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Evaluation of Diversity among Soybean Genotypes via Yield Attributing Traits and SSR Molecular Markers

机译:通过产量归因于产量归因于SSR分子标记评价大豆基因型多样性

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Introduction: As an important source of nutrients to humans and animals, soybean is considered to be a major crop.Objective: The present study has been executed to identify diverse soybean genotypes on account of different morpho-physiological and microsatellite molecular markers.Study Design: Data for Morpho-physiological traits were recorded from experiment conducted under field conditions in RBD design whereas molecular work was conducted in Laboratory.Place and Duration of the Study: The present study was conducted at College of Agriculture, Gwalior, Rajmata Vijayaraje Scindia Krishi Vishwa Vidyalaya, Gwalior, M.P., India during Kharif 2018-19.Methodology: The study was conducted to document different morphological and physiological traits related to the yield and its attributing traits in soybean. Total 32 microsatellite markers were also used in laboratory to analyze the variability among soybean genotypes.Results: Morpho-physiological analysis among 53 genotypes revealed the presence of considerable level of variability. Phylogenetic tree based on morpho-physiological traits grouped the genotypes into major and minor cluster. Major cluster had fifty genotypes while minor cluster had only three genotypes. Among polymorphic 32 microsatellite markers, the highest genetic diversity (0.66) was recorded in Satt520 whilst lowest (0.037) was in Satt557 with an average of 0.35. The highest PIC value was 0.59 prearranged by Satt520 and lowest 0.036 by Satt557. An average major allele frequency was 0.69 while, an average PIC value was 0.32. Microsatellite markers-based data also grouped the genotypes into one major and one minor cluster.Conclusion: Molecular analysis based on microsatellite markers confirms the presence of genetic variability among genotypes under the investigation. Data obtained in the present investigation may contribute towards improvement of soybean genotypes to develop high yielding varieties by considering diverse genotypes with good agronomical traits in hybridization programme.
机译:介绍:作为人类和动物的重要营养素来源,大豆被认为是主要的作物。目前的研究是针对不同的静脉生理和微卫星分子标记来确定目前的大豆基因型。研究:从RBD设计中的现场条件下进行的实验记录了语气生理性状的数据,而分子工作在实验室进行.Place和研究持续时间:本研究在农业学院,Gwalior,Rajmata Vijayaraje Scindia Krishi Vishwa Vidyalaya进行,Gwalior,MP,印度在Kharif 2018-19期间。方法:该研究进行了与大豆在大豆中的产量及其归因于产量相关的不同形态和生理性状。在实验室中使用32种微卫星标记物,以分析大豆基因型之间的变异性。结果:53种基因型中的静脉生理分析显示出相当大的变异性。基于静脉生理性状的系统发育树将基因型分为主要和次要聚类。主要群集有五十个基因型,而轻微的聚类只有三种基因型。在多晶型微卫星标记中,最高遗传多样性(0.66)在Satt520中记录,而最低(0.037)在Satt557中,平均为0.35。最高的PIC值为0.59,SATT520通过Satt557预先放置和最低0.036。平均主要等位基因频率为0.69,而平均照片值为0.32。基于微卫星标志物的数据还将基因型分为一个主要和一个次要聚类。结论:基于微卫星标记的分子分析证实了调查下基因型中的遗传变异性存在。本研究中获得的数据可能会促进改善大豆基因型,通过考虑杂交计划中具有良好的农业性状的不同基因型来发展高产品种。

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