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首页> 外文期刊>Biochemical Systematics and Ecology >Development of thirty-five novel polymorphic microsatellite markers in Pseudosciaena polyactis (Perciformes:Sciaenidae) and cross-species amplification in closely related species, Pseudosciaena crocea
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Development of thirty-five novel polymorphic microsatellite markers in Pseudosciaena polyactis (Perciformes:Sciaenidae) and cross-species amplification in closely related species, Pseudosciaena crocea

机译:35种新型多态假单胞菌(Perciformes:Sciaenidae)的多态微卫星标记的开发和近缘种Pseudosciaena crocea的跨物种扩增

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摘要

Small yellow croaker, Pseudosciaena polyactis, is an economically important marine fishery species. In this study, we isolated 35 novel polymorphic microsatellite primers in P. polyactis by using the combined biotin capture method. The polymorphism of each locus was assessed in 30 individuals from Donggang, Northern Yellow Sea, China. A total of 519 alleles were detected and the number of alleles per locus ranged from 3 to 23. The PLC values of these 35 microsatellite loci ranged from 0.367 to 0.940. The observed (H-o) and expected heterozygosity (H-e) per locus ranged from 0.233 to 1.000 and from 0.438 to 0.943, respectively. Seven loci significantly deviated from Hardy-Weinberg equilibrium (HWE) after Bonferroni correction and no significant linkage disequilibrium (LD) was found between pairs of loci. In addition, cross-species amplification was performed in Pseudosciaena crocea, a closely related species of P. polyactis, to assess the applicability of these markers. These polymorphic microsatellites will provide useful tools for the study of genetic diversity and population structure of P. polyactis and P. crocea
机译:小黄鱼,Pseudosciaena polyactis,是一种经济上重要的海洋渔业物种。在这项研究中,我们通过使用结合的生物素捕获方法分离了35个新的P. polyactis多态微卫星引物。在中国北方黄海东港市的30个个体中评估了每个基因座的多态性。总共检测到519个等位基因,每个基因座的等位基因数量范围为3至23。这35个微卫星基因座的PLC值范围为0.367至0.940。每个基因座的观察到的(H-o)和预期的杂合度(H-e)分别为0.233至1.000和0.438至0.943。 Bonferroni校正后,七个基因座明显偏离Hardy-Weinberg平衡(HWE),并且在各对基因座之间未发现明显的连锁不平衡(LD)。另外,在多假单胞菌的密切相关物种大假拟虾(Pseudosciaena crocea)中进行了跨物种扩增,以评估这些标记的适用性。这些多态性微卫星将为研究多动疟原虫和大隐疟原虫的遗传多样性和种群结构提供有用的工具。

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