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Heat shock-mediated HO accumulation and protection against Cd toxicity in rice seedlings

机译:水稻幼苗热激介导的HO积累及对Cd的保护作用

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Rice (Oryza sativa L.) seedlings stressed with CdCl (0.5 mM or 50 oM) showed typical Cd toxicity (leaf chlorosis, decrease in chlorophyll content, or increase in HO and malondialdehyde contents). Rice seedlings pretreated with heat shock at 45pC (HS) for 2 or 3 h were protected against subsequent Cd stress. Rice seedlings pretreated with HS had similar Cd concentration in leaves caused by CdCl as those non-HS. The content of HO increased in leaves 1 h after HS exposure. However, APX and GR activities were higher in HS-treated leaves than their respective control, and it occurred after 2 h of HS treatment. Pretreatment of rice seedlings with HO under non-HS conditions resulted in an increase in APX, GR, and CAT activities and protected rice seedlings from subsequent Cd stress. HS-induced HO production and protection against subsequent Cd stress can be counteracted by imidazole, an inhibitor of NADPH oxidase complex. Results of the present study suggest that early accumulation of HO during HS signals the increase in APX and GR activities, which in turn prevents rice seedlings from Cd-caused oxidative damage.
机译:受CdCl(0.5 mM或50 oM)胁迫的水稻(Oryza sativa L.)幼苗表现出典型的Cd毒性(叶绿化,叶绿素含量降低,HO和丙二醛含量增加)。在45pC(HS)的温度下经过2h或3h的热激预处理的水稻幼苗受到保护,免受随后的Cd胁迫。用HS预处理的水稻幼苗中CdCl引起的叶片中Cd浓度与非HS相似。 HS暴露1 h后,叶片中HO含量增加。然而,HS处理的叶片中APX和GR活性高于其各自的对照,并且在HS处理2小时后出现。在非HS条件下用HO预处理水稻幼苗会导致APX,GR和CAT活性增加,并保护水稻幼苗免受随后的Cd胁迫。 HS诱导的HO产生和对后续Cd胁迫的保护作用可以通过NADPH氧化酶复合物的抑制剂咪唑来抵消。本研究结果表明,HS期间HO的早期积累表明APX和GR活性增加,从而防止了Cd引起的水稻幼苗氧化损伤。

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