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Microsatellite-based genetic diversity analyses of sugary1- shrunken2- and double mutant- sweet corn inbreds for their utilization in breeding programme

机译:含糖减缩2-和双突变-甜玉米自交系基于微卫星的遗传多样性分析以用于育种程序

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摘要

Sweet corn has recently experienced sharp rise in demand worldwide. Recessive sugary1 (su1) and shrunken2 (sh2) that enhances kernel sweetness have been abundantly used in sweet corn breeding. Analyses of genetic diversity among sweet corn inbreds assume great significance for their effective utilization in hybrid breeding. A set of 48 diverse sweet corn genotypes encompassing su1su1, sh2sh2 and su1su1/sh2sh2 types were analyzed using 56 microsatellite markers. A total of 213 alleles with mean of 3.8 alleles per locus were generated. Two unique- and 12 rare- alleles were identified. The average PIC and genetic dissimilarity was 0.50 and 0.73, respectively. Cluster analysis grouped the inbreds into three major clusters, with each of the su1su1-, sh2sh2- and su1su1/sh2sh2-types were broadly clustered together. Principal coordinate analyses also depicted the diverse origin of the genotypes. The study identified inbreds for synthesis of pools and pedigree populations to develop novel inbreds. The study led to the identification of prospective heterotic combinations in various genetic backgrounds (sh2sh2 × sh2sh2, su1su1 × su1su1, su1su1/sh2sh2 × su1su1/sh2sh2, sh2sh2 × su1su1/sh2sh2 and su1su1 × su1su1/sh2sh2).
机译:最近全球甜玉米需求急剧上升。增强籽粒甜度的隐性糖基1(su1)和缩水2(sh2)已广泛用于甜玉米育种中。甜玉米自交系的遗传多样性分析对其在杂交育种中的有效利用具有重要意义。使用56个微卫星标记分析了包括su1su1,sh2sh2和su1su1 / sh2sh2类型的48种不同的甜玉米基因型。总共产生了213个等位基因,平均每个位点有3.8个等位基因。确定了两个独特的和12个稀有等位基因。平均PIC和遗传差异分别为0.50和0.73。聚类分析将近交种分为三个主要的聚类,每个su1,su2,sh2和su1 / sh2sh2类型都广泛地聚在一起。主坐标分析还描述了基因型的不同来源。该研究确定了近交系,以合成种群和家系种群以开发新的近交系。该研究导致在各种遗传背景(sh2sh2×sh2sh2,su1su1×su1su1,su1su1 / sh2sh2×su1su1 / sh2sh2,sh2sh2×su1su1 / sh2sh2和su1su1×em su2su1 / sh2)上确定预期的杂种组合。

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