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涅夫斯基(Nevski)的EST-SSR引物开发与遗传结构分析

EST-SSR Primer Development and Genetic Structure Analysis of Nevski.

作者信息

Li Zhen, Yun Lan, Gao Zhiqi, Wang Tian, Ren Xiaomin, Zhao Yan

机构信息

College of Grassland, Resources and Environment, Inner Mongolia Agricultural University, Hohhot, China.

Key Laboratory of Grassland Resources Ministry of Education, Hohhot, China.

出版信息

Front Plant Sci. 2022 Feb 28;13:837787. doi: 10.3389/fpls.2022.837787. eCollection 2022.

Abstract

is a perennial forage grass which plays an important role in soil and water conservation and ecological maintenance in cold and dry areas of temperate regions. In , a variety of biotic and abiotic stress related genes have been used in crop improvement, indicating its agronomic, economic, forage, and breeding value. To date, there have been few studies on the genetic structure of . Here, the genetic diversity and population structure of were analyzed by EST-SSR molecular markers to evaluate the genetic differentiation related to tillering traits in germplasm resources. The results showed that 400 simple sequence repeat (SSR) loci were detected in 2,020 differentially expressed tillering related genes. A total of 344 scored bands were amplified using 103 primer pairs, out of which 308 (89.53%) were polymorphic. The Nei's gene diversity of 480 individuals was between 0.092 and 0.449, and the genetic similarity coefficient was between 0.5008 and 0.9111, with an average of 0.6618. Analysis of molecular variance analysis showed that 93% of the variance was due to differences within the population, and the remaining 7% was due to differences among populations. materials were clustered into five groups based on population genetic structure, principal coordinate analysis and unweighted pair-group method with arithmetic means (UPGMA) analysis. The results were similar between clustering methods, but a few individual plants were distributed differently by the three models. The clustering results, gene diversity and genetic similarity coefficients showed that the overall genetic relationship of individuals was relatively close. A Mantel test, UPGMA and structural analysis also showed a significant correlation between genetic relationship and geographical distribution. These results provide references for future breeding programs, genetic improvement and core germplasm collection of .

摘要

是一种多年生牧草,在温带寒冷干旱地区的水土保持和生态维护中发挥着重要作用。在[具体情况未提及]中,多种与生物和非生物胁迫相关的基因已被用于作物改良,表明了其农艺、经济、饲用和育种价值。迄今为止,关于[该植物名称未提及]遗传结构的研究较少。在此,通过EST-SSR分子标记分析了[该植物名称未提及]的遗传多样性和群体结构,以评估其种质资源中与分蘖性状相关的遗传分化。结果表明,在2020个差异表达的分蘖相关基因中检测到400个简单序列重复(SSR)位点。使用103对引物扩增出总共344条可计分条带,其中308条(89.53%)具有多态性。480个个体的Nei基因多样性在0.092至0.449之间,遗传相似系数在0.5008至0.9111之间,平均为0.6618。分子方差分析表明,93%的变异归因于群体内差异,其余7%归因于群体间差异。基于群体遗传结构、主坐标分析和非加权组平均法(UPGMA)分析,将[该植物名称未提及]材料聚类为五组。聚类方法之间的结果相似,但少数单株在三种模型中的分布有所不同。聚类结果、基因多样性和遗传相似系数表明,[该植物名称未提及]个体的总体遗传关系相对密切。Mantel检验、UPGMA和结构分析也表明遗传关系与地理分布之间存在显著相关性。这些结果为[该植物名称未提及]未来的育种计划、遗传改良和核心种质收集提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb71/8919075/83981ab4a5fa/fpls-13-837787-g001.jpg

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