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首页> 外文期刊>African Journal of Biotechnology >Molecular diversity analysis in selected fodder and dual purpose oat (Avena sativa L.) genotypes by using random amplified polymorphic DNA (RAPD)
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Molecular diversity analysis in selected fodder and dual purpose oat (Avena sativa L.) genotypes by using random amplified polymorphic DNA (RAPD)

机译:利用随机扩增多态性DNA(RAPD)对选定的饲料和两用燕麦(Avena sativa L.)基因型进行分子多样性分析

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Genetic variability among 15 oat genotypes comprising fodder and dual purpose oat varieties?from different geographical regions was analyzed by random amplified polymorphic DNA (RAPD) marker method in Department of Genetics and Plant Breeding, College of Agriculture, Pant University of Agriculture and Technology (G.B.P.U.A. & T.), Pantnagar. The results show appreciably high genetic diversity among the oat genotypes studied. Fifteen (15) primers selected from 20 RAPD primers could amplify 259 clear and identifiable bands, of which 250 bands were polymorphic, accounting for 96.52% genetic polymorphism. All the oat genotypes studied could be distinctly divided into two major groups with the genetic distance level at 0.46 by cluster analysis based on the Jaccard’s coefficient of similarity. The cluster break indicated sufficient genetic variability among the genotypes. Clustering pattern of the varieties appeared such that it can be grouped in the genotypes suitable for the fodder purpose and the dual purpose varieties separately. Several polymorphic bands were also found in different genotypes which helped in molecular diversity analysis of these genotypes. The results found are encouraging and indicate that RAPD technique is an easy, quick and reliable technique used for molecular diversity analysis for preliminary selection.
机译:在潘特农业科技大学农学院遗传与植物育种系,通过随机扩增多态DNA(RAPD)标记方法分析了来自不同地理区域的15种燕麦基因型,包括饲料和两用燕麦品种的遗传变异性。 &T。),Pantnagar。结果显示燕麦基因型之间遗传多样性较高。从20条RAPD引物中选择的十五(15)条引物可扩增259条清晰可辨的条带,其中250条条带为多态性,占96.52%的遗传多态性。根据Jaccard的相似系数,通过聚类分析,可以将研究的所有燕麦基因型分为两大类,遗传距离水平为0.46。簇断裂表明基因型之间足够的遗传变异性。品种的聚类模式出现,因此可以将其分别分为适合饲料目的和双重目的品种的基因型。在不同的基因型中还发现了多个多态性条带,这有助于对这些基因型进行分子多样性分析。发现的结果令人鼓舞,表明RAPD技术是一种用于分子多样性分析以进行初步选择的简便,快速和可靠的技术。

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