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Genetic Diversity and Population Structure of Siberian apricot (Prunus sibirica L.) in China

机译:中国西伯利亚杏(Prunus sibirica L.)的遗传多样性和种群结构

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摘要

The genetic diversity and population genetic structure of 252 accessions from 21 Prunus sibirica L. populations were investigated using 10 ISSR, SSR, and SRAP markers. The results suggest that the entire population has a relatively high level of genetic diversity, with populations HR and MY showing very high diversity. A low level of inter-population genetic differentiation and a high level of intra-population genetic differentiation was found, which is supported by a moderate level of gene flow, and largely attributable to the cross-pollination and self-incompatibility reproductive system. A STRUCTURE (model-based program) analysis revealed that the 21 populations can be divided into two main groups, mainly based on geographic differences and genetic exchanges. The entire wild Siberia apricot population in China could be divided into two subgroups, including 107 accessions in subgroup (SG) 1 and 147 accessions in SG 2. A Mantel test revealed a significant positive correlation between genetic and geographic distance matrices, and there was a very significant positive correlation among three marker datasets. Overall, we recommend a combination of conservation measures, with ex situ and in situ conservation that includes the construction of a core germplasm repository and the implement of in situ conservation for populations HR, MY, and ZY.
机译:利用10个ISSR,SSR和SRAP标记研究了21个西伯利亚李种群的252个材料的遗传多样性和种群遗传结构。结果表明,整个种群具有较高的遗传多样性,而HR和MY种群表现出很高的多样性。发现种群间遗传分化水平低和种群内遗传分化水平高,这由中等水平的基因流支持,并且在很大程度上归因于异花授粉和自交不亲和繁殖系统。一项结构分析(基于模型的程序)显示,这21个种群主要根据地理差异和遗传交流可分为两个主要群体。中国的整个野生西伯利亚杏种群可分为两个亚组,包括1个亚组(SG)1中的107份和SG 2中的147种中的一个。Mantel试验揭示了遗传和地理距离矩阵之间的显着正相关,并且存在一个三个标记数据集之间存在非常显着的正相关。总体而言,我们建议将保护措施与非原位和原位保护相结合,其中包括建立核心种质库和对HR,MY和ZY种群实施原位保护。

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