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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Analysis of population structure and genetic diversity in an exotic germplasm collection of Eleusine coracana (L.) Gaertn. using genic-SSR markers
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Analysis of population structure and genetic diversity in an exotic germplasm collection of Eleusine coracana (L.) Gaertn. using genic-SSR markers

机译:Eleusine Coracana(L.)Gaertn的异乎寻常种质收集中的人口结构和遗传多样性分析。 使用Genic-SSR标记

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Finger millet (Eleusine coracana (L.) Geartn.) is one of the important small millets serves as a food security crop because of its high nutritional values. The complex tetraploid genome of finger millet requires a large number of informative, functional DNA markers for different applications in genetics and breeding. Yet, less number of simple sequence repeat (SSR) markers have been developed from expressed sequence tags in finger millet. In the present study, 56 new genic SSR markers were developed from publicly available drought related ESTs. The 43 polymorphic markers were used to evaluate polymorphism, revealed a range of PIC value 0.41 to 0.79. Our results suggest that, analyzed genotypes have high genetic diversity with an average gene diversity (h) of 0.176 and Shannon's information index (I) of 0.315. We conclude that there was a higher gene exchange within populations, by the value of overall gene flow (Nm) of 0.7721. The unweighted pair group method with arithmetic mean and neighbor joining dendrogram generated three main clusters to differentiate genotypes and these results were also confirmed by PCA and PCoA analysis. The high genetic diversity (77%) was found within the populations in the analysis of molecular variance. A Bayesian model-based cluster analysis evidenced a high extent of admixture between the gene pools from the different geographical origins. Population based cluster analyses pointed out a strong pattern of 'isolation by distance'. Overall, these results underscored that this study showed a significantly high level of polymorphism, adequate genetic diversity and population structure which expand the modern genetic resources and its utility in various applications in genetics and genomics including association mapping and breeding.
机译:手指小米(Eleusine Coracana(L.)Geartn。)是由于其高营养价值的重要小米作为食品安全作物之一。手指小米的复杂四倍体基因组需要大量的信息,功能性DNA标记,用于遗传和繁殖中的不同应用。然而,已经从手指小米中的表达的序列标签开发了少量简单的序列重复(SSR)标记。在本研究中,56个新的Genic SSR标记从公共干旱相关的EST开发。使用43种多态性标记物来评估多态性,揭示了0.41至0.79的PIC值范围。我们的研究结果表明,分析的基因型具有高遗传多样性,平均基因多样性(H)为0.176,香农信息指数(i)为0.315。我们得出结论,通过0.7721的总体基因流量(NM)的价值,群体中存在更高的基因交换。具有算术平均值和邻居连接树木的未加权对组方法产生了三种主要簇,以区分基因型,并且这些结果也得到了PCA和PCOA分析。在分子方差分析的群体中发现了高遗传多样性(77%)。基于贝叶斯模型的聚类分析证明了来自不同地理起源的基因库之间的高度相加。基于人口的集群分析指出了强烈的“通过距离隔离”模式。总体而言,这些结果强调了这项研究表明,在遗传学和基因组学中的各种应用中,扩大了现代遗传资源及其效用,包括关联映射和繁殖的各种应用中的多态性,适当的遗传多态性和人口结构。

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