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Combining Ability And Heterosis For Some Quantitative Traits In Experimental Maize Hybrids

机译:玉米杂交种一些数量性状的配合力和杂种优势

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In rabi season 2012, six diversed maize inbred lines were crossed in all possible combinations without reciprocals by using a half diallel mating design to obtain 15 single cross. Inbred parents and their F1 single crosses with a check were evaluated in rabi season 2013 to evaluate the role of general and specific combining ability and heterosis for some quantitative traits. Significant general combining ability variances was observed only for cob height and specific combining ability variances were observed for plant height, cob height, cob length, cob girth, number of kernels per cob, cob weight and hundred grain weight. The GCA/SCA ratio was less than unity for all studied traits except shelling percentage; this means that these traits are pre-dominantly controlled by non-additive gene action. Based on GCA estimates, it could be concluded that the best combiners were ML01, ML05 and ML29 inbred lines for most of the studied traits. This result indicated that these inbred lines could be considered as good combiners for improving these traits. Significant positive SCA effects were found for all studied traits except number of kernels per row and shelling percentage. Based on SCA effects, it could be concluded that the crosses ML01×ML02, ML02×ML05, ML02×ML29 and ML05×ML15 could be exploited by the maize breeders to increase maize yield. Three F1 hybrids such as ML02×ML15, ML02×ML29 and ML05×ML15 proved to be the outstanding hybrids to immediate further steps for commercial cultivation. In a conclusive decision the F1 hybrid, ML02×ML29 was the best combination as evaluated through combining ability and standard heterosis.
机译:在2012年的狂犬病季节中,通过使用半拨号配对设计,将六种不同的玉米自交系以所有可能的组合进行了杂交,互不影响,获得了15个单交。在2013年的狂犬病季节中,对近交亲本及其F 1 单亲杂交进行了评估,以评估一般和特异性结合能力以及杂种优势对某些数量性状的作用。仅在穗轴高度上观察到显着的一般结合能力方差,在植物高度,穗轴高度,穗轴长度,穗轴周长,每根穗轴的粒数,穗轴重量和百粒重中观察到特定的结合能力方差。除炮击百分率外,所有研究性状的GCA / SCA比均小于1。这意味着这些性状主要受非累加基因作用的控制。根据GCA估计,可以得出结论,对于大多数研究的性状,最佳的组合物是ML01,ML05和ML29自交系。该结果表明,这些近交系可以被认为是改善这些性状的良好组合。除每行果粒数和脱壳百分比外,所有研究性状均发现了显着的正SCA效应。基于SCA效应,可以得出结论,玉米育种者可以利用杂交品种ML01×ML02,ML02×ML05,ML02×ML29和ML05×ML15来提高玉米产量。三个F 1 杂种,如ML02×ML15,ML02×ML29和ML05×ML15,被证明是立即进行商业种植的杰出杂种。通过结合能力和标准杂种优势评估,F 1 杂种ML02×ML29是最佳组合。

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