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首页> 外文期刊>Frontiers in Plant Science >Orthology Analysis and In Vivo Complementation Studies to Elucidate the Role of DIR1 during Systemic Acquired Resistance in Arabidopsis thaliana and Cucumis sativus
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Orthology Analysis and In Vivo Complementation Studies to Elucidate the Role of DIR1 during Systemic Acquired Resistance in Arabidopsis thaliana and Cucumis sativus

机译:正交分析和体内补充研究,以阐明DIR1在拟南芥 sacumus 的系统获得性耐药中的作用

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AtDIR1 (Defective in Induced Resistance1) is an acidic lipid transfer protein essential for systemic acquired resistance (SAR) in Arabidopsis thaliana . Upon SAR induction, DIR1 moves from locally infected to distant uninfected leaves to activate defense priming; however, a molecular function for DIR1 has not been elucidated. Bioinformatic analysis and in silico homology modeling identified putative AtDIR1 orthologs in crop species, revealing conserved protein motifs within and outside of DIR1’s central hydrophobic cavity. In vitro assays to compare the capacity of recombinant AtDIR1 and targeted AtDIR1-variant proteins to bind the lipophilic probe TNS (6, P -toluidinylnaphthalene-2-sulfonate) provided evidence that conserved leucine 43 and aspartic acid 39 contribute to the size of the DIR1 hydrophobic cavity and possibly hydrophobic ligand binding. An Arabidopsis –cucumber SAR model was developed to investigate the conservation of DIR1 function in cucumber ( Cucumis sativus ), and we demonstrated that phloem exudates from SAR-induced cucumber rescued the SAR defect in the Arabidopsis dir1-1 mutant. Additionally, an AtDIR1 antibody detected a protein of the same size as AtDIR1 in SAR-induced cucumber phloem exudates, providing evidence that DIR1 function during SAR is conserved in Arabidopsis and cucumber. In vitro TNS displacement assays demonstrated that recombinant AtDIR1 did not bind the SAR signals azelaic acid (AzA), glycerol-3-phosphate or pipecolic acid. However, recombinant CsDIR1 and CsDIR2 interacted weakly with AzA and pipecolic acid. Bioinformatic and functional analyses using the Arabidopsis –cucumber SAR model provide evidence that DIR1 orthologs exist in tobacco, tomato, cucumber, and soybean, and that DIR1-mediated SAR signaling is conserved in Arabidopsis and cucumber.
机译:AtDIR1(诱导抗性1缺陷)是拟南芥系统获得性抗性(SAR)必不可少的酸性脂质转移蛋白。 SAR诱导后,DIR1从局部感染的叶片移动到远处的未感染叶片以激活防御启动;然而,尚未阐明DIR1的分子功能。生物信息学分析和计算机同源性模型确定了作物物种中假定的AtDIR1直系同源物,揭示了DIR1中央疏水腔内外的保守蛋白基序。比较重组AtDIR1和靶向AtDIR1变异蛋白结合亲脂探针TNS(6,对甲苯二甲萘-2-磺酸盐)的能力的体外测定法提供了证据,表明保守的亮氨酸43和天冬氨酸39有助于DIR1的大小疏水腔和可能的疏水配体结合。建立了拟南芥黄瓜SAR模型,以研究黄瓜(Cucumis sativus)中DIR1功能的保守性,并且我们证明了SAR诱导黄瓜的韧皮部分泌液拯救了拟南芥dir1-1突变体中的SAR缺陷。此外,AtDIR1抗体在SAR诱导的黄瓜韧皮部分泌物中检测到与AtDIR1相同大小的蛋白质,这提供了在拟南芥和黄瓜中SAR期间DIR1功能得以保留的证据。体外TNS置换分析表明,重组AtDIR1不结合SAR信号壬二酸(AzA),3-磷酸甘油或胡椒酸。但是,重组CsDIR1和CsDIR2与AzA和胡椒酸的相互作用较弱。使用拟南芥黄瓜SAR模型进行的生物信息学和功能分析提供了证据,表明烟草,番茄,黄瓜和大豆中存在DIR1直系同源物,而拟南芥和黄瓜中DIR1介导的SAR信号得以保留。

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