Principal component analysis for yield and quality traits of coloured rice (Oryza sativa L.)

K. S. Singh, Y. Suneetha, D. Raja, T. Srinivas
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引用次数: 1

Abstract

The present investigation was undertaken with 33 coloured and white rice genotypes to estimate genetic divergence of the genotypes for yield and quality traits. The study involved seven red pericarp, eight black pericarp and 17 white rice genotypes, in addition to the check, BPT 5204. Principal component analysis was utilized to evaluate the variation and to estimate the relative contribution of various traits for total variability. Results revealed five principal components with eigen value > 1. These components contributed for a total variability of 78.2632 per cent. Component 1 (PC 1) had contributed maximum of 34.9423 per cent while PC 2 had contributed to 18.7909 per cent, PC 3 had contributed 11.2637 per cent, PC 4 had contributed 6.9756 and PC 5 had contributed to 6.2906 towards the total variability. The characters, namely, milling per cent, iron content, plant height and head rice recovery were observed to explain maximum variance in PC 1. The results of 2D scatter diagram revealed Kakirekalu and BPT 5204 genotypes to be most diverse. Hybridization of these diverse genotypes is therefore predicted to result in desirable coloured transgressive segregants.
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彩稻产量与品质性状的主成分分析
本研究对33个彩色和白米基因型进行了研究,以估计产量和品质性状基因型的遗传差异。该研究涉及7种红果皮、8种黑果皮和17种白米基因型,此外还有BPT 5204。利用主成分分析评价变异,估计各性状对总变异的相对贡献。结果显示特征值> 1的主成分有5个。这些组成部分贡献了78.2632%的总变异性。组成部分1 (pc1)贡献了最大的34.9423%,而pc2贡献了18.7909%,pc3贡献了11.2637%,pc4贡献了6.9756,pc5贡献了6.2906。碾磨率、铁含量、株高和抽穗回收率是解释pc1变异最大的性状。2D散点图结果显示Kakirekalu和BPT 5204基因型差异最大。因此,预测这些不同基因型的杂交将产生理想的有色越界分离。
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