首页> 外文期刊>Molecular Plant >COPPER AMINE OXIDASE1 (CuAO1) of Arabidopsis thaliana Contributes to Abscisic Acid- and Polyamine-Induced Nitric Oxide Biosynthesisn and Abscisic Acid Signal Transduction
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COPPER AMINE OXIDASE1 (CuAO1) of Arabidopsis thaliana Contributes to Abscisic Acid- and Polyamine-Induced Nitric Oxide Biosynthesisn and Abscisic Acid Signal Transduction

机译:拟南芥的铜胺氧化酶1(CuAO1)促进脱落酸和多胺诱导的一氧化氮的生物合成和脱落酸信号转导。

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摘要

Polyamines (PA), polyamine oxidases, copper amine oxidases, and nitric oxide (NO) play important roles in physiology and stress responses in plants. NO biosynthesis as a result of catabolism of PA by polyamine oxidases and copper amine oxidases may explain in part PA-mediated responses. Involvement of a copper amine oxidase gene, COPPER AMINE OXIDASE1 (CuAO1), of Arabidopsis was tested for its role in stress responses using the knockouts cuao1-1 and cuao1-2. PA-induced and ABA-induced NO production investigated by fluorometry and fluorescence microscopy showed that the cuao1-1 and cuao1-2 are impaired in NO production, suggesting a function of CuAO1 in PA and ABA-mediated NO production. Furthermore, we found a PA-dependent increase in protein S-nitrosylation. The addition of PA and ABA also resulted in H2O2 increases. cuao1-1 and cuao1-2 showed less sensitivity to exogenous ABA supplementation during germination, seedling establishment, and root growth inhibition as compared to wild-type. In response to ABA treatment, expression levels of the stress-responsive genes RD29A and ADH1 were significantly lower in the knockouts. These observations characterize cuao1-1 and cuao1-2 as ABA-insensitive mutants. Taken together, our findings extend the ABA signal transduction network to include CuAO1 as one potential contributor to enhanced NO production by ABA.
机译:多胺(PA),多胺氧化酶,铜胺氧化酶和一氧化氮(NO)在植物的生理和胁迫响应中起重要作用。多胺氧化酶和铜胺氧化酶对PA的分解代谢导致NO生物合成可能部分解释了PA介导的反应。使用敲除基因cuao1-1和cuao1-2,测试了拟南芥的铜胺氧化酶基因COPPER AMINE OXIDASE1(CuAO1)参与其在胁迫响应中的作用。通过荧光法和荧光显微镜研究了PA诱导的和ABA诱导的NO产生,结果表明cuao1-1和cuao1-2的NO产生受到损害,表明CuAO1在PA和ABA介导的NO产生中起作用。此外,我们发现蛋白质S-亚硝基化的PA依赖性增加。 PA和ABA的添加也导致H 2 O 2 增加。与野生型相比,cuao1-1和cuao1-2在发芽,幼苗建立和根系生长抑制期间对外源ABA补充的敏感性较低。响应ABA处理,基因敲除中应激反应基因RD29A和ADH1的表达水平明显降低。这些观察结果将cuao1-1和cuao1-2表征为ABA不敏感突变体。综上所述,我们的发现扩展了ABA信号转导网络,将CuAO1包括为ABA增强NO产生的一种潜在因素。

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  • 来源
    《Molecular Plant》 |2011年第4期|p.663-678|共16页
  • 作者

    Günther F. E. Scherer;

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    To whom correspondence should be addressed. E-mail;

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  • 正文语种 eng
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