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萜类生物合成与针叶树防御的特化维管束细胞。

Terpenoid biosynthesis and specialized vascular cells of conifer defense.

机构信息

Michael Smith Laboratories, University of British Columbia, Vancouver BC V6T 1Z4, Canada.

出版信息

J Integr Plant Biol. 2010 Jan;52(1):86-97. doi: 10.1111/j.1744-7909.2010.00910.x.

Abstract

Defense-related terpenoid biosynthesis in conifers is a dynamic process closely associated with specialized anatomical structures that allows conifers to cope with attack from many potential pests and pathogens. The constitutive and inducible terpenoid defense of conifers involves several hundred different monoterpenes, sesquiterpenes and diterpenes. Changing arrays of these many compounds are formed from the general isoprenoid pathway by activities of large gene families for two classes of enzymes, the terpene synthases and the cytochrome P450-dependent monooxygenases of the CYP720B group. Extensive studies have been conducted on the genomics, proteomics and molecular biochemical characterization of these enzymes. Many of the conifer terpene synthases are multi-product enzymes, and the P450 enzymes of the CYP720B group are promiscuous in catalyzing multiple oxidations, along homologous series of diterpenoids, from a broad spectrum of substrates. The terpene synthases and CYP720B genes respond to authentic or simulated insect attack with increased transcript levels, protein abundance and enzyme activity. The constitutive and induced oleoresin terpenoids for conifer defense accumulate in preformed cortical resin ducts and in xylem trauma-associated resin ducts. Formation of these resin ducts de novo in the cambium zone and developing xylem, following insect attack or treatment of trees with methyl jasmonate, is a unique feature of the induced defense of long-lived conifer trees.

摘要

松柏类植物与防御相关的萜类生物合成是一个动态过程,与专门的解剖结构密切相关,使松柏类植物能够应对来自许多潜在害虫和病原体的攻击。松柏类植物的组成型和诱导型萜类防御涉及几百种不同的单萜、倍半萜和二萜。通过两类酶——萜烯合酶和 CYP720B 组细胞色素 P450 依赖性单加氧酶的活性,从一般异戊二烯途径形成这些许多化合物的变化阵列。对这些酶的基因组学、蛋白质组学和分子生化特性进行了广泛的研究。许多松柏类植物萜烯合酶是多产物酶,CYP720B 组的 P450 酶在催化多种氧化反应方面具有混杂性,可沿同源系列二萜类化合物,从广泛的底物中进行。萜烯合酶和 CYP720B 基因对真实或模拟的昆虫攻击会增加转录水平、蛋白质丰度和酶活性做出响应。松柏类植物防御用的组成型和诱导型油树脂萜类化合物在预先形成的皮质树脂管和木质部创伤相关的树脂管中积累。在昆虫攻击或用茉莉酸甲酯处理树木后,这些树脂管在形成层区和发育中的木质部中从头形成,这是长寿命松柏类树木诱导防御的一个独特特征。

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