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Isolation and characterization of twelve polymorphic microsatellite markers in the endangered

机译:濒临灭绝的12种多态性微卫星标记的分离与表征

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摘要

Microsatellite markers were isolated and characterized for Hopea hainanensis Merrill & Chun, an endangered tree species with scattered distribution in Hainan Island and northern Vietnam. Twenty‐six microsatellite markers were developed based on next‐generation sequencing data and were genotyped by capillary electrophoresis on an ABI 3730xl DNA Analyzer. Twelve markers were found to be polymorphic in H. hainanensis. GENODIVE analyses indicated that the number of alleles ranged from 2 to 6 per locus, and the observed and expected heterozygosity varied from 0 to 0.755 and from 0.259 to 0.779, respectively. Primer transferability was tested with Hopea chinensis Hand.‐Mazz. and Hopeareticulata Tardieu, in which 3 and 7 microsatellite markers were found to be polymorphic, separately. The results showed that H. reticulata and H. hainanensis had similar levels of genetic diversity. A neighbor joining dendrogram clustered all individuals into two major groups, one of which was exclusively constituted by H. hainanensis, while the other consisted of two subgroups, corresponding to H. reticulata and H. chinensis, respectively. The 12 polymorphic microsatellite markers could be applied to study genetic diversity, population differentiation, mating system, and fine‐scale spatial genetic structures of H. hainanensis as well as its close relatives, facilitating the conservation and restoration of these endangered but valuable Hopea species.
机译:分离微卫星标记物,其特征在于Hopea Hainanensis Merrill&Chun,这是一种濒临灭绝的树种,在海南岛和越南北部分散分布。基于下一代测序数据开发了二十六种微卫星标记,并通过毛细管电泳在ABI 3730XL DNA分析仪上进行基因分型。发现十二个标记在Hainanensis中是多态的。 Genodive分析表明,每个基因座的等位基因数量为2〜6,观察到的和预期的杂合子分别从0〜0.755和0.259到0.779变化。用Hopea Chinensis的手工测试引物转移性。-Mazz。和霍普树reticulata tardieu,其中发现3和7个微卫星标记物被分别是多晶型。结果表明,H. Retictulata和H. Hainanensis具有类似的遗传多样性水平。将所有个人聚集成两个主要群体的邻居,其中一个是由H. hainanensis专门构成的,而另一个分别由两种亚组组成,分别对应于H. reticulata和H.Chinensis。 12种多态性微卫星标记物可以应用于研究H.Hainanensis H. Hainanensis的遗传多样性,人口分化,交配系统和细级空间遗传结构,以及其密切的亲属,促进了这些濒临灭绝但有价值的霍欧物种的保护和恢复。

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