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Genetic structure and diversity of natural and domesticated populations of Citrus medica L. in the Eastern Himalayan region of Northeast India

机译:印度东北喜马拉雅山东部柑桔自然和驯化种群的遗传结构和多样性

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摘要

Citron (Citrus medica L.) is a medicinally important species of citrus native to India and occurs in natural forests and home gardens in the foothills of the eastern Himalayan region of northeast India. The wild populations of citron in the region have undergone rapid decline due to natural and anthropogenic disturbances and most of the remaining individuals of citron are found in fragmented natural forests and home gardens in the region. In order to assess the genetic structure and diversity of citron in wild and domesticated populations, we analyzed 219 individuals of C. medica collected from four wild and eight domesticated populations using microsatellite markers. The genetic analysis based on five polymorphic microsatellite loci revealed an average of 13.40 allele per locus. The mean observed and expected heterozygosity values ranged between 0.220–0.540 and 0.438–0.733 respectively among the wild and domesticated populations. Domesticated populations showed close genetic relationships as compared to wild populations and pairwise Nei's genetic distance ranged from 0.062 to 2.091 among wild and domesticated populations. Analysis of molecular variance (AMOVA) showed higher genetic diversity among‐ than within populations. The analysis of population structure revealed five groups. Mixed ancestry of few individuals of different populations revealed exchange of genetic materials among farmers in the region. Citron populations in the region show high genetic variation. The knowledge gained through this study is invaluable for devising genetically sound strategies for conservation of citron genetic resources in the region.
机译:柚子(Citrus medica L.)是印度药用的重要柑橘类物种,存在于印度东北部喜马拉雅山麓地区的天然森林和家庭花园中。由于自然和人为干扰,该地区的柚子野生种群迅速减少,其余大多数柚子个体分布在该地区零碎的天然森林和家庭花园中。为了评估野生和驯化种群中柚子的遗传结构和多样性,我们使用微卫星标记分析了从四个野生和八个驯化种群中收集到的219株C.medica。基于五个多态性微卫星基因座的遗传分析显示,每个基因座平均有13.40个等位基因。在野外和家养种群中,平均观察到的杂合度和预期的杂合度分别在0.220-0.540和0.438-0.733之间。与野生种群相比,驯养种群显示出密切的遗传关系,而野生和驯养种群之间成对的Nei遗传距离在0.062至2.091之间。分子变异分析(AMOVA)显示,种群间的遗传多样性高于种群内的遗传多样性。人口结构分析发现有五个群体。不同种族的少数人的混合血统揭示了该地区农民之间遗传物质的交换。该地区的柚子种群遗传变异高。通过这项研究获得的知识对于制定遗传上合理的策略来保护该地区的柚子遗传资源具有不可估量的价值。

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