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Analysis and correlation of stability parameters in malting barley.

机译:大麦制麦芽稳定性参数的分析和相关。

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摘要

Barley (Hordeum dischon L. and Hordeum vulgare L.) is a multipurpose plant cultivated since ancient time for food, feed, medicinal purposes and malt of alcoholic beverages. Stability parameters are useful tools for identification of genotypes with specific and wide adaptations, and contrasting the role played by genotype, environment and G x E interaction in multilocational variety trials. Interaction principal component axis (IPCA) scores, Additive main effect and multiplicative interaction stability value (ASVi), Wricke's ecovalence (Wi), regression coefficient, coefficient of variation (CVi), genotypic/environmental variance (S12), stability variance (s12) and cultivar/environment superiority measure(Pi) were used to evaluate the yield performance and stability of twenty malting barley genotypes in twelve rain-fed environments during 2005-2007. Spearman rank correlation showed that bj, Ri2, Sj2, CVj, and IPCA1 of environments were positively correlated, indicating that any of these five parameters can be used as a good alternative for stability evaluation. These stability parameters were positively correlated with mean yield of environments. The mean of genotype yields were positively correlated with stability parameters of bi and Ri2 (P<0.01), but were negatively correlated with IPCA1, Wi2, Pi (P<0.01) and ASVi. Based on these parameters, genotypes G1 and G13 combined high and stable grain yield, whereas the highest yielding genotype G12 was not stable.
机译:大麦(Hordeum dischon L.和 Hordeum vulgare L.)是一种自古以来就种植的多用途植物,用于食品,饲料,药用目的和麦芽酒。稳定性参数是用于识别具有特定适应性和广泛适应性的基因型的有用工具,并且可以对比基因型,环境和G x E相互作用在多地点品种试验中的作用。相互作用主成分轴(IPCA)得分,相加主效应和乘法相互作用稳定性值(ASVi),Wricke的生态价(W i ),回归系数,变异系数(CVi),基因型/环境方差( S 1 2 ),稳定性方差(s 1 2 )和品种/环境优势测度(P i )用于评估2005-2007年在12种雨养环境中20种发芽大麦基因型的产量表现和稳定性。 Spearman等级相关性显示bj,R i 2 ,S j 2 ,CV j 和IPCA 1 与环境呈正相关,表明这五个参数中的任何一个都可以用作稳定性评估的良好选择。这些稳定性参数与环境平均产量呈正相关。基因型平均产量与bi和R i 2 的稳定性参数正相关(P <0.01),而与IPCA 1 负相关>,W i 2 ,P i (P <0.01)和ASV i 。基于这些参数,基因型G1和G13结合了高而稳定的谷物产量,而最高产量的基因型G12则不稳定。

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