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拟南芥根中盐胁迫对5'-磷酸腺苷硫酸还原酶调控的复杂信号网络

Complex signaling network in regulation of adenosine 5'-phosphosulfate reductase by salt stress in Arabidopsis roots.

作者信息

Koprivova Anna, North Kathryn Anne, Kopriva Stanislav

机构信息

Department of Metabolic Biology, John Innes Centre, Norwich, UK.

出版信息

Plant Physiol. 2008 Mar;146(3):1408-20. doi: 10.1104/pp.107.113175. Epub 2008 Jan 24.

Abstract

Sulfur-containing compounds play an important role in plant stress defense; however, only a little is known about the molecular mechanisms of regulation of sulfate assimilation by stress. Using known Arabidopsis (Arabidopsis thaliana) mutants in signaling pathways, we analyzed regulation of the key enzyme of sulfate assimilation, adenosine 5'-phosphosulfate reductase (APR), by salt stress. APR activity and mRNA levels of all three APR isoforms increased 3-fold in roots after 5 h of treatment with 150 mm NaCl. The regulation of APR was not affected in mutants deficient in abscisic acid (ABA) synthesis and treatment of the plants with ABA did not affect the mRNA levels of APR isoforms, showing that APR is regulated by salt stress in an ABA-independent manner. In mutants deficient in jasmonate, salicylate, or ethylene signaling, APR mRNA levels were increased upon salt exposure similar to wild-type plants. Surprisingly, however, APR enzyme activity was not affected by salt in these plants. The same result was obtained in mutants affected in cytokinin and auxin signaling. Signaling via gibberellic acid, on the other hand, turned out to be essential for the increase in APR mRNA by salt treatment. These results demonstrate an extensive posttranscriptional regulation of plant APR and reveal that the sulfate assimilation pathway is controlled by a complex network of multiple signals on different regulatory levels.

摘要

含硫化合物在植物胁迫防御中发挥着重要作用;然而,关于胁迫对硫酸盐同化调节的分子机制却知之甚少。利用已知的拟南芥信号通路突变体,我们分析了盐胁迫对硫酸盐同化关键酶腺苷5'-磷酸硫酸还原酶(APR)的调节作用。用150 mM NaCl处理5小时后,根部所有三种APR同工型的APR活性和mRNA水平均增加了3倍。在脱落酸(ABA)合成缺陷的突变体中,APR的调节不受影响,用ABA处理植物也不影响APR同工型的mRNA水平,这表明APR受盐胁迫的调节不依赖于ABA。在茉莉酸、水杨酸或乙烯信号传导缺陷的突变体中,盐处理后APR mRNA水平与野生型植物一样增加。然而,令人惊讶的是,这些植物中的APR酶活性不受盐的影响。在细胞分裂素和生长素信号传导受影响的突变体中也得到了相同的结果。另一方面,赤霉素信号传导对于盐处理后APR mRNA的增加至关重要。这些结果证明了植物APR存在广泛的转录后调节,并揭示了硫酸盐同化途径受不同调节水平上多个信号组成的复杂网络控制。

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