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首页> 外文期刊>Iran Agricultural Research >Diallele Cross Analysis of Several Physiological Criteria Related to Drought Resistance in Wheat
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Diallele Cross Analysis of Several Physiological Criteria Related to Drought Resistance in Wheat

机译:与小麦抗旱性相关的几种生理指标的Diallel交叉分析

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摘要

An experiment was conducted on the Ft generation from a half-diallel set of crosses involving two drought tolerant (Roshan and Kal-Haydary), three moderately tolerant (Bayat, B.C Roshan and Nick-Nejad) and three sensitive (Ghods, Falat and Darab2) genotypes of wheat to study gene action of rate of water loss (RWL) from excised-leaf, initial water content (IWC), air-canopy temperature difference (AT=Ta-Tc) at booting and anthesis stages, and leaf water potential (LWP) and leaf osmotic potential (LOP)at the anthesis stage of development. Highly significant differences were observed between genotypes for all traits except for IWC (at booting) and AT (at booting and anthesis at 10-11 h). General combining ability (GCA) and specific combining ability (SCA) mean squares, and GCA/SCA ratios were significant for all traits, noting the importance of additive gene action. Non-additive gene action had a major role in AT at anthesis. Narrow sense heritability ranged from 46% for AT at anthesis to 72% for RWLat booting and anthesis stages. Heterosis was not important for any trait. The genotype Kal-Haydary was the best general combiner for all traits except for AT anthesis in which Roshan was better.
机译:对Ft世代进行了一次实验,涉及半数杂交,包括两个耐旱品种(Roshan和Kal-Haydary),三个耐旱品种(Bayat,BC Roshan和Nick-Nejad)和三个敏感品种(Ghods,Falat和Darab2) )的小麦基因型,以研究切叶失水率(RWL),启动和开花期的初始含水量(IWC),冠层温度差(AT = Ta-Tc)和叶水势的基因作用(LWP)和叶片渗透势(LOP)在花期的发育阶段。除了IWC(在启动时)和AT(在启动和花期10-11小时)外,所有性状的基因型之间都观察到了非常显着的差异。总体结合能力(GCA)和特异性结合能力(SCA)均方,以及GCA / SCA比对于所有性状均显着,并指出加性基因作用的重要性。非加性基因作用在花期AT中起主要作用。狭义遗传力的范围从花期AT的46%到RWLat启动和花期的72%不等。杂种优势对于任何特征都不重要。基因型Kal-Haydary是所有性状的最佳综合组合物,但AT花期较Roshan更好。

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