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Genetic analysis of grain yield and other traits of extra-early yellow maize inbreds and hybrid performance under contrasting environments

机译:不同环境下黄玉米自交系的产量及其他性状与杂种表现的遗传分析

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Maize (Zea mays L.) is a major staple crop in West and Central Africa (WCA) but production is constrained by Striga hermonthica parasitism and recurrent drought in the savannas where maize yield potential is highest. Two studies were conducted for 2 years at 5 locations in Nigeria. The objective was to determine the combining ability of seven extra-early yellow-endosperm inbreds, place them into heterotic groups, identify the best testers and superior single-cross hybrids under drought, Striga infestation, optimal conditions and across environments. General combining ability (GCA) and specific combining ability (SCA) mean squares were significant for grain yield and most other traits across test environments. Mean squares for GCA were larger than those of SCA in all environments, indicating that additive gene action was more important in the inheritance of traits. Three testers (TZEEI 79, TZEEI 76 and TZEEI 63) and opposing heterotic groups (TZEEI 95, TZEEI 78, TZEEI 79), (TZEEI76, TZEEI 82) and (TZEEI 63, TZEEI 58) were identified across environments. TZEEI 79 had the highest positive GCA effects for grain yield across environments. Furthermore. TZEEI 95 x TZEEI 79 was identified as the potential single-cross tester for the development of three-way and double-cross hybrids. Results of repeatability analysis showed that the managed drought test site, IKDT, was the most repeatable even though it was not very discriminating. In contrast, ZAWW had high representativeness, discriminating ability and repeatability, indicating that it was the ideal test location. The best extra-early hybrid TZEEI 79 x TZEEI 63 under drought stress and TZEEI 82 x TZEEI 79 under Striga infestation were comparable in yield to the best open-pollinated early check. GGE biplot analysis revealed TZEEI 79 x TZEEI 76 as the highest yielding and most stable hybrid across environments. The available extra-early maize inbred lines are not only drought escaping but also possess genes for drought tolerance
机译:玉米(Zea mays L.)是西非和中非(WCA)的主要主粮,但产量受到Striga hermonthica寄生虫和热带稀树草原的反复干旱的限制,那里的玉米单产潜力最高。在尼日利亚的5个地点进行了为期2年的两项研究。目的是确定七个早熟的黄色胚乳自交系的结合能力,将它们分为杂种群体,确定在干旱,Striga侵染,最佳条件和跨环境下的最佳测试者和优良的单杂交杂种。在整个测试环境中,一般结合能力(GCA)和比结合能力(SCA)均方对谷物产量和大多数其他性状均具有重要意义。在所有环境中,GCA的均方均大于SCA的均方,这表明加性基因作用在性状遗传中更为重要。在整个环境中,确定了三个测试器(TZEEI 79,TZEEI 76和TZEEI 63)和相对的杂基(TZEEI 95,TZEEI 78,TZEEI 79),(TZEEI76,TZEEI 82)和(TZEEI 63,TZEEI 58)。 TZEEI 79对整个环境的谷物产量具有最高的GCA正效应。此外。 TZEEI 95 x TZEEI 79被认为是开发三向和双交叉杂种的潜在单交叉测试仪。重复性分析的结果表明,管理的干旱测试地点IKDT即使不是很能区分,也是重复性最高的。相比之下,ZAWW具有很高的代表性,区分能力和可重复性,表明它是理想的测试位置。干旱胁迫下最好的早交杂种TZEEI 79 x TZEEI 63和Striga侵染下最好的早交杂种TZEEI 82 x TZEEI 79的产量可与最佳的开放授粉早期检查相比。 GGE双图分析显示,TZEEI 79 x TZEEI 76是跨环境的最高产量和最稳定的杂种。现有的玉米自交系不仅可以逃避干旱,而且还具有耐旱基因

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