首页> 美国卫生研究院文献>Plant Physiology >A Nonclassical Arabinogalactan Protein Gene Highly Expressed in Vascular Tissues AGP31 Is Transcriptionally Repressed by Methyl Jasmonic Acid in Arabidopsis
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A Nonclassical Arabinogalactan Protein Gene Highly Expressed in Vascular Tissues AGP31 Is Transcriptionally Repressed by Methyl Jasmonic Acid in Arabidopsis

机译:拟南芥中的甲基茉莉酸转录抑制血管组织中高度表达的非经典阿拉伯半乳聚糖蛋白基因AGP31。

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摘要

In response to wounding and pathogens, jasmonate (JA) serves as a signal molecule for both induction and repression of gene expression. To examine defense-regulated gene repression in Arabidopsis (Arabidopsis thaliana), we have identified a nonclassical arabinogalactan protein (AGP) gene, AGP31, and show that its mRNA decreased to about 30% of its original level within 8 h in response to methyl JA (MeJA) treatment of whole 7-d-old seedlings. Wounding and abscisic acid treatment had similar effects. MeJA suppression primarily depends on the action of the JA-signaling protein, COI1, as shown by much lower MeJA suppression in coi1-1 mutant plants. The main mechanism of mRNA suppression by MeJA is repression of transcription, as shown by nuclear run-on experiments. The AGP31 protein shares features with several known and putative nonclassical AGPs from other species: a putative signal peptide, a histidine-rich region near the N terminus followed by a repetitive proline-rich domain, and a cysteine-rich C-terminal PAC (for proline-rich protein and AGP, containing cysteine) domain. Positive Yariv reagent interaction demonstrated that the protein is an AGP. Monosaccharide analysis of purified AGP31 indicated it is a galactose-rich AGP. Expression of an AGP31-enhanced green fluorescent protein fusion protein in transgenic cells revealed that the AGP31 protein was localized to the cell wall. AGP31 promoter-β-glucuronidase reporter gene analysis showed expression in the vascular bundle throughout the plant, except in the flower. In the flower, β-glucuronidase staining occurred throughout the pistil, except in the stigma. The strong preferential expression in vascular tissues suggests that AGP31 may be involved in vascular tissue function during both the defense response and development.
机译:响应于创伤和病原体,茉莉酸酯(JA)用作诱导和抑制基因表达的信号分子。为了检查拟南芥(Arabidopsis thaliana)中防御调控的基因阻遏,我们鉴定了一种非经典的阿拉伯半乳糖蛋白(AGP)基因AGP31,并显示其响应于甲基JA导致其mRNA在8小时内降至其原始水平的约30%。 (MeJA)处理整整7天的幼苗。伤口处理和脱落酸处理具有相似的效果。 MeJA抑制主要取决于JA信号蛋白COI1的作用,coi1-1突变植物中的MeJA抑制作用要低得多。 MeJA抑制mRNA的主要机制是转录的抑制,如核运行实验所示。 AGP31蛋白与其他物种的一些已知和公认的非经典AGP具有相同的功能:假定的信号肽,N末端附近的富含组氨酸的区域,其后是重复的脯氨酸富集的结构域以及富含半胱氨酸的C末端PAC(对于富含脯氨酸的蛋白质和AGP(包含半胱氨酸)结构域。 Yariv试剂的正向相互作用表明该蛋白是AGP。纯化的AGP31的单糖分析表明它是富含半乳糖的AGP。 AGP31增强的绿色荧光蛋白融合蛋白在转基因细胞中的表达表明,AGP31蛋白位于细胞壁。 AGP31启动子-β-葡糖醛酸糖苷酶报告基因分析表明,该植物在整个植物的维管束中都有表达,除了在花中。在花中,除柱头外,整个雌蕊均发生β-葡萄糖醛酸苷酶染色。血管组织中强烈的优先表达提示AGP31可能在防御反应和发育过程中都参与了血管组织的功能。

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