首页> 外文期刊>Journal of Plant Nutrition >EXPLORING MORPHO- PHYSIOLOGICAL RELATIONSHIPS AMONG DROUGHT RESISTANCE RELATED TRAITS IN WHEAT GENOTYPES USING MULTIVARIATE TECHNIQUES
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EXPLORING MORPHO- PHYSIOLOGICAL RELATIONSHIPS AMONG DROUGHT RESISTANCE RELATED TRAITS IN WHEAT GENOTYPES USING MULTIVARIATE TECHNIQUES

机译:利用多元技术探索小麦基因型抗旱相关性状的形态生理关系

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Eighteen bread wheat (Triticum aestivum L.) and two durum wheat genotypes (Triticum turgidum L.) were used to explore relationship among their morpho-physiological traits. Two separate field experiments were conducted at the Experimental Station, College of Agricultural, Shiraz University. Each experiment was designed as a randomized completed block with three replications. Twenty-five morpho-physiological drought resistance related traits were measured and multivariate statistical techniques were used to consider these relationships. Based on the results of the factor analysis, electrolyte leakage (EL) had the highest positive correlation, while membrane stability index (MSI) had the highest negative correlation with the first factor, canopy temperature depression (CTD). It could be clearly detected that these two variables had high effect on canopy temperature and the genotype with lower EL and higher MSI resulted in lower canopy temperature. This factor also showed that reactive oxygen species (ROS) related traits and plant water relationship related traits had significant effect on CTD. Since yield stability (YS) had the highest coefficient in factor 3, this factor was the most important one showing effective variables on this trait, thus this factor's suggested name was YS. The significant positive correlations with factor 3 were relative water protected (RWP), which is a new index, and cellular membrane stability (CMS). This result clearly shows that new index of RWP can be an efficient indirect criterion to screen higher YS genotypes together with CMS. Cluster analysis grouped variables into three clusters. These results were confirmed by the results of principal and discriminate function analysis. In addition, the results of the factor analysis for considering relationships among measured traits were confirmed through the cluster analysis.
机译:研究了十八个面包小麦(Triticum aestivum L.)和两个硬粒小麦基因型(Triticum turgidum L.)的形态-生理特性之间的关系。在设拉子大学农业学院实验站进行了两个单独的田间试验。每个实验被设计为具有三个重复的随机完成区块。测量了二十五个形态生理干旱抗性相关性状,并使用多元统计技术考虑了这些关系。根据因素分析的结果,电解质泄漏(EL)具有最高的正相关性,而膜稳定性指数(MSI)与第一个因素(冠层温度下降(CTD))具有最大的负相关性。可以清楚地发现这两个变量对冠层温度有较高的影响,而具有较低EL和MSI的基因型导致较低的冠层温度。该因子还表明,活性氧(ROS)相关性状和植物水分关系相关性状对CTD有显着影响。由于产量稳定性(YS)在因子3中具有最高系数,因此该因子是显示该性状有效变量的最重要因子,因此该因子的建议名称为YS。与因子3的显着正相关是相对水保护(RWP)和细胞膜稳定性(CMS),RWP是新指标。该结果清楚地表明,RWP的新指标可以作为筛选较高YS基因型和CMS的有效间接标准。聚类分析将变量分为三个聚类。这些结果由主要和区分功能分析的结果证实。另外,通过聚类分析确认了考虑到所测性状之间关系的因素分析结果。

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