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Characterization of a Root-Specific Arabidopsis Terpene Synthase Responsible for the Formation of the Volatile Monoterpene 1,8-Cineole1

机译:负责的挥发性单萜1,8-Cineole1的根特定拟南芥萜合酶的表征。

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摘要

Arabidopsis is emerging as a model system to study the biochemistry, biological functions, and evolution of plant terpene secondary metabolism. It was previously shown that the Arabidopsis genome contains over 30 genes potentially encoding terpene synthases (TPSs). Here we report the characterization of a monoterpene synthase encoded by two identical, closely linked genes, At3g25820 and At3g25830. Transcripts of these genes were detected almost exclusively in roots. An At3g25820/At3g25830 cDNA was expressed in Escherichia coli, and the protein thus produced was shown to catalyze the formation of 10 volatile monoterpenes from geranyl diphosphate, with 1,8-cineole predominating. This protein was therefore designated AtTPS-Cin. The purified recombinant AtTPS-Cin displayed similar biochemical properties to other known monoterpene synthases, except for a relatively low Km value for geranyl diphosphate of 0.2 μm. At3g25820/At3g25830 promoter activity, measured with a β-glucuronidase (GUS) reporter gene, was primarily found in the epidermis, cortex, and stele of mature primary and lateral roots, but not in the root meristem or the elongation zone. Although the products of AtTPS-Cin were not detected by direct extraction of plant tissue, the recent report of 1,8-cineole as an Arabidopsis root volatile (Steeghs M, Bais HP, de Gouw J, Goldan P, Kuster W, Northway M, Fall R, Vivanco JM [2004] Plant Physiol 135: 47–58) suggests that the enzyme products may be released into the rhizosphere rather than accumulated. Among Arabidopsis TPSs, AtTPS-Cin is most similar to the TPS encoded by At3g25810, a closely linked gene previously shown to be exclusively expressed in flowers. At3g25810 TPS catalyzes the formation of a set of monoterpenes that is very similar to those produced by AtTPS-Cin, but its major products are myrcene and (E)-β-ocimene, and it does not form 1,8-cineole. These data demonstrate that divergence of organ expression pattern and product specificity are ongoing processes within the Arabidopsis TPS family.
机译:拟南芥正在作为一种模型系统来研究生物化学,生物学功能和植物萜烯二次代谢的演变。先前显示,拟南芥基因组包含30多个可能编码萜烯合酶(TPS)的基因。在这里,我们报告由两个相同的紧密链接的基因At3g25820和At3g25830编码的单萜合酶的表征。这些基因的转录本几乎只在根中检出。 At3g25820 / At3g25830 cDNA在大肠杆菌中表达,显示出由此产生的蛋白质可催化由香叶基二磷酸酯形成10个挥发性单萜,其中1,8-桉树脑占主导。因此,该蛋白被命名为AtTPS-Cin。纯化的重组AtTPS-Cin具有与其他已知的单萜合酶相似的生化特性,不同的是,香叶基二磷酸香叶酯的Km值相对较低,为0.2μm。 At3g25820 / At3g25830启动子活性是用β-葡萄糖醛酸苷酶(GUS)报告基因测量的,主要存在于成熟的初生和侧生根的表皮,皮质和碑骨中,而在分生组织或延伸区中则没有。尽管没有通过直接提取植物组织检测到AtTPS-Cin的产物,但最近报道了1,8-桉树脑作为拟南芥根挥发物(Steeghs M,Bais HP,de Gouw J,Goldan P,Kuster W,Northway M ,秋季R,Vivanco JM [2004] Plant Physiol 135:47-58)表明酶产物可能释放到根际而不是积累。在拟南芥TPS中,AtTPS-Cin与At3g25810编码的TPS最相似,At3g25810是一个紧密相连的基因,以前被证明仅在花中表达。 At3g25810 TPS催化形成一组与AtTPS-Cin产生的单萜非常相似的单萜,但其主要产物是月桂烯和(E)-β-罗勒烯,它不形成1,8-桉树脑。这些数据证明器官表达模式和产物特异性的差异是拟南芥TPS家族中正在进行的过程。

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