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首页> 外文期刊>Ecology and Evolution >A comparative study of the population genetics of wild and cultivated populations of Paris polyphylla var. yunnanensis based on amplified fragment length polymorphism markers
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A comparative study of the population genetics of wild and cultivated populations of Paris polyphylla var. yunnanensis based on amplified fragment length polymorphism markers

机译:野生植物植物群体遗传学的比较研究。基于扩增的片段长度多态性标记的云南

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摘要

Paris polyphylla var. yunnanensis is one of the original plants used to make the traditional medicine Paridis Rhizoma. Wild individuals have been excessively collected in recent decades, and thus, it has become increasingly endangered. Cultivation is a major method for the conservation and sustainable utilization of its wild resources. In this study, amplified fragment length polymorphism markers were used in the genetic analysis of 15 wild and 17 cultivated populations of P.?polyphylla var. yunnanensis . This study revealed that cultivated populations possessed higher genetic diversity than wild ones at the species level ( H ?=?0.2636 vs. 0.2616, respectively). However, most of the genetic variation was found within populations for both of these groups (Φ ST ?=?18.83% vs. 19.39%). In the dendrogram produced using UPGMA, the 32 populations were divided into three groups (I, II, and III). In group II, both wild and cultivated populations were included, but remained in distinct clusters within this group, which showed the significant separation between the cultivated and wild populations. Furthermore, wild populations were also clustered into three subgroups (W‐I, W‐II, and W‐III), with an obvious geographic structure. In contrast, although cultivated populations were similarly placed in three subgroups (C‐I, C‐II, and C‐III), the latter two of these were not separated based on geography. Finally, the wild populations in Guizhou, China (W‐I), possessed higher genetic diversity than those in Yunnan (W‐II and W‐III). As P.?polyphylla var. yunnanensis is an endangered medicinal plant, the fact that it showed richer genetic diversity in its wild populations in Guizhou means that these should be regarded as priority areas for protection and used for provenance selection. Moreover, cultivated populations also showed high genetic variation, which might be attributed to them having originated from mixed provenances, indicating that screening for superior provenances should be carried out as soon as possible.
机译:巴黎polyphylla var。 Yunnanensis是用于制造传统医学的原始植物之一。近几十年来,野生个体已经过度收集,因此,它越来越濒临灭绝。培养是保护和可持续利用其野生资源的主要方法。在该研究中,扩增的片段长度多态性标记物用于15野生和17个培养群的P.?Polyphylla VAR的遗传分析。云南。本研究表明,培养种群具有比物种水平的野生遗传多样性更高的遗传多样性(H?= 0.2636 vs.0.2616)。然而,大多数遗传变异在这些基团中的两组(φST?= 18.83%与19.39%)中发现。在使用UPGMA产生的树枝图中,将32种群体分为三组(I,II和III)。在II族中,包括野生和培养的群体,但在该组内仍然存在于不同的簇中,这表明培养和野生群之间的显着分离。此外,野生种群也聚集成三个亚组(W-I,W-II和W-III),具有明显的地理结构。相反,虽然培养的群体类似地置于三个亚组(C-1,C-II和C-III)中,但是这些后两种基于地理不分开。最后,贵州(W-I)的野生种群拥有高于云南(W-II和W-III)的遗传多样性。作为p.?polyphylla var。 Yunnanensis是一个濒危药物植物,即它表明贵州野生群体中越来越丰富的遗传多样性意味着这些应该被视为保护的优先领域,并用于出处选择。此外,栽培种群也显示出高遗传变异,这可能归因于源自混合杂志,表明应尽快进行筛查。

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