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首页> 外文期刊>The Indian Journal of Agricultural Sciences >Generation mean analysis of kernel iron and zinc concentrations in maize (Zea mays).
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Generation mean analysis of kernel iron and zinc concentrations in maize (Zea mays).

机译:玉米中玉米铁和锌含量的生成平均值分析。

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摘要

Alleviating micronutrient malnutrition through biofortification of food crops is an important objective of breeding programmes. Of particular importance is breeding for micronutrient enrichment, especially iron and zinc in crops, like maize (Zea mays L.). In the present study, generation mean analysis was undertaken for the first time to estimate the nature and magnitude of gene effects for kernel iron and zinc concentrations in 2 specific crosses of maize, with contrasting parental lines. Scaling test indicated the influence of epistasis on the expression of both micronutrients and inadequacy of additive-dominance model to explain the variation in different generations. Similar types of components of gene action for a particular micronutrient were observed, albeit some differences in the direction and magnitude of effects. Additive gene action was of higher magnitude as compared to dominance for kernel iron, while dominance was relatively higher in case of kernel zinc. Additive x dominance component was significant in both the crosses for kernel Fe, whereas additive x additive component was predominant for kernel zinc. Different non-additive components acted in opposite directions in both the crosses for kernel Fe, which could be a bottleneck to exploit heterosis. Recurrent selection and population improvement programmes, coupled with development of superior heterotic pools of inbred lines with enhanced kernel iron and zinc concentrations, could be effective in improving concentrations.
机译:通过粮食作物的生物强化减轻微量营养素营养不良是育种计划的重要目标。尤其重要的是进行育种以丰富微量营养素,尤其是玉米(Zea mays L.)等农作物中的铁和锌。在本研究中,首次进行了世代均值分析,以估计玉米的两个特定杂交中的铁和锌浓度与亲本形成对比的基因效应的性质和大小。缩放测试表明上位性对微量营养素表达的影响和加性显性模型的不足以解释不同世代的变化。观察到了特定微量营养素的相似类型的基因作用成分,尽管作用的方向和幅度存在一些差异。与仁铁的优势相比,加性基因作用的幅度更高,而仁锌的优势相对较高。籽粒Fe的两个杂交中加性x优势成分均显着,而籽粒锌主要以加性x添加剂成分为主。不同的非加性成分在两个交叉的籽粒铁中的作用方向相反,这可能是利用杂种优势的瓶颈。轮回选择和种群改良计划,再加上近交系优良杂种库的开发,具有更高的仁铁和锌浓度,可以有效提高浓度。

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