首页> 外文期刊>The Indian journal of genetics & plant breeding >Genetic variability and correlation of kernel micronutrients among exotic quality protein maize inbreds and their utility in breeding programme
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Genetic variability and correlation of kernel micronutrients among exotic quality protein maize inbreds and their utility in breeding programme

机译:外来优质蛋白玉米自交系籽粒微量元素的遗传变异及其相关性及其在育种中的应用。

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Micronutrient malnutrition is a widespread problem known to affect millions of children and women. However, the adverse effects of micronutrient deficiency can be overcome through self-targeting, cost-effective and sustainable genetic biofortification approach, which is mainly based on staple food crops. Since maize has emerged as a prominent future crop especially for India, developing maize hybrids that are rich in kernel micronutrients will help in reducing the problems of micronutrient malnutrition. Here, we report variability of kernel Fe and Zn in 120 exotic Quality Protein Maize (QPM) inbreds and kernel Mn and Cu in a representative subset of 68 lines. A wide range of genetic variation was found among genotypes for all the kernel micronutrients: Fe (16.6-83.4 ppm), Zn (16.4-53.2 ppm), Mn (1.7-34.8 ppm) and Cu (0.5-9.5 ppm). Higher mean for kernel Fe and Zn in QPM inbreds suggests possible influence of opaque2 gene and/or modifiers present in them. Significant and positive correlation was observed among kernel Fe, Zn, Mn and Cu. Genetic diversity based on all four micronutrients grouped 68 lines into three major clusters with a mean coefficient of genetic dissimilarity of 2.46. Parental combinations were selected from different heterotic pools and maturity groups to develop high-yielding hybrids enriched with micronutrients
机译:微量营养素营养不良是一个普遍存在的问题,已知会影响数以百万计的儿童和妇女。但是,微量营养素缺乏的不利影响可以通过自我确定目标,具有成本效益的和可持续的遗传生物强化方法来克服,该方法主要基于主粮作物。由于玉米已成为未来的重要作物,特别是在印度,因此发展玉米籽粒中富含微量营养素的玉米杂交种将有助于减少微量营养素营养不良的问题。在这里,我们报告了120个外来优质蛋白玉米(QPM)自交系中籽粒铁和锌的变异性以及68个品系的代表性子集中的籽粒锰和铜的变异性。在所有核心微量营养素的基因型之间发现了广泛的遗传变异:铁(16.6-83.4 ppm),锌(16.4-53.2 ppm),锰(1.7-34.8 ppm)和铜(0.5-9.5 ppm)。 QPM自交系中籽粒铁和锌的均值较高,表明其中存在不透明基因和/或修饰子的可能影响。 Fe,Zn,Mn和Cu之间存在显着正相关。基于所有四种微量营养素的遗传多样性将68个品系分为三个主要类群,平均遗传相似系数为2.46。从不同的杂种组合和成熟组中选择亲本组合,以开发富含微量元素的高产杂交种

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