-cyt b数据集的FST值为0.0167 ~ 0.9705,表明群体间存在较大的遗传变异。在墨西尼亚阶段,地方性塔里克人从最后的共同祖先中分离出来的时间为5.647 Ma(95%最高后验密度:4.183 ~ 7.011 Ma)。中立性检验和错配分布分析确定了最近的种群扩张。本研究结果为该物种的遗传种群结构、保护和管理提供了有价值的信息。
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Genetic structure and demographic history of endangered Alburnus tarichi (Güldenstädt, 1814) populations from Lake Van basin in Turkey inferred from mtDNA analyses.

Genetic diversity, genetic structure, and demographic history of the endemic and endangered cyprinid species Alburnus tarichi based on samples from 17 populations consisting of resident and potamodromous specimens from the Lake Van basin in eastern Turkey were analyzed using two mitochondrial DNA markers. A. tarichi populations in the Lake Van basin are genetically heterogeneous, as indicated by the high haplotype and low nucleotide diversity of 1233 bp of the 16S rRNA marker (44 haplotypes; 70 polymorphic sites, haploid diversity (Hd) = 0.9130, π = 0.0032) and 1140 bp of the cyt b marker (47 haplotypes; 82 polymorphic sites, Hd = 0.9339, π = 0.0057). Clades were separated by average sequence divergences of 1.94% (II vs. III), 1.80% (I vs. III), and 0.66% (I vs. II). Based on these clades, AMOVA analysis revealed that 80.76% of the total variation occurred among populations, 10.74% occurred within populations, and only 8.50% occurred between populations within groups for the concatenated 16S rRNA-cyt b sequences. Pairwise FST values varied from 0.0167 to 0.9705 for the concatenated 16S rRNA-cyt b dataset, emphasizing the high genetic variation among populations. The time since the endemic tarek populations split from their last common ancestor has been dated to 5.647 Ma (95% highest posterior density: 4.183-7.011 Ma) in the Messinian Stage. Recent population expansion for tarek populations has been determined by neutrality tests and mismatch distribution analyses. The results of this study provide valuable information on the genetic population structure, conservation, and management of this species.

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