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首页> 外文期刊>Genetics and Molecular Research >Genetic diversity in wild Dipsacus chinensis populations from China based on ISSR markers
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Genetic diversity in wild Dipsacus chinensis populations from China based on ISSR markers

机译:基于ISSR标记的中国野生七叶草种群遗传多样性

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Wild Dipsacus chinensis plants in China have become endangered owing to over-harvesting and habitat fragmentation. We examined the genetic diversity and genetic structure of 90 individuals from three populations using inter-simple sequence repeat markers and found that 106 of 173 bands amplified by 22 informative and reliable primers were polymorphic. These findings correspond to a medium level of genetic diversity. At the species level, the estimates of parameters of genetic diversity were as follows: polymorphic loci (61.27%); effective number of alleles (1.3873); Nei’s genetic diversity (0.2202); Shannon’s information index (0.3235). At the population level, the estimates were polymorphic loci (9.53%); effective number of alleles (1.0419); Nei’s genetic diversity (0.0258); Shannon’s information index (0.0402). Nei’s coefficient of genetic differentiation was 0.8829, which is consistent with Shannon’s coefficient of genetic differentiation (0.8757). Most of the genetic variation existed among populations, and some differentiation may have resulted from habitat fragmentation and barriers to gene flow (gene flow = 0.0663). Combining our results with those of on-site field investigation, we conclude that the present genetic diversity and genetic structure of natural populations of D. chinensis have been strongly affected by harvesting and habitat fragmentation. We also propose strategies for the conservation of this plant.
机译:由于过度收获和生境破碎化,中国的野生双翅类植物已濒临灭绝。我们使用简单的序列重复标记检查了来自三个种群的90个个体的遗传多样性和遗传结构,发现由22种信息可靠的引物扩增的173条带中的106条具有多态性。这些发现对应于中等水平的遗传多样性。在物种一级,遗传多样性参数的估计如下:多态位点(61.27%);有效等位基因数(1.3873); Nei的遗传多样性(0.2202);香农的信息指数(0.3235)。在人口一级,估计为多态位点(9.53%);有效等位基因数(1.0419); Nei的遗传多样性(0.0258);香农的信息索引(0.0402)。 Nei的遗传分化系数为0.8829,与Shannon的遗传分化系数(0.8757)一致。大多数遗传变异存在于种群之间,并且某些分化可能是由于栖息地破碎和基因流动的障碍(基因流动= 0.0663)导致的。结合我们的研究结果和现场调查结果,我们得出结论,收获和生境破碎化强烈地影响了中华D自然种群的当前遗传多样性和遗传结构。我们还提出了保护该植物的策略。

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