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Comparative studies on population genetic structure of two closely related selfing and outcrossing Zingiber species in Hainan Island

机译:海南岛两种密切相关自行性和Zingiber种群遗传结构的比较研究

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How mating system impacts the genetic diversity of plants has long fascinated and puzzled evolutionary biologists. Numerous studies have shown that self-fertilising plants have less genetic diversity at both the population and species levels than outcrossers. However, the phylogenetic relationships between species and correlated ecological traits have not been accounted for in these previous studies. Here, we conduct a comparative population genetic study of two closely related selfing and outcrossing Zingiber species, with sympatric distribution in Hainan Island, and obtain a result contrary to previous studies. The results indicate that selfing Z. corallinum can maintain high genetic diversity through differentiation intensified by local adaptation in populations across the species' range. In contrast, outcrossing Z. nudicarpum preserves high genetic diversity through gene exchange by frequent export of pollen within or among populations. Contrary to expectations, the major portion of genetic variation of outcrossing Z. nudicarpum may exist among populations, depending on the dispersal ability of pollen and seed. Our results also reveal that the main factor affecting population structure of selfing Z. corallinum is mountain ranges, followed by a moist climate, while that of outcrossing Z. nudicarpum is likely moisture, but not mountain ranges, due to gene flow via pollen.
机译:交配系统如何影响植物的遗传多样性,长期迷人和困惑的进化生物学家。众多研究表明,自肥植物在人口和物种水平上具有较少的遗传多样性而不是outcrossers。然而,在以前的研究中,尚未占物种与相关生态特征之间的系统发育关系。在这里,我们对海南岛进行了一个比较群体遗传学研究,对两种密切相关的自行性和突出的Zingiber种类,并获得了与以前的研究相反的结果。结果表明,自我Z.Corallinum可以通过局部适应在物种范围内的局部适应来维持高遗传多样性。相比之下,Z. Nudicarpum通过基因交换通过频繁出口在人口中或在人口中出口来保护高遗传多样性。与期望相反,根据花粉和种子的分散能力,群体中可能存在Z的主要部分。我们的研究结果还表明,影响自私Z.Corallinum人口结构的主要因素是山脉,随后是一种潮湿的气候,而Z.露珠的鼻腔很可能是由于通过花粉的基因流动的湿度,但不是山脉。

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