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由特定顺式作用元件组成的合成启动子将多种信号通路与烯丙苯噻唑诱导系统相连接。

Synthetic promoters consisting of defined cis-acting elements link multiple signaling pathways to probenazole-inducible system.

作者信息

Zhu Zheng, Gao Jiong, Yang Jin-xiao, Wang Xiao-yan, Ren Guo-dong, Ding Yu-long, Kuai Ben-ke

机构信息

The Southern Modern Forestry Collaborative Innovation Center, Nanjing Forestry University, Nanjing 210037, China; State Key Laboratory of Genetic Engineering and Institute of Plant Biology, School of Life Sciences, Fudan University, Shanghai 200438, China; College of Biology and the Environment, Nanjing Forestry University, Nanjing 210037, China; Bamboo Research Institute, Nanjing Forestry University, Nanjing 210037, China.

出版信息

J Zhejiang Univ Sci B. 2015 Apr;16(4):253-63. doi: 10.1631/jzus.B1400203.

Abstract

Probenazole (3-allyloxy-1,2-benzisothiazole-1,1-dioxide, PBZ), the active component of Oryzemate, could induce systemic acquired resistance (SAR) in plants through the induction of salicylic acid (SA) biosynthesis. As a widely used chemical inducer, PBZ is a good prospect for establishing a new chemical-inducible system. We first designed artificially synthetic promoters with tandem copies of a single type of cis-element (SARE, JERE, GCC, GST1, HSRE, and W-box) that could mediate the expression of the β-glucuronidase (GUS) reporter gene in plants upon PBZ treatment. Then we combined different types of elements in order to improve inducibility in the PBZ-inducible system. On the other hand, we were surprised to find that the cis-elements, which are responsive to jasmonic acid (JA) and ethylene, also responded to PBZ, implying that SA, JA, and ethylene pathways also would play important roles in PBZ's action. Further analysis demonstrated that PBZ also induced early events of innate immunity via a signaling pathway in which Ca(2+) influx and mitogen-activated protein kinase (MAPK) activity were involved. We constructed synthesized artificial promoters to establish a PBZ chemical-inducible system, and preliminarily explored SA, JA, ethylene, calcium, and MAPK signaling pathways via PBZ-inducible system, which could provide an insight for in-depth study.

摘要

烯丙异噻唑(3-烯丙氧基-1,2-苯并异噻唑-1,1-二氧化物,PBZ)是稻瘟灵的活性成分,可通过诱导水杨酸(SA)生物合成在植物中诱导系统获得性抗性(SAR)。作为一种广泛使用的化学诱导剂,PBZ在建立新的化学诱导系统方面具有良好的前景。我们首先设计了具有单一类型顺式作用元件(SARE、JERE、GCC、GST1、HSRE和W-box)串联拷贝的人工合成启动子,这些元件在PBZ处理后可介导植物中β-葡萄糖醛酸酶(GUS)报告基因的表达。然后我们组合了不同类型的元件,以提高PBZ诱导系统中的诱导性。另一方面,我们惊讶地发现,对茉莉酸(JA)和乙烯有反应的顺式作用元件也对PBZ有反应,这意味着SA、JA和乙烯途径在PBZ的作用中也将发挥重要作用。进一步的分析表明,PBZ还通过涉及Ca(2+)内流和丝裂原活化蛋白激酶(MAPK)活性的信号通路诱导先天免疫的早期事件。我们构建了合成人工启动子以建立PBZ化学诱导系统,并通过PBZ诱导系统初步探索了SA、JA、乙烯、钙和MAPK信号通路,这可为深入研究提供思路。

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