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参与激活 SA 生物合成基因的 WRKY 转录因子。

WRKY transcription factors involved in activation of SA biosynthesis genes.

机构信息

Institute of Biology, Leiden University, Leiden, The Netherlands.

出版信息

BMC Plant Biol. 2011 May 19;11:89. doi: 10.1186/1471-2229-11-89.

Abstract

BACKGROUND

Increased defense against a variety of pathogens in plants is achieved through activation of a mechanism known as systemic acquired resistance (SAR). The broad-spectrum resistance brought about by SAR is mediated through salicylic acid (SA). An important step in SA biosynthesis in Arabidopsis is the conversion of chorismate to isochorismate through the action of isochorismate synthase, encoded by the ICS1 gene. Also AVRPPHB SUSCEPTIBLE 3 (PBS3) plays an important role in SA metabolism, as pbs3 mutants accumulate drastically reduced levels of SA-glucoside, a putative storage form of SA. Bioinformatics analysis previously performed by us identified WRKY28 and WRKY46 as possible regulators of ICS1 and PBS3.

RESULTS

Expression studies with ICS1 promoter::β-glucuronidase (GUS) genes in Arabidopsis thaliana protoplasts cotransfected with 35S::WRKY28 showed that over expression of WRKY28 resulted in a strong increase in GUS expression. Moreover, qRT-PCR analyses indicated that the endogenous ICS1 and PBS3 genes were highly expressed in protoplasts overexpressing WRKY28 or WRKY46, respectively. Electrophoretic mobility shift assays indentified potential WRKY28 binding sites in the ICS1 promoter, positioned -445 and -460 base pairs upstream of the transcription start site. Mutation of these sites in protoplast transactivation assays showed that these binding sites are functionally important for activation of the ICS1 promoter. Chromatin immunoprecipitation assays with haemagglutinin-epitope-tagged WRKY28 showed that the region of the ICS1 promoter containing the binding sites at -445 and -460 was highly enriched in the immunoprecipitated DNA.

CONCLUSIONS

The results obtained here confirm results from our multiple microarray co-expression analyses indicating that WRKY28 and WRKY46 are transcriptional activators of ICS1 and PBS3, respectively, and support this in silico screening as a powerful tool for identifying new components of stress signaling pathways.

摘要

背景

植物通过激活一种被称为系统获得性抗性 (SAR) 的机制来增强对各种病原体的防御能力。SAR 带来的广谱抗性是通过水杨酸 (SA) 介导的。拟南芥中 SA 生物合成的一个重要步骤是通过异分支酸合酶(ICS1 基因编码)将分支酸转化为异分支酸。此外,AVRPPHB SUSCEPTIBLE 3(PBS3)在 SA 代谢中也起着重要作用,因为 pbs3 突变体积累的 SA-葡糖苷水平急剧降低,SA-葡糖苷是 SA 的一种假定储存形式。我们之前进行的生物信息学分析鉴定出 WRKY28 和 WRKY46 可能是 ICS1 和 PBS3 的调控因子。

结果

在共转染 35S::WRKY28 的拟南芥原生质体中,用 ICS1 启动子::β-葡萄糖醛酸酶(GUS)基因进行表达研究表明,WRKY28 的过表达导致 GUS 表达的强烈增加。此外,qRT-PCR 分析表明,WRKY28 或 WRKY46 过表达的原生质体中内源性 ICS1 和 PBS3 基因高度表达。电泳迁移率变动分析鉴定出 ICS1 启动子中潜在的 WRKY28 结合位点,位于转录起始位点上游-445 和-460 个碱基对处。在原生质体转录激活测定中突变这些位点表明,这些结合位点对于 ICS1 启动子的激活具有功能重要性。用带有血球凝集素表位标签的 WRKY28 进行染色质免疫沉淀测定表明,含有-445 和-460 处结合位点的 ICS1 启动子区域在免疫沉淀的 DNA 中高度富集。

结论

这里获得的结果证实了我们的多个微阵列共表达分析的结果,表明 WRKY28 和 WRKY46 分别是 ICS1 和 PBS3 的转录激活因子,并支持这种基于硅筛选作为识别应激信号通路新成分的有力工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/277b/3120740/b8040ca68181/1471-2229-11-89-1.jpg

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