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Biochemical responses of thiourea in ameliorating high temperature stress by enhancing antioxidant defense system in wheat

机译:硫脲通过增强小麦抗氧化防御系统缓解高温胁迫的生化响应

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摘要

In this study, effect of exogenously applied thiourea (TU, 6.6 mM) and dithiothreitol (DTT, 0.07 mM) as seed pretreatment or as foliar spray (at 90 days after sowing) in two wheat (Triticum aestivum L.) cvs. C 306 (heat tolerant) and PBW 343 (heat susceptible) at seedling and reproductive stages under high temperature (HT) stress was investigated. The heat tolerant cv. C 306 exhibited much lower membrane injury index (MII), thiobarbituric acid reactive substances (TBARs) and H2O2 contents, but such effect was not accompanied by higher activities of the enzymes involved in the reactive oxygen species scavenging system during both developmental stages. Application of TU under HT reduced MII and TBARs and H2O2 contents, but as a rule did not affect activities of antioxidant enzymes. Therefore pretreatment by TU/DTT, no doubt, improved the resistance against oxidative stress through increase in membrane stability parameters but their effect on antioxidant enzymes was not apparent under the prevailing conditions of the experiment.
机译:在这项研究中,外源施用硫脲(TU,6.6 mM)和二硫苏糖醇(DTT,0.07 mM)作为种子预处理或作为叶面喷雾剂(播种后90天)在两种小麦(Triticum aestivum L.)cvs中的作用。研究了高温(HT)胁迫下幼苗和生殖阶段的C 306(耐热)和PBW 343(热敏感)。耐热简历。 C 306表现出低得多的膜损伤指数(MII),硫代巴比妥酸反应性物质(TBAR)和H2O2含量,但是在两个发育阶段,这种作用并没有伴随着活性氧清除系统中涉及的酶的更高活性。在HT下施用TU可以降低MII和TBAR和H2O2含量,但通常不会影响抗氧化酶的活性。因此,毫无疑问,通过TU / DTT预处理可以通过增加膜稳定性参数来提高抗氧化性,但在实验的主要条件下,它们对抗氧化酶的作用并不明显。

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