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Recent Advances Regarding Diterpene Cyclase Genes in Higher Plants and Fungi

机译:高等植物和真菌中二萜环化酶基因的最新研究进展

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Cyclic diterpenoids are commonly biosynthesized from geranylgeranyl diphosphate(GGDP)through the formation of carbon skeletons by specific cyclases and subsequent chemical modifications,such as oxidation,reduction,methylation,and glucosidation.A variety of diterpenoids are produced in higher plants and fungi.Rice produces four classes of diterpene phytoalexins,phytocassanes A to E,oryzalexins A to F,oryzalexin S,and momilactones A and B.The six diterpene cyclase genes involved in the biosynthesis of these phytoalexins were identified and characterized.Fusicoccin A was produced by the phytopathogenic Phomopsis amygdali and served as a plant H~+-ATPase activator.A PaFS,encoding a fungal diterpene synthase responsible for fusicoccin biosynthesis,was isolated.The PaFS is an unusual chimeric diterpene synthase that possesses not only terpene cyclase activity(the formation of fusicoc-cadiene,a biosynthetic precursor of fusicoccin A),but also prenyltransferase activity(the formation of GGDP).Thus,we identified a unique multifunctional diterpene synthase family in fungi.
机译:环二萜类化合物通常是通过特定的环化酶通过碳骨架的形成以及随后的化学修饰(例如氧化,还原,甲基化和葡萄糖苷化)由香叶基香叶基二磷酸(GGDP)生物合成的。高等植物和真菌中会产生多种二萜类化合物。四类二萜植物抗毒素,植物毒素A到E,oryzalexins A到F,oryzalexin S和妈咪内酯A和B.鉴定和鉴定了涉及这些植物毒素的生物合成的六个二萜环化酶基因.Fusicoccin A是由致植物病菌扁桃体被用作植物的H〜+ -ATPase激活剂.PaFS被分离出来,它编码负责fusicoccin生物合成的真菌二萜合酶.PaFS是一种不寻常的嵌合二萜合酶,不仅具有萜烯环化酶活性(fusicococ-丁二烯,是岩藻球菌素A的生物合成前体,但也具有异戊二烯基转移酶活性(GGDP的形成)。因此,我们在真菌中鉴定了独特的多功能二萜合酶家族。

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