Danner Holger, Boeckler G Andreas, Irmisch Sandra, Yuan Joshua S, Chen Feng, Gershenzon Jonathan, Unsicker Sybille B, Köllner Tobias G
Max Planck Institute for Chemical Ecology, Department of Biochemistry, Hans-Knöll Straße 8, 07745 Jena, Germany.
Department of Plant Sciences, University of Tennessee, Knoxville, TN 37996, USA.
Phytochemistry. 2011 Jun;72(9):897-908. doi: 10.1016/j.phytochem.2011.03.014. Epub 2011 Apr 12.
After herbivore damage, many plants increase their emission of volatile compounds, with terpenes usually comprising the major group of induced volatiles. Populus trichocarpa is the first woody species with a fully sequenced genome, enabling rapid molecular approaches towards characterization of volatile terpene biosynthesis in this and other poplar species. We identified and characterized four terpene synthases (PtTPS1-4) from P. trichocarpa which form major terpene compounds of the volatile blend induced by gypsy moth (Lymantria dispar) feeding. The enzymes were heterologously expressed and assayed with potential prenyl diphosphate substrates. PtTPS1 and PtTPS2 accepted only farnesyl diphosphate and produced (-)-germacrene D and (E,E)-α-farnesene as their major products, respectively. In contrast, PtTPS3 and PtTPS4 showed both mono- and sesquiterpene synthase activity. They produce the acyclic terpene alcohols linalool and nerolidol but exhibited opposite stereospecificity. qRT-PCR analysis revealed that the expression of the respective terpene synthase genes was induced after feeding of gypsy moth caterpillars. The TPS enzyme products may play important roles in indirect defense of poplar to herbivores and in mediating intra- and inter-plant signaling.
在遭受食草动物损害后,许多植物会增加其挥发性化合物的释放,其中萜类化合物通常是诱导挥发性物质的主要组成部分。毛果杨是首个拥有全基因组测序的木本物种,这使得我们能够通过快速分子方法来表征该物种以及其他杨树物种中挥发性萜类生物合成过程。我们从毛果杨中鉴定并表征了四种萜类合酶(PtTPS1 - 4),它们构成了由舞毒蛾(Lymantria dispar)取食诱导产生的挥发性混合物中的主要萜类化合物。这些酶在异源系统中表达,并与潜在的异戊烯基二磷酸底物一起进行检测。PtTPS1和PtTPS2仅接受法尼基二磷酸,并分别产生(-)- 大根香叶烯D和(E,E)-α-法尼烯作为其主要产物。相比之下,PtTPS3和PtTPS4同时表现出单萜和倍半萜合酶活性。它们产生无环萜烯醇芳樟醇和橙花叔醇,但表现出相反的立体特异性。qRT-PCR分析表明,在舞毒蛾幼虫取食后,相应萜类合酶基因的表达被诱导。TPS酶产物可能在杨树对食草动物的间接防御以及介导植物内和植物间信号传导中发挥重要作用。