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Expression profiling of metabolic genes in response to methyl jasmonate reveals regulation of genes of primary and secondary sulfur-related pathways in Arabidopsis thaliana

机译:响应茉莉酸甲酯代谢基因的表达谱揭示拟南芥中硫相关途径的基因调控。

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The treatment of Arabidopsis thaliana with methyl jasmonate was used to investigate the reaction of 2467 selected genes of primary and secondary metabolism by macroarray hybridization. Hierarchical cluster analysis allowed distinctions to be made between diurnally and methyl jasmonate regulated genes in a time course from 30 min to 24 h. 97 and 64 genes were identified that were up- or down-regulated more than 2–fold by methyl jasmonate, respectively. These genes belong to 18 functional categories of which sulfur-related genes were by far strongest affected. Gene expression and metabolite patterns of sulfur metabolism were analysed in detail, since numerous defense compounds contain oxidized or reduced sulfur. Genes encoding key reactions of sulfate reduction as well as of cysteine, methionine and glutathione synthesis were rapidly up-regulated, but none of the known sulfur-deficiency induced sulfate transporter genes. In addition, increased expression of genes of sulfur-rich defense proteins and of enzymes involved in glucosinolate metabolism was observed. In contrast, profiling of primary and secondary sulfur metabolites revealed only an increase in the indole glucosinolate glucobrassicin upon methyl jasmonate treatment. The observed rapid mRNA changes were thus regulated by a signal independent of the known sulfur deficiency response. These results document for the first time how comprehensively the regulation of sulfur-related genes and plant defense are connected. This interaction is discussed as a new approach to differentiate between supply- and demand-driven regulation of the sulfate assimilation pathway.
机译:茉莉酸甲酯处理拟南芥用于通过大阵列杂交研究2467个初级和次级代谢选择基因的反应。层次聚类分析允许在30分钟至24小时的时间范围内将昼夜节律和茉莉酸甲酯调节的基因区分开。鉴定出97个和64个被茉莉酸甲酯分别上调或下调2倍以上的基因。这些基因属于18个功能类别,其中与硫有关的基因受到的影响最大。由于许多防御化合物均含有氧化或还原的硫,因此详细分析了硫代谢的基因表达和代谢产物模式。编码硫酸盐还原以及半胱氨酸,蛋氨酸和谷胱甘肽合成关键反应的基因被迅速上调,但是没有一个已知的硫缺乏诱导的硫酸盐转运蛋白基因。另外,观察到富含硫的防御蛋白和参与芥子油苷代谢的酶的基因表达增加。相反,对主要和次要硫代谢物的分析表明,茉莉酸甲酯处理后,吲哚芥子油苷葡萄糖苷葡糖嘧啶的含量仅增加。因此,所观察到的快速mRNA变化由独立于已知硫缺乏反应的信号调节。这些结果首次证明了硫相关基因的调控与植物防御之间的综合联系。讨论这种相互作用是区分硫酸盐同化途径的供需驱动调节的一种新方法。

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