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Geranyllinalool synthases in solanaceae and other angiosperms constitute an ancient branch of diterpene synthases involved in the synthesis of defensive compounds

机译:茄科和其他被子植物中的香叶薄荷醇合成酶是构成防御化合物合成的二萜合成酶的古老分支

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摘要

Many angiosperm plants, including basal dicots, eudicots, and monocots, emit (E,E)-4,8,12-trimethyltrideca-1,3,7,11-tetraene, which is derived from geranyllinalool, in response to biotic challenge. An Arabidopsis (Arabidopsis thaliana) geranyllinalool synthase (GLS) belonging to the e/f clade of the terpene synthase (TPS) family and two Fabaceae GLSs that belong to the TPS-g clade have been reported, making it unclear which is the main route to geranyllinalool in plants. We characterized a tomato (Solanum lycopersicum) TPS-e/f gene, TPS46, encoding GLS (SlGLS) and its homolog (NaGLS) from Nicotiana attenuata. The Km value of SlGLS for geranylgeranyl diphosphate was 18.7 microm, with a turnover rate value of 6.85 s(-1). In leaves and flowers of N. attenuata, which constitutively synthesize 17-hydroxygeranyllinalool glycosides, NaGLS is expressed constitutively, but the gene can be induced in leaves with methyl jasmonate. In tomato, SlGLS is not expressed in any tissue under normal growth but is induced in leaves by alamethicin and methyl jasmonate treatments. SlGLS, NaGLS, AtGLSs, and several other GLSs characterized only in vitro come from four different eudicot families and constitute a separate branch of the TPS-e/f clade that diverged from kaurene synthases, also in the TPS-e/f clade, before the gymnosperm-angiosperm split. The early divergence of this branch and the GLS activity of genes in this branch in diverse eudicot families suggest that GLS activity encoded by these genes predates the angiosperm-gymnosperm split. However, although a TPS sequence belonging to this GLS lineage was recently reported from a basal dicot, no representative sequences have yet been found in monocot or nonangiospermous plants.
机译:许多被子植物,包括基础双子叶植物,双子叶植物和单子叶植物,都响应生物攻击而释放出衍生自geranyllinalool的(E,E)-4,8,12-三甲基三苯胺-1,3,7,11-四烯。据报道,属于萜类合酶(TPS)家族e / f进化枝的拟南芥(Arabidopsis thaliana)geranyllinalool合酶(GLS)和属于TPS-g进化枝的两个Fabaceae GLS已被报道,目前尚不清楚这是主要途径到植物中的香叶菊醇。我们对番茄(Solanum lycopersicum)TPS-e / f基因TPS46进行了表征,该基因编码来自弱烟烟草的GLS(SlGLS)及其同源物(NaGLS)。香叶基香叶基二磷酸香叶酯的SlGLS的Km值为18.7微米,周转率值为6.85 s(-1)。在组成组成17-羟基香叶菊醇糖苷的弱毒猪笼草的叶子和花朵中,NaGLS组成性表达,但是该基因可以用茉莉酸甲酯诱导在叶子中。在番茄中,正常生长下,SlGLS在任何组织中均不表达,但其是通过Alamethicin和茉莉酸甲酯处理在叶片中诱导的。仅在体外具有特征的SlGLS,NaGLS,AtGLS和其他几个GLS来自四个不同的双子叶植物科,它们构成了TPS-e / f进化枝的一个独立分支,该分支也不同于TPS-e / f进化枝中的贝壳杉烯合酶。裸子植物和裸子植物分裂。该分支的早期分歧和该分支在不同的双子叶植物科中的基因的GLS活性表明,由这些基因编码的GLS活性早于被子植物-精子分裂。然而,尽管最近从基底双子叶植物中报道了属于该GLS谱系的TPS序列,但是在单子叶植物或非裸子植物中尚未发现代表性序列。

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