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首页> 外文期刊>Journal of Cereal Science >Genetic variability-, genotype x environment interactions- and combining ability-analyses of kernel tocopherols among maize genotypes possessing novel allele of gamma-tocopherol methyl transferase (ZmVTE4)
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Genetic variability-, genotype x environment interactions- and combining ability-analyses of kernel tocopherols among maize genotypes possessing novel allele of gamma-tocopherol methyl transferase (ZmVTE4)

机译:遗传变异 - ,基因型X环境相互作用 - 玉米基因型中籽粒生育酚的相互作用 - 具有γ-生育酚甲基转移酶新等位基因(ZMVTE4)的玉米基因型中籽粒基因型中的能力分析

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摘要

Deficiency of vitamin-E or tocopherol causes neurological disorders in humans. alpha-tocopherol possessing the highest vitamin-E activity is present in low concentration in maize kernel. Nine lines and four testers possessing favourable allele of ZmVTE4 that significantly enhances vitamin-E activity were used to generate 36 hybrid combinations. Significant variation was observed for alpha- (5.95-39.03 mu g/g), gamma- (11.69-50.82 mu g/g), delta-(4.09-10.76 mu g/g) and total-tocopherol (33.18-90.53 pg/g). alpha-, gamma- and delta-tocopherol constituted 36%, 53% and 11% of the total tocopherol, respectively. Majority of the experimental hybrids possessed significantly higher atocopherol (mean: 21.37 mu g/g) than the check hybrids (mean: 11.16 mu g/g). AMMI analysis revealed that across tocopherols, genotype and interaction effect accounted 35-77% and 23-45% of variation, respectively. The environmental effects were of minor magnitude. Non-additive gene action was predominant for alpha-, gamma-, and total-tocopherol, while delta-tocopherol was conditioned predominantly by additive gene action. The information generated here assumes great significance in biofortification programme. This is the first report of variability, G x E interactions and combining ability for kernel tocopherol using maize hybrids possessing novel allele of ZmVTE4.
机译:维生素-E或生育酚的缺乏导致人类的神经系统疾病。具有最高维生素-E活性的α-生育酚在玉米核中存在低浓度。九条线和具有ZMVTE4有利等位基因的四条线和四个测试仪,可显着增强维生素-E活性来产生36种杂种组合。 α-(5.95-39.03μg/ g),γ-(11.69-50.82μg),δ-(4.09-10.76μg/ g)和总生育酚(33.18-90.53 pg / G)。 α-,γ-和δ-生育酚分别构成36%,53%和11%的总生育酚。大多数实验杂种具有明显高于检查杂交种的同性恋者(平均:21.37μg/ g)(平均值:11.16μg/ g)。 AMMI分析表明,在生育酚,基因型和相互作用效果上分别占变异的35-77%和23-45%。环境影响较小。非添加性基因作用对于α,γ-和全生育酚具有主要的,而δ-生育酚主要通过添加剂基因作用定义。这里产生的信息在生物融化程序中具有重要意义。这是使用具有具有ZMVTE4的新等位基因的玉米杂种核杂交种的第一型变异性,G X E相互作用和组合能力的第一报告。

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