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首页> 外文期刊>Journal of King Saud University >Combining ability and heterosis for grain minerals, grain weight and yield in pearl millet and SSR markers based diversity of lines and testers
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Combining ability and heterosis for grain minerals, grain weight and yield in pearl millet and SSR markers based diversity of lines and testers

机译:基于线和测试仪的珍珠小米,粒度和SSR标记的晶粒矿物,粒重和产量的组合能力和杂种

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摘要

Pearl millet, a versatile and historic coarse grain crop, is stable food for millions of people in India and sub-Saharan Africa. As part of a key initiative to increase its grain mineral content, an investigation was carried out with line × tester analysis to generate information on magnitude of heterobeltiosis and standard heterosis, gene effects, combining ability effect of parents and hybrids for grain yield, grain weight and grain minerals (iron, zinc, copper and manganese). The partitioning of variance due to parental genotypes revealed that lines and testers significantly differed for studied traits. Theper seperformance of hybrids was higher than parents in desired directions for most of the characters suggesting the possibility of heterotic hybrids. The potence ratio was less than 1 for all traits except Fe. The analysis of variance for combining ability revealed importance of both additive and non-additive components of genetic variance. On the basis of per se performance and combining ability analysis cross ICMA 98444 × AIB 220 may be directly exposed for commercial cultivation and may be advanced for development of parental genotypes. During SSR marker based study, maximum PIC value was revealed by Xpsmp 2203 (PIC value?=?0.92). Clustering analysis could group parental genotypes in three main clusters. The genetic distance among 15 genotypes ranged from 0.29 to 0.83. The genetic relationships identified among the male sterile/restorer lines may be useful in designing strategies to improve the genetic variation in the context of pearl millet breeding and to develop heterotic crosses.
机译:珍珠小米,多功能和历史悠久的粗粮作物,对印度数百万人和撒哈拉以南非洲人来说是稳定的食物。作为提高其谷物矿物质含量的关键措施的一部分,通过线×测试仪分析进行了调查,以产生关于异常性疾病和标准杂种优势,基因效应,父母和杂种用于籽粒产量的合并能力效果的信息,粒度重量和谷物矿物质(铁,锌,铜和锰)。由于父母基因型引起的差异划分显示,对于研究的性状,线和测试仪显着不同。对于大多数人的特性,杂种的杂交种子的单片形状高于父母,表明杂种的可能性。除Fe除外的所有特征的效率比小于1。结合能力方差分析显示遗传方差两种添加剂和非添加组分的重要性。基于本身的性能和组合能力分析交叉ICMA 98444×AIB 220可以直接暴露用于商业培养,并且可以提前以发展父母基因型。在基于SSR标记的研究期间,XPSMP 2203揭示了最大照片值(PIC值?= 0.92)。聚类分析可以在三个主要集群中群体基因型。 15种基因型之间的遗传距离范围为0.29至0.83。雄性不育/恢复系之间鉴定的遗传关系可用于设计改善珍珠米特育种的背景下改善遗传变异的策略,并开发异丙肾上腺症。

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