预育面包小麦生物强化性状的多环境分析

B. S. Tyagi, S. Sareen, Gopalareddy Krishnappa, Vikas Gupta, V. Goyal, Arun Gupta, Charan Singh, C. Mishra, Satish Kumar, A. Ojha, Gyanendra Singh, Gyanendra Singh
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引用次数: 0

摘要

在4种环境下对14个外源小麦基因型和2个检验品种进行了评价。该实验于2018-19年和2019-20年在卡纳尔和希萨尔地点连续两年进行。在外源基因型中观察到的变异性比对照品种高得多。GFeC、GZnC和GPC的同时提高是可能的,因为所研究性状之间存在很强的正相关关系。G7 (BFKW-7)和G3 (BFKW-3)两种基因型既稳定又具有较高的性状价值,适合作为同时改良这三个性状的潜在供体。GFeC和GPC的G4 (BFKW-4)、GFeC和GZnC的G11 (BFKW-11)、GZnC和GPC的G10 (BFKW-10)也是潜在的供体。这些稳定的基因型将成为开发生物强化小麦品种所需的高GFeC、GZnC和GPC的潜在来源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-Environment Analysis of Biofortification Traits in Pre-bred Bread Wheat (Triticum aestivum L.)
A set of 14 exotic-based wheat genotypes along with two check varieties were evaluated in four environments. The experimentation was conducted for two consecutive years during 2018–19 and 2019–20 at Karnal and Hisar locations. The variability observed in exotic-based genotypes is much higher than check varieties. Simultaneous improvement of GFeC, GZnC, and GPC is possible due to strong and positive correlation among the studied traits. Two genotypes i.e., G7 (BFKW-7) and G3 (BFKW-3) are suitable candidates to be utilized as potential donors for simultaneous improvement of all three traits, as these are found to be both stable and have high trait value. G4 (BFKW-4) for GFeC and GPC, and G11 (BFKW-11) for GFeC and GZnC, and G10 (BFKW-10) for GZnC and GPC were also potential donors. These stable genotypes would be a potential source for high GFeC, GZnC, and GPC to develop biofortified wheat varieties.
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