首页> 外文期刊>American Journal of BioScience >General and Specific Combing Ability of Maize (Zea mays L.) Inbred Line for Grain Yield and Yield Related Traits Using 88 Diallel Crosses
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General and Specific Combing Ability of Maize (Zea mays L.) Inbred Line for Grain Yield and Yield Related Traits Using 88 Diallel Crosses

机译:玉米(ZEA 5月L.)近红细的一般和特异性组合能力用于谷物产量和产量相关性状的88二十次交叉

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Combining ability is the genotype's ability to pass the desired character to the offspring. Hence, combining ability information is needed to determine the crossed pairs in the formation of hybrid varieties. Therefore, this study was conducted to estimate general and specific combining ability effects of maize inbred lines for yield and yield-related traits. Eight maize inbred lines were mated through a half diallel mating design (Griffing's Method IV, Model I). The resulting twenty-eight F_1 hybrids for twenty one characters were evaluated using Alpha-Lattice Design with three replications during 2018 main cropping season at Haramaya University Research Site (Raare). Genetic analysis of variance due to mean squares revealed significant differences for general combining ability (gca) and specific combining ability (sca) effects indicated the presence of additive as well as non additive gene effects in governing the inheritance of these traits. These results confirm the possible involvement of both additive and non-additive gene actions in the inheritance of these characters and can be improved either by recurrent selection or even by heterosis breeding methods like production of hybrids, synthetics and composites. However, relative magnitude of these variances indicated that additive gene effects were more prominent for most of the characters studied since the ratio of GCA:SCA were more than unity in most of the traits. Parental line L3 and L8 were good general combiner for grain yield and L1, L2, L6 and L7 are desirable for earliness. The better performing four crosses L3L6, L3L8, L2L5, and L6 L8 were good specific combiners for grain yield, which could be utilized for developing high yielding hybrid varieties as well as for exploiting hybrid vigor.
机译:结合能力是基因型将所需品格传递到后代的能力。因此,需要组合能力信息来确定杂交品种形成的交叉对。因此,该研究进行了估计玉米自交系对产量和产量相关性状的一般和特异性组合能力。通过半型拨号配合设计(Griffing的方法IV,Model i)交配八条玉米自交系。在Haramaya大学研究网站(Raare)的2018年主要种植季节,使用α-格子设计评估了二十八个字符的二十八个F_1杂交体。由于平均正方形引起的遗传分析显示了一般组合能力(GCA)和特定组合能力(SCA)效应的显着差异表明存在添加剂的存在以及治疗这些性状的遗传的非添加性基因效应。这些结果证实了添加剂和非添加剂基因作用在这些特征的遗传中的可能累及,并且可以通过经常性选择或甚至通过杂种,合成和复合材料的产生等杂种优化育种方法来改善。然而,这些差异的相对幅度表明,由于大多数GCA:SCA的比例在大多数特征中,大多数人物的大多数角色都是突出的添加基因效应。父母线L3和L8是谷物产量的良好一般组合器,并且L1,L2,L6和L7是期望的,用于较早性。表现良好的四十次交叉L3L6,L3L8,L2L5和L6 L8是籽粒产率的良好特异性组合器,其可用于开发高产杂交品种以及利用杂交活力。

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