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Levels and partitioning of genetic diversity of Camellia japonica(Theaceae) in Korea and Japan

机译:韩国和日本山茶的遗传多样性水平和分区

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We analyzed allozymes from 620 trees to estimate the levels of allozyme diversity within and genetic differentiation among populations of Camellia japonica in Korea and Japan. Both at the population and species levels, C. japonica (mean expected heterozygosity, H-e = 0.169 and 0.190) maintains high levels of genetic diversity. Although Korean populations of the species are located in edge of its distribution, they (0.209) harbor higher levels of genetic diversity than that found within populations in Japan (0.145). The mean G(ST) value among 16 populations (0.091) of C, japonica was similar to those among six Korean (0.055) and 10 Japanese populations (0.086). The results indicate that a low degree of allozyme differentiation between populations in Japan and Korea, though the land connection between the southern Korean peninsula and southern Japanese archipelagos no longer existed after the middle Pleistocene. There was no significant correlation between genetic distance and geographic distance, indicating that isolation by distance may not be a primary factor for shaping genetic structure among populations. Instead, genetic diversity and structure in populations of C. japonica may result from the balance between occasional gene flow and genetic drift.
机译:我们分析了620棵树的同工酶,以估计韩国和日本山茶种群内​​同工酶多样性水平和遗传分化。在种群和物种水平上,粳稻(平均预期杂合度,H-e = 0.169和0.190)都保持了高水平的遗传多样性。尽管该物种的朝鲜族种群位于其分布的边缘,但它们的遗传多样性水平(0.209)比日本种群内(0.145)更高。粳稻16个种群(0.091)中的平均G(ST)值与6个韩国种群(0.055)和10个日本种群(0.086)中的相似。结果表明,在中更新世之后,尽管朝鲜半岛南部和日本群岛之间的土地连接不再存在,但日韩人口之间的同工酶分化程度较低。遗传距离和地理距离之间没有显着相关性,表明按距离隔离可能不是塑造种群遗传结构的主要因素。相反,粳稻种群的遗传多样性和结构可能是偶然的基因流动与遗传漂移之间的平衡所致。

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