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Genotypexenvironment interaction and genetic association of grain iron and zinc content with other agronomic traits in RIL population of pearl millet

机译:珍珠群中其他农艺性状的基因型Xen环境相互作用与粮食含量的遗传结合

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Biofortification of lines of pearl millet (Pennisetum glaucum (L.) R.Br.) with increased iron (Fe) and zinc (Zn) will have great impact because pearl millet is an indispensable component of food and nutritional security of inhabitants of arid and semi-arid regions. The aim of the present study was to assess the stability of Fe and Zn content in recombinant inbred lines (RILs) developed for grain Fe and Zn content, and to use these lines in developing micronutrient-rich pearl millet hybrids. A mapping population consisting of 210 RILs along, with parents and checks, was assessed in three consecutive years (2014-16) under rainfed conditions at the same experimental location in an alpha design with two repetitions. Significant differences were observed in genotype, environment and genotypexenvironment interaction mean squares for all variables, particularly grain micronutrients. The first two principal components of an interaction principal component analysis cumulatively explained 100% of the total variation; respective contributions of the first and second components were 64.0% and 36.0% for Fe, and 58.1% and 41.9% for Zn. A positive and moderately high correlation (0.696**) between Fe and Zn contents suggests good prospects of simultaneous improvement for both micronutrients. Among the 210 RILs, RIL 69, RIL 186, RIL 191, RIL 149 and RIL 45 were found to be more stable with higher mean micronutrient content, additive main effects and multiplicative interaction stability value (ASV) and genotype selection index (GSI) under rainfed condition. These RILs are promising and can be tested further for their combining ability for yield as well as grain micronutrient content for developing superior biofortified, heterotic pearl millet hybrids.
机译:珍珠小米线(Pennisetum glaucum(L.)R.Br.)的生物侵蚀,具有较高的铁(Fe)和锌(Zn)将产生很大的影响,因为珍珠米勒是干旱居民的食物和营养安全性不可或缺的组成部分半干旱地区。本研究的目的是评估为谷物Fe和Zn含量开发的重组近交系(RILS)中的Fe和Zn含量的稳定性,并在开发富含微量营养的珍珠米杂交物中使用这些线。在连续三年(2014-16)下,在与两次重复的Alpha设计中的雨水条件下,在雨水条件下进行评估,在父母和检查中由父母和检查组成的映射人口。在基因型,环境和基因型尖端相互作用中观察到均显着差异,均为所有变量,特别是晶粒微量营养素。相互作用主成分分析的前两个主要成分累积地解释了总变异的100%; Fe和26.0%的综合的各自贡献为64.0%和36.0%,ZN为58.1%和41.9%。 Fe和Zn含量之间的正和中度高(0.696 **)表明两种微量营养素同时改善的良好前景。在210个rils,Ril 69,Ril 186,Ril 191,Ril149和Ril 45中发现更稳定,具有更高的平均微量营养量,添加剂的主要效果和乘法相互作用稳定值(ASV)和基因型选择指数(GSI)雨量条件。这些rils是有前途的,并且可以进一步测试它们的产量和晶粒微量营养素的能力,用于开发出卓越的生物融合,异源性珍珠毫氏杂种。

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