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精氨酸脱羧酶ADC2基因的诱导为多胺参与拟南芥伤口反应提供了证据。

Induction of the arginine decarboxylase ADC2 gene provides evidence for the involvement of polyamines in the wound response in Arabidopsis.

作者信息

Perez-Amador Miguel A, Leon Jose, Green Pamela J, Carbonell Juan

机构信息

Instituto de Biología Molecular y Celular de Plantas, Universidad Politécnica de Valencia, Consejo Superior de Investigaciones Científicas, 46022 Valencia, Spain.

出版信息

Plant Physiol. 2002 Nov;130(3):1454-63. doi: 10.1104/pp.009951.

Abstract

Polyamines are small ubiquitous molecules that have been involved in nearly all developmental processes, including the stress response. Nevertheless, no direct evidence of a role of polyamines in the wound response has been described. We have studied the expression of genes involved in polyamine biosynthesis in response to mechanical injury. An increase in the expression of the arginine decarboxylase 2 (ADC2) gene in response to mechanical wounding and methyl jasmonate (JA) treatment in Arabidopsis was detected by using DNA microarray and RNA gel-blot analysis. No induction was observed for the ADC1 gene or other genes coding for spermidine and spermine synthases, suggesting that ADC2 is the only gene of polyamine biosynthesis involved in the wounding response mediated by JA. A transient increase in the level of free putrescine followed the increase in the mRNA level for ADC2. A decrease in the level of free spermine, coincident with the increase in putrescine after wounding, was also observed. Abscisic acid effected a strong induction on ADC2 expression and had no effect on ADC1 expression. Wound-induction of ADC2 mRNA was not prevented in the JA-insensitive coi1 mutant. The different pattern of expression of ADC2 gene in wild-type and coi1 mutant might be due to the dual regulation of ADC2 by abscisic acid and JA signaling pathways. This is the first direct evidence of a function of polyamines in the wound-response, and it opens a new aspect of polyamines in plant biology.

摘要

多胺是普遍存在的小分子,几乎参与了所有的发育过程,包括应激反应。然而,尚未有关于多胺在伤口反应中作用的直接证据的描述。我们研究了参与多胺生物合成的基因在机械损伤后的表达情况。通过DNA微阵列和RNA凝胶印迹分析,检测到拟南芥中精氨酸脱羧酶2(ADC2)基因在机械损伤和茉莉酸甲酯(JA)处理后表达增加。未观察到ADC1基因或其他编码亚精胺和精胺合酶的基因有诱导现象,这表明ADC2是参与JA介导的伤口反应的多胺生物合成的唯一基因。ADC2 mRNA水平升高后,游离腐胺水平短暂增加。伤口处理后,腐胺增加的同时,游离精胺水平下降。脱落酸对ADC2表达有强烈诱导作用,对ADC1表达无影响。在JA不敏感的coi1突变体中,未阻止伤口诱导的ADC2 mRNA表达。野生型和coi1突变体中ADC2基因的不同表达模式可能是由于脱落酸和JA信号通路对ADC2的双重调控。这是多胺在伤口反应中功能的首个直接证据,为植物生物学中多胺研究开辟了新方向。

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