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首页> 外文期刊>BMC Evolutionary Biology >Genetic variation and population structure of clonal Zingiber zerumbet at a fine geographic scale: a comparison with two closely related selfing and outcrossing Zingiber species
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Genetic variation and population structure of clonal Zingiber zerumbet at a fine geographic scale: a comparison with two closely related selfing and outcrossing Zingiber species

机译:克隆Zingiber Zeerumbet的遗传变异与群体结构,在精细的地理规模中:与两种密切相关自行性和传递Zingiber种的比较

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There has always been controversy over whether clonal plants have lower genetic diversity than plants that reproduce sexually. These conflicts could be attributed to the fact that few studies have taken into account the mating system of sexually reproducing plants and their phylogenetic distance. Moreover, most clonal plants in these previous studies regularly produce sexual progeny. Here, we describe a study examining the levels of genetic diversity and differentiation within and between local populations of fully clonal Zingiber zerumbet at a microgeographical scale and compare the results with data for the closely related selfing Z. corallinum and outcrossing Z. nudicarpum. Such studies could disentangle the phylogenetic and sexually reproducing effect on genetic variation of clonal plants, and thus contribute to an improved understanding in the clonally reproducing effects on genetic diversity and population structure. The results revealed that the level of local population genetic diversity of clonal Z. zerumbet was comparable to that of outcrossing Z. nudicarpum and significantly higher than that of selfing Z. corallinum. However, the level of microgeographic genetic diversity of clonal Z. zerumbet is comparable to that of selfing Z. corallinum and even slightly higher than that of outcrossing Z. nudicarpum. The genetic differentiation among local populations of clonal Z. zerumbet was significantly lower than that of selfing Z. corallinum, but higher than that of outcrossing Z. nudicarpum. A stronger spatial genetic structure appeared within local populations of Z. zerumbet compared with selfing Z. corallinum and outcrossing Z. nudicarpum. Our study shows that fully clonal plants are able not only to maintain a high level of within-population genetic diversity like outcrossing plants, but can also maintain a high level of microgeographic genetic diversity like selfing plant species, probably due to the accumulation of somatic mutations and absence of a capacity for sexual reproduction. We suggest that conservation strategies for the genetic diversity of clonal and selfing plant species should be focused on the protection of all habitat types, especially fragments within ecosystems, while maintenance of large populations is a key to enhance the genetic diversity of outcrossing species.
机译:无论克隆植物是否具有比性行为繁殖的植物,克隆植物是否具有较低的遗传多样性竞争。这些冲突可能归因于以下事实,即少数研究已经考虑了性复制植物的交配系统及其系统发育距离。此外,这些先前研究中的大多数克隆植物定期产生性后代。在这里,我们描述了在微克隆Zerumbet的局部群体内和局部群体之间以及微观图中的局部群体之间和分化的研究,并将结果与​​密切相关的自拍Z. corallinum和oudicarpum的结果进行比较。这些研究可以解开克隆植物遗传变异的系统发育和性繁殖影响,从而有助于改善遗传多样性和人口结构的克隆再现影响。结果表明,克隆Z.Zerumbet的局部群体遗传多样性的水平与Outcross Z. nudicarpum的肝脏遗传多样性相当。然而,克隆Z.Zerumbet的微细胞遗传多样性的水平与自拍Z. corallinum的微细胞型且甚至略高于Z,Z. nudicarpum略高。克隆Z的局部群体的遗传分化显着低于自析Z. corallinum的群体,但高于Outcrossing Z. nudicarpum的血管瘤。与自析Z.Corallinum和Z,Z.Texcarpum相比,Z.Zerumbet的当地群体中出现了更强的空间遗传结构。我们的研究表明,完全克隆的植物不仅能够保持植物的群体内遗传多样性高水平,而且还可以维持高水平的微观影像遗传多样性,如自我植物物种,可能是由于躯体突变的积累并且缺乏性繁殖能力。我们建议克隆和自行植物物种的遗传多样性的保护策略应重点关注保护所有栖息地类型,特别是生态系统内的碎片,而大大种群的维护是增强突出物种遗传多样性的关键。

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