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Heat tolerance in relation to acquired thermotolerance for membrane lipids in bread wheat.

机译:面包小麦中与膜脂获得性耐热性相关的耐热性。

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摘要

Cell membrane stability (CMS) and tetrazolium triphenyl chloride (TTC) test, heat susceptibility index (HSI), heat response index (HRI) and grain yield were used to evaluate diverse 28 bread wheat genotypes including parents and their progenies under normal and heat stress conditions for two years. The genotypes differed significantly for all the characters indicating considerable variation for improvement of these traits. The varieties WH 1021 had a desirable combination of grain yield and heat tolerance potential, while WH 730 had a combination of cellular thermotolerance (TTC and chlorophyll fluorescence), heat tolerance (HRI) and high grain yield under heat stress conditions. Correlation coefficients revealed that HRI was the most important trait followed by TTC because the genotype having high HRI also had high grain yield and showed better mitochondrial viability and membrane stability under heat stress. The use of the parents with high GCA effects, namely, NIAW 34 and WH 730 and WH 1021 in crossing programme for thermotolerance may provide desirable segregants for improvement of heat tolerance in material under study.
机译:细胞膜稳定性(CMS)和四唑三氯苯(TTC)测试,热敏感性指数(HSI),热响应指数(HRI)和谷物产量用于评估28种面包小麦的基因型,包括正常和热胁迫下的亲本及其后代条件两年。所有字符的基因型差异显着,表明这些性状的改善存在很大差异。品种WH 1021具有理想的谷物产量和耐热潜力的组合,而WH 730具有细胞耐热性(TTC和叶绿素荧光),耐热性(HRI)和在热胁迫条件下高谷物产量的组合。相关系数显示,HRI是紧随TTC之后最重要的性状,因为具有高HRI的基因型也具有高谷物产量,并且在热胁迫下表现出更好的线粒体活力和膜稳定性。在耐热性杂交计划中使用具有较高GCA效应的母体,即NIAW 34和WH 730和WH 1021,可以为改善研究材料的耐热性提供理想的隔离剂。

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