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拟南芥EIN2通过脱落酸反应途径调节胁迫反应。

Arabidopsis EIN2 modulates stress response through abscisic acid response pathway.

作者信息

Wang Youning, Liu Chuang, Li Kexue, Sun Feifei, Hu Haizhou, Li Xia, Zhao Yankun, Han Chunyu, Zhang Wensheng, Duan Yunfeng, Liu Mengyu, Li Xia

机构信息

The State Key Laboratory of Plant Cell and Chromosome Engineering, Center for Agricultural Resources, Institute of Genetics and Developmental Biology, Chinese Academy of Science, 286 Huaizhong Road, Shijiazhuang, Hebei, 050021, PR China.

出版信息

Plant Mol Biol. 2007 Aug;64(6):633-44. doi: 10.1007/s11103-007-9182-7. Epub 2007 May 29.

Abstract

The nuclear protein ETHYLENE INSENSITIVE2 (EIN2) is a central component of the ethylene signal transduction pathway in plants, and plays an important role in mediating cross-links between several hormone response pathways, including abscisic acid (ABA). ABA mediates stress responses in plants, but there is no report on the role of EIN2 on plant response to salt and osmotic stresses. Here, we show that EIN2 gene regulates plant response to osmotic and salt stress through an ABA-dependent pathway in Arabidopsis. The expression of the EIN2 gene is down-regulated by salt and osmotic stress. An Arabidopsis EIN2 null mutant was supersensitive to both salt and osmotic stress conditions. Disruption of EIN2 specifically altered the expression pattern of stress marker gene RD29B in response to the stresses, but not the stress- or ABA-responsive genes RD29A and RD22, suggesting EIN2 modulates plant stress responses through the RD29B branch of the ABA response. Furthermore, disruption of EIN2 caused substantial increase in ABA. Lastly, our data showed that mutations of other key genes in ethylene pathway also had altered sensitivity to abiotic stresses, indicating that the intact ethylene may involve in the stress response. Taken together, the results identified EIN2 as a cross-link node in ethylene, ABA and stress signaling pathways, and EIN2 is necessary to induce developmental arrest during seed germination, and seedling establishment, as well as subsequent vegetative growth, thereby allowing the survival and growth of plants under the adverse environmental conditions.

摘要

核蛋白乙烯不敏感2(EIN2)是植物乙烯信号转导途径的核心组成部分,在介导包括脱落酸(ABA)在内的多种激素反应途径之间的交联中发挥重要作用。ABA介导植物的应激反应,但关于EIN2在植物对盐和渗透胁迫反应中的作用尚无报道。在此,我们表明EIN2基因通过拟南芥中的ABA依赖途径调节植物对渗透和盐胁迫的反应。EIN2基因的表达受盐和渗透胁迫的下调。拟南芥EIN2缺失突变体对盐和渗透胁迫条件均超敏感。EIN2的破坏特异性地改变了应激标记基因RD29B对胁迫的表达模式,但未改变应激或ABA反应基因RD29A和RD22的表达模式,这表明EIN2通过ABA反应的RD29B分支调节植物应激反应。此外,EIN2的破坏导致ABA大量增加。最后,我们的数据表明乙烯途径中其他关键基因的突变也改变了对非生物胁迫的敏感性,表明完整的乙烯可能参与应激反应。综上所述,结果确定EIN2为乙烯、ABA和应激信号通路中的交联节点,并且EIN2是诱导种子萌发、幼苗建立以及随后营养生长期间发育停滞所必需的,从而使植物在不利环境条件下存活和生长。

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