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首页> 外文期刊>Chilean Journal of Agricultural Research >Germplasm evaluation of heat tolerance in bread wheat in Tel Hadya, Syria
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Germplasm evaluation of heat tolerance in bread wheat in Tel Hadya, Syria

机译:叙利亚特拉哈迪面包小麦耐热性的种质评估

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Breeding for heat tolerance in bread wheat ( Triticum aestivum L.) is a serious global concern due to the increasing threats of high temperature. Thus, 189 wheat genotypes coded from 1 to 189 were evaluated for heat tolerance in normal and late seasons in the International Centre for Agricultural Research in Dry Areas (ICARDA), Tel Hadya, Syria, from 2010 to 2012. The experiments were laid out in alpha lattice designs with two replicates. Data collected on the grain yield, days to heading and maturity, grain filling duration and plant height were subjected to restricted maximum likelihood (REML) analysis for generation of the best linear unbiased estimates (BLUEs). Very highly significant effects (p ≤ 0.001) of genotype, season, and genotype by season interaction on grain yield and other traits were obtained. The grain yield and other traits performance of the wheat genotypes were significantly (p ≤ 0.05) higher in the normal season than in the late season. Genotype 148 was among the 30 top grain yielding genotypes in all the environments, while genotypes 172 and 124 were among the top yielding genotypes in all the environments except in late season 2. The relative heat tolerance of the genotypes ranged from -33.69% to -77.95% in late season 1 vs. normal season 1 and -65.28% to -95.83% in late season 2 vs. normal season 2. The high variability obtained in the germplasm underlies sufficient genetic variability for improving heat tolerance in bread wheat.
机译:由于高温的威胁越来越大,面包小麦(Triticum aestivum L.)的耐热性育种成为全球关注的问题。因此,从2010年至2012年,在叙利亚特拉哈迪市国际干旱地区农业研究中心(ICARDA)中评估了编码为​​1至189的189个小麦基因型在正常和晚期的耐热性。具有两个重复的alpha晶格设计。收集有关谷粒产量,抽穗和成熟天数,籽粒充实持续时间和株高的数据,进行最大似然限制(REML)分析,以生成最佳线性无偏估计(BLUE)。基因型,季节和基因型之间的相互作用对谷物产量和其他性状具有非常显着的影响(p≤0.001)。基因型的小麦的籽粒产量和其他性状表现在正常季节比后期明显提高(p≤0.05)。在所有环境中,基因型148是所有前30个最高产量基因型中的一个,而在第二个季节除外,基因型172和124在所有环境中是最高产量基因型中的一个。该基因型的相对耐热性在-33.69%到-第1季末与正常第1季相比为77.95%,第2季末与正常第2季相比为-65.28%至-95.83%。种质获得的高变异性为改善面包小麦的耐热性奠定了足够的遗传变异性。

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