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拟南芥转录抑制因子 ERF9 参与抵抗坏死性真菌。

The Arabidopsis transcriptional repressor ERF9 participates in resistance against necrotrophic fungi.

机构信息

Faculty of Science and Graduate School of Life Science, Hokkaido University, Kita-ku N10-W8, Sapporo 060-0810, Japan.

出版信息

Plant Sci. 2013 Dec;213:79-87. doi: 10.1016/j.plantsci.2013.08.008. Epub 2013 Sep 1.

Abstract

Complex plant defenses that include the hypersensitive response (HR) are mediated by plant hormones, such as salicylic acid (SA), jasmonic acid (JA) and ethylene. We previously isolated the Arabidopsis DEAR1 (DREB AND EAR MOTIF PROTEIN 1) regulator and showed that its overexpression DEAR1 (DEAR1ox) resulted in a dwarf phenotype and lesion-like cell death, accompanied by elevated expression of PR (PATHOGENESIS-RELATED) genes. Here, we show that transgenic Arabidopsis overexpressing DEAR1 (DEAR1ox) has enhanced resistance to the necrotrophic fungus Botrytis cinerea (B. cinerea). This result indicates that DEAR1 represses negative regulators of plant defense responses, including transcriptional repressors belonging to the ERF (ETHYLEN RESPONSE FACTOR) family. Knockout mutants of ERF9 (erf9), which were down-regulated in DEAR1ox plants, showed transcriptional promotion of PDF1.2 (PATHOGEN-INDUCIBLE PLANT DEFENSIN) genes, which serve as positive markers for the ethylene/jasmonic acid (JA) signaling pathway and provide enhanced resistance to B. cinerea. Biochemical assays demonstrated that the ERF9 in capable of binding to the GCC box, a cis-element contained in the promoters of the PDF1.2 gene that possesses trans-repression activity. Moreover, infection with B. cinerea resulted in the promotion of the PDF1.2 expression, coinciding with suppression of the ERF9 gene under the control of the DEAR1 gene. These results indicate that the transcriptional repressor ERF9 participates in plant defense mechanisms against necrotic fungi mediated by the DEAR1-dependent ethylene/JA signaling pathway.

摘要

复杂的植物防御系统包括过敏反应(HR),由植物激素如水杨酸(SA)、茉莉酸(JA)和乙烯调节。我们之前分离了拟南芥 DEAR1(DREB 和 EAR MOTIF PROTEIN 1)调节剂,并表明其过表达 DEAR1(DEAR1ox)导致矮化表型和类似病变的细胞死亡,同时 PR(PATHOGENESIS-RELATED)基因的表达升高。在这里,我们表明过表达 DEAR1(DEAR1ox)的转基因拟南芥对坏死真菌 Botrytis cinerea(B. cinerea)具有增强的抗性。这一结果表明 DEAR1 抑制了植物防御反应的负调控因子,包括属于 ERF(ETHYLEN RESPONSE FACTOR)家族的转录抑制因子。在 DEAR1ox 植物中下调的 ERF9(erf9)的敲除突变体显示 PDF1.2(PATHOGEN-INDUCIBLE PLANT DEFENSIN)基因的转录促进,该基因作为乙烯/茉莉酸(JA)信号通路的正标记,提供对 B. cinerea 的增强抗性。生化分析表明,ERF9 能够结合 GCC 盒,这是 PDF1.2 基因启动子中包含的顺式元件,具有转录抑制活性。此外,感染 B. cinerea 导致 PDF1.2 表达的促进,同时在 DEAR1 基因控制下 ERF9 基因的抑制。这些结果表明,转录抑制因子 ERF9 参与了由 DEAR1 依赖的乙烯/JA 信号通路介导的对坏死真菌的植物防御机制。

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