首页> 外文期刊>Plant physiology >Identification and functional characterization of monofunctional ent-copalyl diphosphate and ent-kaurene synthases in white spruce reveal different patterns for diterpene synthase evolution for primary and secondary metabolism in gymnosperms
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Identification and functional characterization of monofunctional ent-copalyl diphosphate and ent-kaurene synthases in white spruce reveal different patterns for diterpene synthase evolution for primary and secondary metabolism in gymnosperms

机译:白云杉中单功能对苯二甲酰磷酸二氢戊酯和对-月桂烯合酶的鉴定和功能表征揭示了裸子植物初级和次级代谢中二萜合酶进化的不同模式

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The biosynthesis of the tetracyclic diterpene ent-kaurene is a critical step in the general (primary) metabolism of gibberellin hormones. ent-Kaurene is formed by a two-step cyclization of geranylgeranyl diphosphate via the intermediate ent-copalyl diphosphate. In a lower land plant, the moss Physcomitrella patens, a single bifunctional diterpene synthase (diTPS) catalyzes both steps. In contrast, in angiosperms, the two consecutive cyclizations are catalyzed by two distinct monofunctional enzymes, ent-copalyl diphosphate synthase (CPS) and ent-kaurene synthase (KS). The enzyme, or enzymes, responsible for ent-kaurene biosynthesis in gymnosperms has been elusive. However, several bifunctional diTPS of specialized (secondary) metabolism have previously been characterized in gymnosperms, and all known diTPSs for resin acid biosynthesis in conifers are bifunctional. To further understand the evolution of ent-kaurene biosynthesis as well as the evolution of general and specialized diterpenoid metabolisms in gymnosperms, we set out to determine whether conifers use a single bifunctional diTPS or two monofunctional diTPSs in the ent-kaurene pathway. Using a combination of expressed sequence tag, full-length cDNA, genomic DNA, and targeted bacterial artificial chromosome sequencing, we identified two candidate CPS and KS genes from white spruce (Picea glauca) and their orthologs in Sitka spruce (Picea sitchensis). Functional characterization of the recombinant enzymes established that ent-kaurene biosynthesis in white spruce is catalyzed by two monofunctional diTPSs, PgCPS and PgKS. Comparative analysis of gene structures and enzyme functions highlights the molecular evolution of these diTPSs as conserved between gymnosperms and angiosperms. In contrast, diTPSs for specialized metabolism have evolved differently in angiosperms and gymnosperms.
机译:四环二萜烯-贝壳杉烯的生物合成是赤霉素激素一般(主要)代谢的关键步骤。 ent-Kaurene是通过中间体ent-copalyl diphosphate通过两步香叶基geranylgeranyl二磷酸环化而形成的。在低地植物中,苔藓小叶藓(Physcomitrella patens)是一种单一的双功能二萜合酶(diTPS)催化这两个步骤。相反,在被子植物中,两个连续的环化反应是由两种不同的单功能酶,对-戊基二磷酸合酶(CPS)和对-月桂烯合酶(KS)催化的。负责裸子植物中新戊二烯生物合成的一种或多种酶是难以捉摸的。但是,裸子植物先前已经鉴定了几种专门的(次级)代谢双功能diTPS,并且针叶树中用于树脂酸生物合成的所有已知的diTPS都是双功能的。为了进一步了解裸子植物中ent-kaurene生物合成的演变以及一般和专门的二萜类代谢的演变,我们着手确定针叶树在ent-kaurene通路中使用单个双功能diTPS还是两个单功能diTPS。使用表达的序列标签,全长cDNA,基因组DNA和靶向细菌人工染色体测序的组合,我们从白云杉(Picea glauca)及其在Sitka云杉(Picea sitchensis)的直系同源物中鉴定了两个候选CPS和KS基因。重组酶的功能表征确定了白云杉中的鹿角烯生物合成是由两个单功能diTPSs,PgCPS和PgKS催化的。基因结构和酶功能的比较分析突出了裸子植物和被子植物之间保守的这些diTPS的分子进化。相比之下,用于专门代谢的diTPS在被子植物和裸子植物中发生了不同的变化。

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