Zheng Si-Jun, van Dijk Jeroen P, Bruinsma Maaike, Dicke Marcel
Laboratory of Entomology, Wageningen University, P.O. Box 8031, 6700 EH Wageningen, The Netherlands.
Mol Plant Microbe Interact. 2007 Nov;20(11):1332-45. doi: 10.1094/MPMI-20-11-1332.
The lipoxygenase pathway is involved in the early steps of plant responses to herbivorous insects and phytopathogens. Induced defenses in the crucifer Brassica oleracea have been well documented. Here, we have cloned a LIPOXYGENASE (LOX) from B. oleracea (BoLOX). The sequence reveals that the BoLOX protein has a transit peptide for chloroplast targeting, which is characteristic for class 2 LOXs involved in jasmonic acid (JA) biosynthesis which takes place in the chloroplast. Phylogenetic analysis shows that BoLOX is closely related to B. napus BnLOX2fl and Arabidopsis thaliana AtLOX2, which mediates JA biosynthesis. BoLOX also shares functional characteristics with AtLOX2; BoLOX is inducible by wounding, JA treatment, and herbivores such as caterpillars (Pieris rapae, P. brassicae, and Mamestra brassicae), spider mites (Tetranychus urticae), locusts (Schistocerca gregaria), and a bacterial pathogen (Pseudomonas syringae pv. tomato). Of these, Pieris spp. caterpillars also induce AtLOX2 and JA biosynthesis in Arabidopsis. However, the aphid Myzus persicae did not induce BoLOX, which agrees with previous reports that this aphid induces neither AtLOX2 nor JA biosynthesis in Arabidopsis. Quantitative expression analysis of temporal, spatial, and density-dependent BoLOX transcript levels through real-time quantitative polymerase chain reaction demonstrated that BoLOX is maximally expressed after feeding by only two first-instar caterpillars for 24 h. Systemic expression was approximately 10-fold lower than local expression for herbivore-induced responses. The good correlation of BoLOX transcript levels with reports in the literature on induced defenses of B. oleracea is discussed.
脂氧合酶途径参与植物对食草昆虫和植物病原体的早期响应过程。十字花科植物甘蓝的诱导防御机制已有充分记载。在此,我们从甘蓝中克隆了一种脂氧合酶(BoLOX)。序列分析表明,BoLOX蛋白具有一个用于靶向叶绿体的转运肽,这是参与叶绿体中茉莉酸(JA)生物合成的2类脂氧合酶的特征。系统发育分析表明,BoLOX与甘蓝型油菜的BnLOX2fl和拟南芥的AtLOX2密切相关,AtLOX2介导JA生物合成。BoLOX也与AtLOX2具有共同的功能特性;BoLOX可被机械损伤、JA处理以及食草动物如毛虫(菜粉蝶、甘蓝夜蛾和甘蓝粉蝶)、叶螨(二斑叶螨)、蝗虫(沙漠蝗)和一种细菌病原体(番茄丁香假单胞菌)诱导。其中,粉蝶属毛虫也能诱导拟南芥中的AtLOX2和JA生物合成。然而,桃蚜不会诱导BoLOX,这与之前的报道一致,即这种蚜虫在拟南芥中既不诱导AtLOX2也不诱导JA生物合成。通过实时定量聚合酶链反应对BoLOX转录本水平进行时间、空间和密度依赖性的定量表达分析表明,仅在两只一龄毛虫取食24小时后,BoLOX的表达量达到最高。对于食草动物诱导的反应,系统表达比局部表达低约10倍。文中讨论了BoLOX转录本水平与甘蓝诱导防御相关文献报道的良好相关性。