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Genetic correlation and path analysis of transpiration efficiency for wheat flag leaves

机译:小麦旗叶蒸腾效率的遗传相关和通径分析。

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摘要

A 4x4 complete diallel cross was set up with four different types of drought-resistant winter wheat varieties to define mutual relations among main quantitative traits and the contribution of each trait to the flag leaf transpiration efficiency (TE) in the grain filling phase. Through genetic correlative and path analysis, the influence of five physiological traits, net photosynthesis rate (Pn), stomatal conductance (Gs), intercellular CO concentration (Ci), transpiration rate (Tr), and leaf temperature (Tl), on flag leaf TE was observed. The results of variance analysis showed that there were very significant differences between TE and the related five traits, as well as between these five traits. The results of genetic correlation analysis showed also that the absolute values of the correlation coefficients of corresponding traits to TE should be ordered as Pn>Gs>Tl>Tr>Ci in the early grain filling stage, Ci>Tr>Pn>Gs>Tl in the middle grain filling stage, and Pn>Ci>Tl>Tr>Gs in the late grain filling stage, respectively. The results of the combined analysis of genetic correlation and path analysis showed that at the early filling stage, there existed a strong positive genetic correlation between Pn and TE, and at the same time Pn had a direct positive contribution to TE. With the progression of grain filling, the stress of high temperature and drought strengthened and the function of flag leaves weakened, so that at the late grain filling phase Ci, Tr and Tl were strongly negatively correlated with TE and all these traits conferred direct negative contributions to TE. The results of this research showed that the selection of wheat genetic materials with slow-ageing, high-photosynthesis, low-transpiration and low leaf temperature should assist breeding of wheat with more efficient use of water in north western China.
机译:用四种不同类型的抗旱冬小麦品种建立了一个4x4完整的二倍体杂交,以定义灌浆期主要定量性状之间的相互关系以及每个性状对旗叶蒸腾效率(TE)的贡献。通过遗传相关和路径分析,五个生理特征,净光合速率(Pn),气孔导度(Gs),细胞间CO浓度(Ci),蒸腾速率(Tr)和叶温度(Tl)的影响观察到TE。方差分析的结果表明,TE与相关的五个性状之间以及这五个性状之间存在非常显着的差异。遗传相关分析结果还表明,在灌浆初期,相应性状与TE的相关系数的绝对值应按Pn> Gs> Tl> Tr> Ci排序,Ci> Tr> Pn> Gs> Tl在中粒灌浆阶段分别为Pn> Ci> Tl> Tr> Gs。遗传相关和路径分析相结合的结果表明,在灌浆初期,Pn与TE之间存在很强的正相关,而Pn对TE具有直接的正贡献。随着籽粒灌浆的进行,高温和干旱胁迫加剧,旗叶功能减弱,因此在籽粒灌浆后期,Ci,Tr和Tl与TE呈极显着的负相关,所有这些性状均带来直接的负贡献。到TE。研究结果表明,在中国西北地区,选择具有衰老,高光合作用,低蒸腾作用和低叶温的小麦遗传材料应该有助于小麦的育种,提高水的利用率。

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