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首页> 外文期刊>Crop science >Combining Ability of Yellow Lines Derived from CIMMYT Populations for Use in Subtropical and Tropical Midaltitude Maize Production Environments
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Combining Ability of Yellow Lines Derived from CIMMYT Populations for Use in Subtropical and Tropical Midaltitude Maize Production Environments

机译:来自CIMMYT种群的黄系在亚热带和热带中海拔玉米生产环境中的配合力

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The introduction and utilization of new maize (Zea mays L.) germplasm from sources, such as the International Maize and Wheat Improvement Center (CIMMYT), can be valuable for broadening the genetic base of breeding populations through the introgression of new alleles. Twenty-five inbred lines, derived from CIMMYT breeding populations, were selected on the basis of grain color, resistance to turcicum leaf blight, and per se line performance in Yunnan. To use the lines effectively, information on their performance in hybrid combinations and on general combining ability (GCA) and specific combining ability (SCA) needed to be obtained. The objectives of this study were (i) to evaluate these lines for grain yield (GY) in hybrid combinations and determine GCA of parental lines and SCA of crosses between the 25 introduced lines and six testers using North Carolina Design II; and (ii) to classify the lines into different maize heterotic groups. The field testing at three locations identified crosses with lines from Cateto and Population 147 (P147) as having significantly higher GY than those from SA3 and other introduced populations, and the high GY was largely attributable to their high positive GCA effects. Lines from the same population were not necessarily classified into same maize heterotic group. Lines selected at Ssub4/sub or a later generation would be expected to have more stable GCA effects than lines selected in earlier generations.
机译:从国际玉米和小麦改良中心(CIMMYT)等来源引进和利用新的玉米(Zea mays L.)种质,对于通过新等位基因的渗入拓宽育种种群的遗传基础可能是有价值的。根据籽粒颜色,对斜纹叶枯病的抗性以及云南本身的品系表现,选择了来自CIMMYT育种种群的25个自交系。为了有效地使用这些品系,需要获得有关它们在混合组合中的性能以及一般组合能力(GCA)和特定组合能力(SCA)的信息。这项研究的目的是:(i)使用北卡罗莱纳州设计II,评估这些杂交系在杂种组合中的籽粒产量(GY),确定亲本系的GCA和25个引入系与6个测试仪之间的杂交的SCA; (ii)将品系分为不同的玉米杂种组。在三个地点的现场测试发现,与Cateto和147号种群(P147)的品系相交的GY显着高于SA3和其他引入种群的GY,而高GY很大程度上归因于它们的高GCA正效应。来自相同种群的品系不一定被划分为相同的玉米杂种组。在S 4 或后代选择的品系预期比前几代选择的品系具有更稳定的GCA效应。

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