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在柏科植物中发现和鉴定参与前所未有的二萜类生物合成途径的台湾扁柏二萜合酶。

Discovery and characterization of diterpene synthases in Chamaecyparis formosensis Matsum. which participated in an unprecedented diterpenoid biosynthesis route in conifer.

机构信息

School of Forestry and Resource Conservation, National Taiwan University, Taipei, 10617, Taiwan.

School of Forestry and Resource Conservation, National Taiwan University, Taipei, 10617, Taiwan.

出版信息

Plant Sci. 2021 Mar;304:110790. doi: 10.1016/j.plantsci.2020.110790. Epub 2020 Dec 9.

DOI:10.1016/j.plantsci.2020.110790
PMID:33568294
Abstract

Chamaecyparis formosensis Matsum. is an endemic and precious coniferous species of Taiwan, and is known for a high abundance of specialized metabolites, which contributes to the excellent timber durability. Several terpenoids were identified and isolated from C. formosensis wood and needles, and exhibit anti-fungal and anti-bacterial bioactivities, which may participate in plant defense against pathogens. In various identified compounds, not only cadinene and ferruginol, were identified in C. formosensis extracts but also unique diterpenoids, which include pisferal, totarol, and derivates of isoabienol. To understand the biosynthesis of these specific diterpenoids, we conducted a series of functional characterization of the C. formosensis diterpene synthases (CfdiTPSs), which participate in skeleton formation and differentiation of diterpenes. In this study, we identified eight diTPSs from C. formosensis transcriptome, and they all contain either class I or class II motif, which indicates they are all monofunctional enzymes. These candidates consist of three class II diTPSs and five class I diTPSs, and after conducting in vivo and in vitro assays, class II diTPS CfCPS1 was characterized as a (+)-copalyl diphosphate synthase ((+)-CPS), and class I diTPSs CfKSL1 could further convert (+)-copalyl diphosphate ((+)-CPP) to levopimaradiene. Meanwhile, CfKSL1 also accepted labda-13-en-8-ol diphosphate (LPP) as substrate and formed monoyl oxide. Another class I diTPS, CfKSL4, exhibits a strong enzymatic ability of isoabienol synthase, which is firstly reported in conifer. This finding provides potential participants in the biosynthesis of unique diterpenoids, and with this knowledge, we can further expand our understanding of diterpenoid metabolism in Cupressaceae and their potential role in plant defense.

摘要

台湾肖楠是一种特有的珍贵针叶树种,富含结构独特的次生代谢产物,这使得其木材具有出色的耐久性。我们从台湾肖楠木材和针叶中鉴定并分离出几种萜类化合物,这些化合物具有抗真菌和抗细菌的生物活性,可能参与植物对病原体的防御。在鉴定出的多种化合物中,不仅在台湾肖楠提取物中鉴定出了柏木萜烯和罗汉柏酚,还鉴定出了独特的二萜类化合物,包括毕赤二醇、贝壳杉烯、异贝壳杉烯醇的衍生物。为了了解这些特定二萜的生物合成,我们对参与二萜骨架形成和分化的台湾肖楠二萜合酶(CfdiTPSs)进行了一系列功能表征。在这项研究中,我们从台湾肖楠转录组中鉴定出了 8 个 diTPSs,它们都含有 I 类或 II 类结构域,这表明它们都是单功能酶。这些候选物包括 3 个 II 类 diTPS 和 5 个 I 类 diTPS,经过体内和体外实验,鉴定出 II 类 diTPS CfCPS1 为(+)-卡柏二磷酸合酶((+)-CPS),I 类 diTPS CfKSL1 可以进一步将(+)-卡柏二磷酸(+)-CPP 转化为左旋贝壳杉烯。同时,CfKSL1 还可以接受 13-叶烯-8-醇二磷酸(LPP)作为底物并形成单酰氧基。另一个 I 类 diTPS CfKSL4 表现出很强的异贝壳杉烯醇合酶的酶活力,这是首次在针叶树中报道。这一发现为独特二萜类化合物的生物合成提供了潜在的候选物,进一步加深了我们对柏科植物二萜类代谢及其在植物防御中的潜在作用的理解。

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