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Molecular variation and population structure in endangered Limoniumbicolor: genetic diversity of microsatellite markers and amplified fragment length polymorphism analysis

机译:濒危褐煤中的分子变异和群体结构:微卫星标志物的遗传多样性和扩增的片段长度多态性分析

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摘要

Knowledge and analysis of the genetic structure of an endangered species is important for its conservation and evolutionary process. Simple sequence repeats (SSRs) and amplified fragment length polymorphisms (AFLPs) were used in evaluation of the genetic diversity and population differentiation in Limoniumbicolor (Plumbaginaceae), an endangered herb with high medicinal and horticulture value. A total of 117 alleles were detected with an average 5.85 alleles per locus using SSR and 222 bands from AFLP were amplified in six populations. It was found that L. bicolor was characterized by high levels of genetic polymorphism (100 and 83.78%), low levels of total genetic diversity (Ht= 0.2824 and 0.2424), and moderate degrees of genetic differentiation among populations (phi ST= 0.284 and 0.251). Analysis of molecular variance (AMOVA) revealed that the main variation component existed within populations (71.56%; 74.93%) rather than among populations (28.44%; 25.07%). Four main clusters were displayed in the UPGMA using TFPGA, which was consistent with the result of principal coordinate analysis (PCA) using NTSYS. Mutations or infrequent gene flow among populations can increase the plant slowly, thus in situ conservation policies should be implemented first for effective and sustainable development. At the same time, ex situ measures, such as those individuals with rare alleles, to maintain the relationships between individuals and populations are also proposed.
机译:对濒危物种的遗传结构的知识和分析对于其保护和进化过程很重要。简单的序列重复(SSR)和扩增的片段长度多态性(AFLPS)用于评估LimiNiumBicolor(PlumbagiCeae)中的遗传多样性和人口分化,具有高药用和园艺价值的濒危药草。使用SSR的平均每位基因座,使用SSR和来自AFLP的222个带,在六个群体中扩增了总共5.85个等位基因。发现L.Bicolor的特征在于高水平的遗传多态性(100和83.78%),总遗传多样性低水平(HT = 0.2824和0.2424),群体中的中等程度的遗传分化(phi st = 0.284 0.251)。分子方差分析(AMOVA)显示,群体中存在的主要变异分量(71.56%; 74.93%)而不是群体(28.44%; 25.07%)。使用TFPGA在UPGMA中显示四个主要集群,这与使用NTSYS的主坐标分析(PCA)的结果一致。群体中的突变或少量的基因流动可以缓慢增加植物,因此应首先实施原地保护政策以获得有效和可持续的发展。同时,还提出了诸如具有罕见等位基因的人,以维持个人和人口之间的关系的措施。

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