Department of Plant Sciences, 252 Ellington Plant Sciences Building, University of Tennessee, 2431 Joe Johnson Drive, Knoxville, TN 37996, USA.
Plant Physiol Biochem. 2010 Apr;48(4):279-87. doi: 10.1016/j.plaphy.2010.01.023. Epub 2010 Feb 8.
Two benzenoid esters, methyl salicylate (MeSA) and methyl benzoate (MeBA), were detected from insect-damaged rice plants. By correlating metabolite production with gene expression analysis, five candidate genes encoding putative carboxyl methyltransferases were identified. Enzymatic assays with Escherichia coli-expressed recombinant proteins demonstrated that only one of the five candidates, OsBSMT1, has salicylic acid (SA) methyltransferase (SAMT) and benzoic acid (BA) methyltransferase (BAMT) activities for producing MeSA and MeBA, respectively. Whereas OsBSMT1 is phylogenetically relatively distant from dicot SAMTs, the three-dimensional structure of OsBSMT1, which was determined using homology-based structural modeling, is highly similar to those of characterized SAMTs. Analyses of OsBSMT1 expression in wild-type rice plants under various stress conditions indicate that the jasmonic acid (JA) signaling pathway plays a critical role in regulating the production and emission of MeSA in rice. Further analysis using transgenic rice plants overexpressing NH1, a key component of the SA signaling pathway in rice, suggests that the SA signaling pathway also plays an important role in governing OsBSMT1 expression and emission of its products, probably through a crosstalk with the JA signaling pathway. The role of the volatile products of OsBSMT1, MeSA and MeBA, in rice defense against insect herbivory is discussed.
两种苯甲醯酯,水杨酸甲酯(MeSA)和苯甲酸甲酯(MeBA),从受虫害的水稻植株中被检测到。通过将代谢产物的产生与基因表达分析相关联,鉴定了五个编码假定的羧基甲基转移酶的候选基因。利用大肠杆菌表达的重组蛋白进行的酶促分析表明,这五个候选基因中只有一个,即 OsBSMT1,具有水杨酸(SA)甲基转移酶(SAMT)和苯甲酸(BA)甲基转移酶(BAMT)活性,分别用于产生 MeSA 和 MeBA。虽然 OsBSMT1 在系统发育上与双子叶植物的 SAMTs 相对较远,但使用同源建模确定的 OsBSMT1 的三维结构与已鉴定的 SAMTs 非常相似。在各种胁迫条件下对野生型水稻中 OsBSMT1 的表达进行分析表明,茉莉酸(JA)信号通路在调节水稻中 MeSA 的产生和排放中起着关键作用。使用过量表达水稻中 SA 信号通路关键成分 NH1 的转基因水稻进行的进一步分析表明,SA 信号通路也在调控 OsBSMT1 的表达和其产物的排放中起着重要作用,可能通过与 JA 信号通路的交叉作用。讨论了 OsBSMT1 的挥发性产物 MeSA 和 MeBA 在水稻抵御昆虫取食中的作用。