首页> 外文期刊>South African Journal of Plant and Soil >Test cross performance and combining ability of newly introduced quality protein maize (Zea mays) inbred lines for grain yield and agronomic traits evaluated in mid-altitude agro-ecological zones of Ethiopia
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Test cross performance and combining ability of newly introduced quality protein maize (Zea mays) inbred lines for grain yield and agronomic traits evaluated in mid-altitude agro-ecological zones of Ethiopia

机译:测试交叉性能和新引进质量蛋白玉米(ZEA 5月)血液产量和农艺性状的结合能力,在埃塞俄比亚中空农业生态区评价的农艺性状

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摘要

Development of quality protein maize (QPM) helps to reduce human malnutrition in areas where maize is the major protein source in the diet. The objective of this study was to estimate combining ability effects of QPM inbred lines for grain yield and yield-related traits. Twenty-one newly introduced QPM inbred lines were crossed with four single cross testers in a line x tester mating design and resulted in 84 F, progenies. These F, hybrids, including four checks, were evaluated in an 8 x 11 alpha lattice design with two replications at four locations during 2016. Mean squares due to location, crosses, general combining ability (GCA) and specific combining ability (SCA) were significant for most traits. However, the contributions of GCA sum of squares to the variation among the hybrids were larger than SCA sum of squares, suggesting that the traits were controlled predominantly by additive gene effects. Among the inbred lines, L3, L5 and L10 showed positive and significant GCA effects for grain yield and other agronomic traits. The lines can be used in synthetic variety development. Among crosses, only L3 x T3, L9 x T1 and L15 x T2 revealed positive and significant SCA effects for grain yield, implying the presence of heterosis in these particularcrosses.
机译:质量蛋白质玉米(QPM)的发展有助于减少玉米是饮食中主要蛋白质来源的地区的人类营养不良。本研究的目的是估计QPM自交系对籽粒产量和产量相关性状的组合能力影响。二十一个新引进的QPM自交系与四个单一交叉测试仪交叉,在X测试仪交配设计中,导致84°F,后代。这些F,包括四个检查的杂交种,在2016年的四个位置进行了两个复制,在8×11α格子设计中进行了评估。由于位置,交叉,一般组合能力(GCA)和特定的组合能力(SCA),平均正方形是大多数特征都很重要。然而,GCA方块的总和对杂种中变化的贡献大于SCA方块的SCA和,表明该特征是通过添加剂基因效应的主要控制。在近交系中,L3,L5和L10显示出对籽粒产量和其他农艺性状的阳性和显着的GCA效应。这些线可用于合成品种开发。在交叉口中,只有L3 x T3,L9 x T1和L15 x T2显示出对籽粒产量的正显着和显着的SCA效应,暗示这些特定段落中的杂种物的存在。

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