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Abiotic stress–induced inhibition of root growth and ascorbic acid oxidase activity in barley root tip is associated with enhanced generation of hydrogen peroxide

机译:大麦根尖中非生物胁迫诱导的根生长抑制和抗坏血酸氧化酶活性与过氧化氢的产生有关

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摘要

Using short-term treatments, the aim of this study was to analyze the role of hydrogen peroxide in the regulation of AAO activity during Cd, Cu or IAA treatments in barley root tips. For analysis individual barley root segments were obtained by the gradual cutting of each root from the tip to the base 1, 2, 3 or 6 h after short-term treatments. Already a short 30 min exposure of barley roots to Cd induced significant root growth inhibition in a Cd concentration dependent manner, which was accompanied by a marked reduction of AAO activity. At Cu concentration which had no effect on the root growth a significant increase in AAO activity was observed. This increased AAO activity was detected only in ionically-bound CW fraction. In contrast, Cu at higher concentration and IAA inhibited both ionically-bound CW AAO isozymes. Prompt inhibition of AAO activity immediately after short-term treatment was observed only in the case of H2O2 treatment suggesting that H2O2 may act as an inhibitor of AAO. This was further supported by the observation that all Cd-, Cu- or IAA-induced root growth and AAO activity inhibition in barley roots was connected with an elevated production of H2O2.
机译:本研究的目的是使用短期处理方法,分析大麦根尖中Cd,Cu或IAA处理过程中过氧化氢在AAO活性调节中的作用。为了进行分析,通过在短期治疗后1、2、3或6 h从尖端到基部逐渐切下每个根,获得大麦的根段。大麦根短短30分钟就已经以Cd浓度依赖性的方式诱导了显着的根生长抑制,同时伴随着AAO活性的显着降低。在对根部生长没有影响的铜浓度下,观察到AAO活性显着增加。仅在离子结合的CW馏分中检测到了这种增加的AAO活性。相反,较高浓度的Cu和IAA抑制了两个离子结合的CW AAO同工酶。仅在H2 O2 处理的情况下,短期治疗后立即观察到AAO活性的迅速抑制,表明H2 O2 可能是AAO的抑制剂。大麦根系中所有Cd,Cu或IAA诱导的根系生长和AAO活性抑制均与H2O 2 的产生有关,这进一步证明了这一点。

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