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The Arabidopsis ubiquitin ligase ATL31 is transcriptionally controlled by WRKY33 transcription factor in response to pathogen attack

机译:响应病原体攻击,拟南芥泛素连接酶ATL31受WRKY33转录因子转录控制

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摘要

ATL31, an Arabidopsis RING-type ubiquitin ligase, plays a critical role in plant carbonitrogen (C/N)-nutrient responses during post-germinative growth and in defense responses to pathogen attack. ATL31 expression under these stress conditions suggested the presence of transcriptional regulators mediated by these stress signals. We recently reported that the expression pattern of WRKY33, a transcription factor involved in plant defense responses, is highly correlated with that of ATL31. In this study, we investigated the detailed relationship between the ATL31 gene and WRKY33. Using transient reporter analysis, we found that WRKY33 could significantly activate ATL31 transcription in plant cells. Transcript analysis of stable transgenic Arabidopsis plants overexpressing WRKY33 confirmed that the expression of ATL31 in response to the PAMPs flg22 and chitin was enhanced compared with wild-type plants, while expression was repressed in wrky33 mutants. Further detailed transient reporter analysis revealed that transactivation by WRKY33 is required and mediated through a specific W-box cis-acting element in the promoter region of the ATL31 gene. In contrast, WRKY33 did not regulate ATL31 expression during the C/N response. Taken together, these results demonstrate that WRKY33 acts as a transcription factor of ATL31 and positively regulates its expression during activation of plant defense responses.
机译:ATL31是拟南芥属RING型泛素连接酶,在发芽后的生长过程中以及在对病原体侵袭的防御反应中,在植物碳/氮(C / N)-营养素反应中起关键作用。在这些应激条件下的ATL31表达表明存在由这些应激信号介导的转录调节子。我们最近报道,参与植物防御反应的转录因子WRKY33的表达模式与ATL31高度相关。在这项研究中,我们调查了ATL31基因和WRKY33之间的详细关系。使用瞬时报告子分析,我们发现WRKY33可以显着激活植物细胞中的ATL31转录。对过表达WRKY33的稳定转基因拟南芥植物的转录本分析证实,与野生型植物相比,响应PAMPs flg22和几丁质的ATL31的表达有所增强,而在wrky33突变体中则表达受到抑制。进一步详细的瞬时报告基因分析表明,需要WRKY33反式激活,并通过ATL31基因启动子区域中的特定W-box顺式作用元件介导。相反,在C / N反应过程中WRKY33不能调节ATL31的表达。综上所述,这些结果表明,WRKY33充当ATL31的转录因子,并在激活植物防御反应期间积极调节其表达。

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