Assessment of genetic diversity of cotton genotypes for various economic traits against cotton leaf curl disease (CLCuD).

M. Javed, S. Hussain, M. Baber
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引用次数: 12

Abstract

In Pakistan, cotton crop has been under enormous threat of cotton leaf curl disease (CLCuD) over the last four decades. In order to estimate genetic diversity in cotton germplasm CLCuD resistance, we assessed 100 cotton genotypes for their CLCuD resistance/tolerance and other related agronomical traits. Various statistical analytical tools, including correlation analysis, cluster analysis, and principal component analysis (PCA), were used to select the best genotypes. These genotypes can be used in future breeding programs to generate CLCuD resistant varieties. The same set of procedures could be utilized for other diseases in other crops. CLCuD incidence showed a significant negative genotypic correlation with yield-contributing traits followed by a significant negative association for phenotypic correlation. The seed cotton yield showed significant positive genotypic and phenotypic correlations with plant height, number of bolls per plant, and boll weight. From the PCA we identified five principal components (PCs) that explained a significant amount of the variance among the variables, which may be used for selection of cotton genotypes with CLCuD resistance. Of the five PCs, the first four contributed more towards the total variability and had eigenvalues greater than one. The cluster analysis showed that the genotypes in one of the clusters performed particularly well with respect to CLCuD tolerance. These genotypes can be utilized for development of varieties with increased CLCuD tolerance.
棉花抗卷曲病(CLCuD)各经济性状基因型遗传多样性评价
在过去的40年里,巴基斯坦棉花作物一直受到棉花卷曲病(CLCuD)的巨大威胁。为了评估棉花种质资源抗CLCuD的遗传多样性,我们对100个棉花基因型的CLCuD抗性/耐受性及其他相关农艺性状进行了评估。采用相关分析、聚类分析、主成分分析等统计分析工具筛选最佳基因型。这些基因型可用于未来的育种计划,以产生抗CLCuD的品种。同样的一套程序也可用于其他作物的其他病害。CLCuD发病率与产量性状呈显著负相关,与表型相关呈显著负相关。籽棉产量与株高、单株铃数、铃重呈显著的正基因型和表型相关。从主成分分析中,我们发现5个主成分(PCs)解释了各变量间的显著差异,可用于棉花抗CLCuD基因型的选择。在五个pc中,前四个pc对总变异性的贡献更大,并且特征值大于1。聚类分析表明,其中一个聚类的基因型在CLCuD耐受性方面表现得特别好。这些基因型可用于培育耐CLCuD的品种。
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