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首页> 外文期刊>The Indian journal of genetics & plant breeding >Evaluation of bread wheat (Triticum aestivum L.) genotypes for terminal heat tolerance under different environments.
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Evaluation of bread wheat (Triticum aestivum L.) genotypes for terminal heat tolerance under different environments.

机译:评价面包小麦(Triticum aestivum L.)基因型在不同环境下的最终耐热性。

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摘要

Thirty five genetically diverse bread wheat genotypes were evaluated for terminal heat tolerance in three environments by altering the sowing dates viz., non stress (E1), mild heat stress (E2) and high heat stress (E3) using physiological indices. Twelve genotypes showed the consistent performance under E1 and E3 environments. Genotypic performance varied substantially over the E1 and E3 environments. Genotypes namely, HD 2733, CL 3125, HD 2189, C 306, DBW 14, WR 544, PBW 373, HD 2932, Kundan, HD 2967, HD 2997 and L 512 showed least heat susceptibility index (HSI) for grain yield ranging from 0.1 to 0.5. These genotypes also showed least HSI for other associated characters viz., canopy temperature depression, membrane stability index, 1000 grain weight and biological yield and hence can be regarded as tolerant to terminal heat stress. Since the identified genotypes can cope up the effect of heat stress, they can be utilized for developing heat tolerant genotypes.
机译:通过改变播种期(无胁迫(E1),轻度热胁迫(E2)和高热胁迫(E3)),利用生理指标评估了三种遗传上不同的面包小麦基因型在三种环境中的终末耐热性。十二个基因型在E1和E3环境下表现出一致的性能。基因型表现在E1和E3环境中有很大差异。基因型HD 2733,CL 3125,HD 2189,C 306,DBW 14,WR 544,PBW 373,HD 2932,Kundan,HD 2967,HD 2997和L 512对谷物产量的最低热敏指数(HSI)为0.1至0.5。这些基因型还显示出其他相关特征的最小HSI,即冠层温度降低,膜稳定性指数,1000粒重和生物产量,因此可以被认为是对终端热胁迫的耐受性。由于确定的基因型可以应付热应激的影响,因此可以将其用于开发耐热基因型。

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