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首页> 外文期刊>Crop Science >Quality protein maize germplasm characterized for amino acid profiles and endosperm opacity.
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Quality protein maize germplasm characterized for amino acid profiles and endosperm opacity.

机译:优质蛋白质玉米种质,具有氨基酸特征和胚乳不透明性。

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Quality protein maize (QPM) is improved over normal (non-QPM) maize in grain concentrations of the essential amino acids lysine and tryptophan. Quality protein maize has a long history as tropical adapted germplasm, but little effort has been made to incorporate temperate or sub-tropical germplasm for temperate adaptation and interactions between different modifier loci in these backgrounds are poorly understood. A design-II mating scheme including new temperate and subtropical lines produced 69 hybrids. Large hybrid genetic variation components resulted in substantial broad-sense heritability H2 estimates, specifically tryptophan (0.46) and endosperm opacity (0.82). A microbial assay for amino acid estimation proved robust across diverse environments with minimal genotype x environment (G x E) effects. Endosperm opacity had no G x E effects across both Texas and Iowa locations demonstrating stability for this trait. Endosperm opacity primarily followed an additive, midparent trend, with a few hybrids deviating from the trend (36%) suggesting a complex nature of multiple modifier loci across diverse germplasm. The top QPM hybrid outperformed the top commercial hybrid by 35 and 30% for lysine and tryptophan as a proportion of grain, respectively. QPM line Tx832 was a parent of top hybrids for lysine and tryptophan, and the highest noncommercial hybrids for methionine. Minimal correlations with yield and other traits suggest that future breeding should result in QPM hybrids with increasingly competitive yields.
机译:优质蛋白质玉米(QPM)的必需氨基酸赖氨酸和色氨酸的谷物浓度比普通(非QPM)玉米提高。优质蛋白玉米作为热带适应种质已有很长的历史,但很少有人努力引入温带或亚热带种质来适应温带,并且在这些背景下,不同修饰基因座之间的相互作用还知之甚少。设计II交配方案包括新的温带和亚热带系,产生了69个杂种。大量的杂种遗传变异成分导致大量的广义遗传力H 2 估计,特别是色氨酸(0.46)和胚乳不透明性(0.82)。经证明,用于氨基酸估计的微生物测定法可在各种环境中保持稳健,且基因型x环境(G x E)的影响最小。德克萨斯州和爱荷华州的胚乳混浊都没有G x E效应,表明该特性稳定。胚乳的不透明性主要遵循加性,中亲趋势,少数杂种偏离趋势(36%),表明跨多种种质的多个修饰基因座具有复杂的性质。对于谷物而言,赖氨酸和色氨酸的顶级QPM杂种分别比顶级商业杂种高出35%和30%。 QPM品系Tx832是赖氨酸和色氨酸的顶级杂种的亲本,而蛋氨酸的非商业性杂种则是最高的。与产量和其他性状的相关性最小,这表明未来的育种应使QPM杂交种具有越来越高的竞争性产量。

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