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ABA Controls H2O2 Accumulation Through the Induction of OsCATB in Rice Leaves Under Water Stress

机译:ABA通过诱导水分胁迫下水稻叶片中OsCATB的积累来控制H2O2的积累

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摘要

The production of both ABA and H2O2 is induced by drought and can act as signals under stress conditions. We investigated the relationships between ABA, H2O2 and catalase (CAT) in rice leaves when rice seedlings were treated with polyethylene glycol as water stress treatment. As a key gene in ABA biosynthesis, OsNCED3 was significantly induced in rice by water stress treatment and such induction preceded the rapid increase in ABA. Water stress inhibited the expression of CATA and CATC but substantially enhanced the expression of CATB. Exogenously applied ABA promoted the expression of CATB also and inhibited the expression of CATC in a concentration-dependent manner. When ABA production was inhibited by using ABA biosynthesis inhibitors nordihydroguaiaretic acid and tungstate, expression of CATB was also subdued while CATC was enhanced under the water stress. Accumulation of H2O2 was also reduced when endogenous ABA production was inhibited and showed a correlation with the total activity of catalases. Our results suggest that water stress-induced ABA prevents the excessive accumulation of H2O2, through the induction of the expression of CATB gene during water stress.
机译:干旱诱导ABA和H 2 O 2 的产生,在胁迫条件下可以作为信号。我们研究了用聚乙二醇作为水分胁迫处理水稻幼苗时,ABA,H 2 O 2 与过氧化氢酶(CAT)之间的关系。 OsNCED3是ABA生物合成的关键基因,通过水分胁迫处理可在水稻中得到明显诱导,且这种诱导先于ABA的快速升高。水分胁迫抑制了CATA和CATC的表达,但大大增强了CATB的表达。外源施加的ABA也促进CATB的表达,并以浓度依赖的方式抑制CATC的表达。当使用ABA生物合成抑制剂去甲二氢愈创木酸和钨酸抑制ABA产生时,在水分胁迫下,CATB的表达也减弱,而CATC增强。当抑制内源ABA产生时,H 2 O 2 的积累也减少了,并且与过氧化氢酶的总活性相关。我们的研究结果表明,水分胁迫诱导的ABA通过诱导水分胁迫期间CATB基因的表达来防止H 2 O 2 的过度积累。

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