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Probing the transcriptome of Aconitum carmichaelii reveals the candidate genes associated with the biosynthesis of the toxic aconitine-type C-19-diterpenoid alkaloids

机译:探测Aconitum carmichaelii的转录组揭示了与毒穴型C-19二萜类生物碱的生物合成相关的候选基因

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Aconitum carmichaelii has long been used as a traditional Chinese medicine, and its processed lateral roots are known commonly as fuzi. Aconitine-type C-19-diterpenoid alkaloids accumulating in the lateral roots are some of the main toxicants of this species, yet their biosynthesis remains largely unresolved. As a first step towards understanding the biosynthesis of aconitine-type C-19-diterpenoid alkaloids, we performed de novo transcriptome assembly and analysis of rootstocks and leaf tissues of Aconitum carmichaelii by next-generation sequencing. A total of 525 unigene candidates were identified as involved in the formation of C-19-diterpenoid alkaloids, including those encoding enzymes in the early steps of diterpenoid alkaloids scaffold biosynthetic pathway, such as ent-copalyl diphosphate synthases, entkaurene synthases, kaurene oxidases, cyclases, and key aminotransferases. Furthermore, candidates responsible for decorating of diterpenoid alkaloid skeletons were discovered from transcriptome sequencing of fuzi, such as monooxygenases, methyltransferase, and BAHD acyltransferases. In addition, 645 differentially expressed genes encoding transcription factors potentially related to diterpenoid alkaloids accumulation underground were documented. Subsequent modular domain structure phylogenetics and differential expression analysis led to the identification of BAHD acyltransferases possibly involved in the formation of acetyl and benzoyl esters of diterpenoid alkaloids, associated with the acute toxicity of fuzi. The transcriptome data provide the foundation for future research into the molecular basis for aconitine-type C-19-diterpenoid alkaloids biosynthesis in A. carmichaelii. (C) 2018 Published by Elsevier Ltd.
机译:Aconitum Carmichaelii长期以来被用作中药,其加工后的侧根通常是富子。在横向根部积聚的穴位型C-19二萜类生物碱是该物种的一些主要毒物,但它们的生物合成在很大程度上仍未解决。作为理解浅析C-19二萜类化合物生物碱的生物合成的第一步,我们通过下一代测序进行了Novo转录组合组装和乌头菌Carmichaelii的砧木和叶组织分析。鉴定了525个外终候选的候选者参与形成C-19-二萜类化合物,包括在二萜类生物碱的早期步骤中的那些编码酶,例如烯基二磷酸合酶,Entkaurene合酶,kaurene氧化酶,环酶和键氨基转移酶。此外,从Fuzi的转录组测序中发现了负责用二萜类生物碱骨架装饰的候选物,例如单氧基酶,甲基转移酶和酰基转移酶。此外,记录了645种差异表达的编码与地下二萜类生物碱积累的转录因子的差异表达基因。随后的模域结构系统发育和差异表达分析导致鉴定酰基转移酶的鉴定,可能涉及乙酰苯甲酰基和苯甲酰基的乙酰苯甲酰基,与Fuzi的急性毒性相关。转录组数据为未来的研究提供了对Aconitine型C-19二萜类化合物生物合成的分子基础的基础.Carmichaelii。 (c)2018年由elestvier有限公司发布

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