首页> 外文期刊>Journal of Fish Biology >Fine scale genetic population structure of the freshwater and Omono types of nine-spined stickleback Pungitius pungitius (L.) within the Omono River system, Japan
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Fine scale genetic population structure of the freshwater and Omono types of nine-spined stickleback Pungitius pungitius (L.) within the Omono River system, Japan

机译:日本Omono河系内的九旋刺背Pungitius pungitius(L.)的淡水和Omono类型的小规模遗传种群结构

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摘要

The fine scale geographic population structure of two types of nine-spined stickleback Pungitius pungitius (the widely distributed freshwater type and a local endemic, the Omono type) within the Omono River system, Japan, was investigated. A principalcomponents analysis of allele frequencies and neighbour-joining tree for pair-wise F_(ST) values, based on 10 allozyme loci, revealed that the Omono type was comprised of four regional groups with relatively high genetic divergence This grouping was also supported by hierarchical analysis of molecular variance (AMOVA) with a higher variance component among the regional groups, and by an exact test with significant genotypic differentiation for all sample pairs among the regional groups. Moreover, in the clustering of individuals using the Bayesian method, most of individuals in each regional group were assigned the corresponding cluster On the other hand, there were less pronounced regional groups of the freshwater type, although AMOVA, exact test forgenotypic differentiation and Bayesian analysis indicated genetic divergence between two sampling sites in lower reach of the Omono River and other sites. The results suggest that the Omono type represented an earlier colonization, with subsequent invasion of the freshwater type.
机译:研究了日本Omono河系统中两种类型的9针刺背Pungitius pungitius(分布广泛的淡水类型和本地特有的Omono类型)的精细尺度人口结构。基于10个同工酶基因座的成对F_(ST)值的等位基因频率和邻居连接树的主成分分析表明,Omono类型由四个具有较高遗传差异的区域组组成。在区域组中具有较高方差成分的分子方差分析(AMOVA),并且通过对区域组中所有样本对进行具有显着基因型差异的精确检验。此外,在使用贝叶斯方法进行的个体聚类中,每个区域组中的大多数个体都被分配了相应的聚类。另一方面,尽管AMOVA,基因型分化的精确检验和贝叶斯分析,但淡水类型的区域组不那么明显。表明在Omono河下游的两个采样点与其他站点之间的遗传差异。结果表明,Omono类型代表了较早的定居,随后入侵了淡水类型。

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