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PNAS Plus: Identification of key enzymes responsible for protolimonoid biosynthesis in plants: Opening the door to azadirachtin production

机译:PNAS Plus:识别负责植物中类脂褐素生物合成的关键酶:开启印ach素的生产之门

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摘要

Limonoids are natural products made by plants belonging to the Meliaceae (Mahogany) and Rutaceae (Citrus) families. They are well known for their insecticidal activity, contribution to bitterness in citrus fruits, and potential pharmaceutical properties. The best known limonoid insecticide is azadirachtin, produced by the neem tree (Azadirachta indica). Despite intensive investigation of limonoids over the last half century, the route of limonoid biosynthesis remains unknown. Limonoids are classified as tetranortriterpenes because the prototypical 26-carbon limonoid scaffold is postulated to be formed from a 30-carbon triterpene scaffold by loss of 4 carbons with associated furan ring formation, by an as yet unknown mechanism. Here we have mined genome and transcriptome sequence resources for 3 diverse limonoid-producing species (A. indica, Melia azedarach, and Citrus sinensis) to elucidate the early steps in limonoid biosynthesis. We identify an oxidosqualene cyclase able to produce the potential 30-carbon triterpene scaffold precursor tirucalla-7,24-dien-3β-ol from each of the 3 species. We further identify coexpressed cytochrome P450 enzymes from M. azedarach (MaCYP71CD2 and MaCYP71BQ5) and C. sinensis (CsCYP71CD1 and CsCYP71BQ4) that are capable of 3 oxidations of tirucalla-7,24-dien-3β-ol, resulting in spontaneous hemiacetal ring formation and the production of the protolimonoid melianol. Our work reports the characterization of protolimonoid biosynthetic enzymes from different plant species and supports the notion of pathway conservation between both plant families. It further paves the way for engineering crop plants with enhanced insect resistance and producing high-value limonoids for pharmaceutical and other applications by expression in heterologous hosts.
机译:柠檬苦素是由属于the科(桃花心木)和芸香科(柑橘)家族的植物制成的天然产物。他们因其杀虫活性,对柑橘类水果的苦味做出的贡献以及潜在的药物特性而闻名。最著名的柠檬苦素类杀虫剂是印the树(印za树)生产的印za素。尽管在过去的半个世纪中对柠檬苦素类进行了深入研究,但柠檬苦素类生物合成的途径仍然未知。柠檬苦素类被归类为四降三萜,因为通过未知的机理推测原型26碳柠檬苦素骨架是由30碳三萜骨架通过失去4个碳以及相关的呋喃环形成而形成的。在这里,我们已经挖掘了3种不同柠檬苦素生产物种(印度。、,子和柑橘)的基因组和转录组序列资源,以阐明柠檬苦素生物合成的早期步骤。我们确定了氧化角鲨烯环化酶,能够从3个物种中的每一个产生潜在的30碳三萜骨架前体tirucalla-7,24-dien-3β-ol。我们进一步确定了共表达的细胞色素P450酶从M. azedarach(MaCYP71CD2和MaCYP71BQ5)和C. sinensis(CsCYP71CD1和CsCYP71BQ4)能够进行3氧化的提洛Calla-7,24-dien-3β-ol氧化,导致自发半缩醛环形成并生产原柠檬苦素。我们的工作报告了来自不同植物物种的原柠檬苦素生物合成酶的表征,并支持了两个植物科之间的途径保守性概念。它还为通过在异源宿主中表达,为具有增强的抗虫性的农作物工程和生产用于制药和其他应用的高价值柠檬苦素铺平了道路。

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