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在拟南芥中过表达 AtWRKY28 和 AtWRKY75 增强了对草酸和核盘菌的抗性。

Overexpression of AtWRKY28 and AtWRKY75 in Arabidopsis enhances resistance to oxalic acid and Sclerotinia sclerotiorum.

机构信息

Key Laboratory of Bio-pesticide and Chemistry Biology, Ministry of Education, Fuzhou, 350002, People's Republic of China,

出版信息

Plant Cell Rep. 2013 Oct;32(10):1589-99. doi: 10.1007/s00299-013-1469-3. Epub 2013 Jun 8.

Abstract

Based on Arabidopsis microarray, we found 8 WRKY genes were up-regulated with Oxalic acid (OA) challenge, AtWRKY28 and AtWRKY75 overexpression lines showed enhanced resistance to OA and Sclerotinia sclerotiorum. The WRKY transcription factors are involved in various plant physiological processes and most remarkably in coping with diverse biotic and abiotic stresses. Oxalic acid (OA) is an important pathogenicity-determinant of necrotrophic phytopathogenic fungi, such as Sclerotina sclerotiorum (S. sclerotiorum) and Botrytis cinerea (B. cinerea). The identification of differentially expressed genes under OA stress should facilitate our understanding of the pathogenesis mechanism of OA-producing fungi in host plants, and the mechanism of how plants respond to OA and pathogen infection. Based on Arabidopsis oligo microarray, we found 8 WRKY genes that were up-regulated upon OA challenge. The Arabidopsis plants overexpressing AtWRKY28 and AtWRK75 showed enhanced resistance to OA and S. sclerotiorum simultaneously. Furthermore, our results showed that overexpression of AtWRKY28 and AtWRK75 induced oxidative burst in host plants, which suppressed the hyphal growth of S. sclerotiorum, and consequently inhibited fungal infection. Gene expression profiling indicates that both AtWRKY28 and AtWRKY75 are transcriptional regulators of salicylic acid (SA)- and jasmonic acid/ethylene (JA/ET)-dependent defense signaling pathways, AtWRKY28 and AtWRKY75 mainly active JA/ET pathway to defend Arabidopsis against S. sclerotiorum and oxalic acid stress.

摘要

基于拟南芥微阵列,我们发现 8 个 WRKY 基因在草酸(OA)胁迫下上调,AtWRKY28 和 AtWRKY75 过表达系表现出对 OA 和核盘菌的增强抗性。WRKY 转录因子参与各种植物生理过程,最显著的是应对各种生物和非生物胁迫。草酸(OA)是一种重要的植物坏死性植物病原真菌的致病性决定因素,如核盘菌(Sclerotinia sclerotiorum)和灰葡萄孢(Botrytis cinerea)。鉴定 OA 胁迫下差异表达的基因应有助于我们理解 OA 产生真菌在宿主植物中的发病机制,以及植物如何对 OA 和病原体感染做出反应。基于拟南芥寡核苷酸微阵列,我们发现 8 个 WRKY 基因在 OA 胁迫下上调。过表达 AtWRKY28 和 AtWRK75 的拟南芥植株同时对 OA 和核盘菌表现出增强的抗性。此外,我们的结果表明,AtWRKY28 和 AtWRK75 的过表达诱导了宿主植物的氧化爆发,抑制了核盘菌的菌丝生长,从而抑制了真菌的感染。基因表达谱分析表明,AtWRKY28 和 AtWRKY75 都是水杨酸(SA)和茉莉酸/乙烯(JA/ET)依赖防御信号通路的转录调节因子,AtWRKY28 和 AtWRKY75 主要通过 JA/ET 途径激活来防御拟南芥抵抗核盘菌和草酸胁迫。

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