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首页> 外文期刊>Plant physiology >Parallel changes in H2O2 and catalase during thermotolerance induced by salicylic acid or heat acclimation in mustard seedlings
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Parallel changes in H2O2 and catalase during thermotolerance induced by salicylic acid or heat acclimation in mustard seedlings

机译:水杨酸诱导的耐热性或芥菜幼苗热适应过程中H2O2和过氧化氢酶的平行变化

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摘要

Spraying mustard (Sinapis alba) seedlings with salicylic acid (SA) solutions between 10 and 500μM significantly improved their tolerance to a subsequent heat shock of 55deg C for 1.5 h. The effects of SA were concentration dependent, with higher concentrations failing to induce thermotolerance. The time course of thermotolerance induced by 100μM SA was similar to that obtained with seedlings acclimatized at 45deg C for 1 h. The hypothesis that induced thermotolerance involved H2O2 was examined. Heat shock at 55deg C caused a significant increase in endogenous H2O2 and reduced catalase activity. A peak in H2O2 content was observed within 5 min of either SA treatment or transfer to the 45deg C acclimatization temperature. Between 2 and 3 h after SA treatmentor heat acclimatization, both H2O2 and catalase activity significantly decreased below control levels. The lowered H2O2 content and catalase activity occurred in the period of maximum thermoprotection. It is suggested that thermoprotection obtained either by spraying SA or by heat acclimatization may be achieved by a common signal transduction pathway involving an early increase in H2O2.
机译:用10至500μM的水杨酸(SA)溶液喷施芥末(Sinapis alba)幼苗,可显着提高其对随后55摄氏度热休克1.5小时的耐受性。 SA的作用是浓度依赖性的,较高的浓度不能诱导耐热性。 100μMSA诱导的耐热性的时间过程与在45℃适应1小时的幼苗获得的时间过程相似。检验了诱导耐热性涉及H2O2的假设。 55摄氏度的热激导致内源性H2O2显着增加,过氧化氢酶活性降低。在SA处理或转移到45℃适应温度下的5分钟内,观察到H2O2含量达到峰值。在SA处理或热适应后的2至3小时内,H2O2和过氧化氢酶的活性均显着下降至控制水平以下。 H2O2含量和过氧化氢酶活性的降低发生在最大热保护期。建议通过喷洒SA或通过热驯化获得的热保护可通过涉及H2O2早期增加的常见信号转导途径来实现。

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