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Quantitative Genetic Analysis of Agronomic and Morphological Traits in Sorghum, Sorghum bicolor

机译:高粱,双色高粱农艺和形态性状的定量遗传分析

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摘要

The productivity in sorghum is low, owing to various biotic and abiotic constraints. Combining insect resistance with desirable agronomic and morphological traits is important to increase sorghum productivity. Therefore, it is important to understand the variability for various agronomic traits, their heritabilities and nature of gene action to develop appropriate strategies for crop improvement. Therefore, a full diallel set of 10 parents and their 90 crosses including reciprocals were evaluated in replicated trials during the 2013-14 rainy and postrainy seasons. The crosses between the parents with early- and late-flowering flowered early, indicating dominance of earliness for anthesis in the test material used. Association between the shoot fly resistance, morphological and agronomic traits suggested complex interactions between shoot fly resistance and morphological traits. Significance of the mean sum of squares for GCA (general combining ability) and SCA (specific combining ability) of all the studied traits suggested the importance of both additive and non-additive components in inheritance of these traits. The GCA/SCA, and the predictability ratios indicated predominance of additive gene effects for majority of the traits studied. High broad-sense and narrow-sense heritability estimates were observed for most of the morphological and agronomic traits. The significance of reciprocal combining ability effects for days to 50% flowering, plant height and 100 seed weight, suggested maternal effects for inheritance of these traits. Plant height and grain yield across seasons, days to 50% flowering, inflorescence exsertion and panicle shape in the postrainy season showed greater specific combining ability variance, indicating the predominance of non-additive type of gene action/epistatic interactions in controlling the expression of these traits. Additive gene action in the rainy season, and dominance in the postrainy season for days to 50% flowering and plant height suggested G X E interactions for these traits.
机译:由于各种生物和非生物限制,高粱的生产率较低。将昆虫的抗药性与理想的农艺和形态学特征相结合对于提高高粱的生产力很重要。因此,重要的是要了解各种农艺性状的变异性,它们的遗传力和基因作用的性质,以制定适当的作物改良策略。因此,在2013-14雨季和雨季后的重复试验中,对一组由10个父母组成的完整的Diallel及其包括倒数在内的90个十字架进行了评估。早花与晚花的亲本之间的杂交早开花,表明所用测试材料的早期花期优势。蝇蝇抗性,形态和农艺性状之间的联系表明,蝇蝇抗性与形态性状之间存在复杂的相互作用。所有研究性状的GCA(一般结合能力)和SCA(特异性结合能力)的平方均值的意义表明,在这些性状的遗传中,加性和非加性成分均很重要。 GCA / SCA和可预测性比率表明,大多数研究性状的加性基因效应占主导地位。对于大多数形态和农艺性状,均观察到高广义和狭义遗传力估计值。到50%开花,植株高度和100种子重的天数的相互结合能力效应的重要性,暗示了母性效应对这些性状的遗传。整个季节,开花至50%的天数,开花后天的花序外露和穗形状的株高和籽粒产量表现出更大的特异性结合能力方差,表明在控制这些基因表达的过程中,非加性类型的基因作用/上位性相互作用占主导地位特质。在雨季,加性基因的作用,在雨后的几天中占主导地位,开花和植株高度达到50%的天数表明,这些性状具有G X E相互作用。

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