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首页> 外文期刊>Plant Physiology and Biochemistry >Jasmonate and aluminum crosstalk in tomato: Identification and expression analysis of WRKYs and ALMTs during JA/Al-regulated root growth
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Jasmonate and aluminum crosstalk in tomato: Identification and expression analysis of WRKYs and ALMTs during JA/Al-regulated root growth

机译:番茄中的茉莉和铝串联:JA / Al监管根系生长期间的Wrkys和Almts的鉴定和表达分析

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The WRKY transcription factors (TFs) are involved in aluminum (Al) stress and jasmonic acid (JA)-regulated resistance responses. WRKYs act as regulators of Al-activated malate transporter (ALMT) proteins (anion channels) by directly binding to their promoters and altering malate efflux, thereby regulating Al ion toxicity in plant roots. JA enhances Al-induced root growth inhibition in Arabidopsis. However, the relationship between WRKY and ALMT genes and their involvement in JA-mediated root growth inhibition during Al stress in tomato remain unknown. Here, we demonstrate a similar phenomenon that JA enhances Al-induced root growth inhibition in tomato (Solanum lycopersicum). By analyzing RNA-seq data and tissue-specific expression data from public databases, we selected 17 WRKY and 6 ALMT family genes to identify the genes participated in this process. The promoters of many of the selected genes contained MeJA responsive element, G-box (target site of MYC2, a core TF of JA signaling), and W-box (target site for WRKY). Quantitative real-time PCR was performed to evaluate the expression levels of selected WRKY and ALMT genes under AlCl3 and Methyl jasmonate (MeJA) treatment. SlMYC2-VIGS seedlings and jasmonic acid-insensitivel (jail) mutant were also employed to analyze the expression patterns of selected genes. We find that SlALMT3 is responsible for the crosstalk regulatory mechanism between Al and JA in root growth inhibition, and 6 SlWRKYs may act as the upstream regulators of SlALMT3 in this crosstalk response. This study is initial and informative in exploring the crosstalk regulatory mechanism between JA and Al in tomato.
机译:Wrky转录因子(TFS)涉及铝(Al)应激和茉莉酸(JA) - 调节抗性反应。 Wrkys通过直接与其启动子直接结合并改变雄性流出来充当al-活化的苹果醛转运蛋白(ALMT)蛋白(ANION通道)的调节剂,从而调节植物根中的Al离子毒性。 JA增强了拟南芥中的al诱导的根生长抑制。然而,Wrky和AlMT基因之间的关系及其在番茄中胁迫期间的JA介导的根生长抑制的关系仍然未知。在这里,我们证明了JA在番茄(Solanum Lycopersicum)中增强了Al诱导的根生长抑制的类似现象。通过分析来自公共数据库的RNA-SEQ数据和组织特异性表达数据,我们选择了17个WRKY和6个ALMT家族基因,以识别参与此过程的基因。许多所选基因的启动子包含MejA响应元件,G盒(Myc2的靶位点,JA信号传导的核心TF)和W-Box(用于Wrky的目标站点)。进行定量实时PCR以评估AlCl3和茉莉酸甲酯(MEJA)处理下所选腕骨和ALMT基因的表达水平。 SLMYC2-VIGS幼苗和茉莉酸 - Insensitivel(JAMAL)突变体也用于分析所选基因的表达模式。我们发现Slalmt3负责根系生长抑制中Al和JA之间的串扰调节机制,6个SLWRKYS可以充当该串扰反应中的梭杆菌的上游调节因子。本研究是初步和信息的探讨番茄中JA和AL之间的串扰调节机制。

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