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Genetic diversity analysis of indigenous turmeric genotypes using horticultural markers

机译:利用园艺标记对本地姜黄基因型进行遗传多样性分析

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摘要

The genetic diversity among 25 turmeric genotypes was evaluated for 18 horticultural traits. Ward's minimum variance cluster analysis based on squared Euclidian's distance on different traits clearly separated six clusters. The maximum intra-cluster distance was observed in cluster III (68.89) followed by cluster I (51.15), on the other hand, the highest Euclidean's inter-cluster distance was observed between clusters I and VI (332.26) followed by clusters II and III (205.26). The highest percent contribution towards genetic divergence was noticed with days to maturity followed by curcumin content. Based on principal component analysis (PCA), the first five components explained 89.83% of total genetic variation. As a result, genetically diverse genotypes could be identified, increasing the usefulness of genotype collections by broadening the genetic base of turmeric and to utilize them in crop improvement programmes through direct selection.
机译:评估了18个园艺性状中25个姜黄基因型之间的遗传多样性。基于对不同性状的欧几里德距离平方的Ward最小方差聚类分析清楚地分离出六个聚类。在群集III中观察到最大群集内距离(68.89),然后是群集I(51.15),另一方面,在群集I和VI之间观察到了最高的欧几里得群集间距离(332.26),之后是群集II和III。 (205.26)。到成熟的几天,其次是姜黄素含量,注意到对遗传差异贡献最高。根据主成分分析(PCA),前五个成分占总遗传变异的89.83%。结果,可以鉴定出遗传多样的基因型,通过扩大姜黄的遗传基础并通过直接选择将其用于作物改良计划中,从而增加了基因型收集的有用性。

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