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首页> 外文期刊>The Journal of Agricultural Science >Genetic analysis of grain yield and agronomic traits of early provitamin A quality protein maize inbred lines in contrasting environments
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Genetic analysis of grain yield and agronomic traits of early provitamin A quality protein maize inbred lines in contrasting environments

机译:早期植物产量和农艺性状的遗传分析,综合环境中优质蛋白质玉米自交系

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摘要

Early-maturing provitamin A (PVA) quality protein maize (QPM) hybrids with combined drought and low soil nitrogen (low-N) tolerance are needed to address malnutrition and food security problems in sub-Saharan Africa (SSA). The current study's objectives were to (i) examine combining ability of selected early maturing PVA-QPM inbreds for grain yield and other agronomic traits under drought, low-N, optimal environments and across environments, (ii) determine gene action conditioning PVA accumulation under optimal environments, (iii) classify inbreds into heterotic groups and identify testers and (iv) assess yield and stability of hybrids across environments. Ninety-six hybrids generated from 24 inbred lines using the North Carolina Design II together with four commercial hybrid controls were evaluated under drought, low-N and optimal environments in Nigeria in 2016 and 2017. Fifty-four selected hybrids were assayed for PVA carotenoid and tryptophan content. Additive genetic effects were greater than non-additive effects for grain yield and most agronomic traits under each and across environments. The gene action conditioning accumulation of PVA carotenoids under optimal growing conditions followed a pattern similar to that of grain yield and other yield-related traits. The inbred lines were categorized into four heterotic groups consistent with the pedigree records and with TZEIORQ 29 identified as the best male and female tester for heterotic group IV. No tester was found for the other groups. Hybrid TZEIORQ 24 × TZEIORQ 41 was the highest yielding and most stable across environments and should be further tested for consistent performance for commercialization in SSA.
机译:早期成熟的野生素A(PVA)质量蛋白质玉米(QPM)杂种,具有组合的干旱和低土壤氮(低N)耐受性,以解决撒哈拉以南非洲(SSA)的营养不良和粮食安全问题。目前的研究目的是(i)检查在干旱,低N,最佳环境和环境下的籽粒产量和其他农艺性状的选定早期成熟PVA-QPM近交的能力,(ii)确定基因作用调理PVA积累最佳环境,(iii)将近额分类为异性群体,识别测试人员和(iv)评估跨环境杂种的产量和稳定性。在2016年和2016年尼日利亚的干旱,低N和最佳环境中评估了从24种商业混合控制的24种自交系中产生的九十六种杂交种。在2016年和2017年,为PVA类胡萝卜素和PVA类胡萝卜素测定了五十四种选定的杂种。色氨酸内容。添加剂遗传效应大于每种和跨环境下的籽粒产量和大多数农艺性状的非添加性效果。在最佳生长条件下PVA类胡萝卜素的基因作用调节累积遵循类似于籽粒产量和其他与产率相关性状的模式。近交系分为四种与谱系记录一致的四种异药组,并用TeeiorQ 29确定为异丙菌IV的最佳雄性和女性测试仪。没有找到测试员的另一组。 Hybrid Teeiorq 24×Teeiorq 41是环境中最高的,并且在环境中最稳定,并且应该进一步测试在SSA中的商业化的一致性能。

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