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通过组合组学方法对诱导子诱导的小植株喜树碱生物合成进行综合分析

Integrative Analysis of Elicitor-Induced Camptothecin Biosynthesis in Plantlets Through a Combined Omics Approach.

作者信息

Pu Xiang, Gao Hu-Chuan, Wang Min-Ji, Zhang Jia-Hua, Shan Jia-Heng, Chen Meng-Han, Zhang Li, Wang Han-Guang, Wen An-Xiang, Luo Ying-Gang, Huang Qian-Ming

机构信息

College of Science, Sichuan Agricultural University, Ya'an, China.

College of Life Science, Sichuan Agricultural University, Ya'an, China.

出版信息

Front Plant Sci. 2022 Mar 24;13:851077. doi: 10.3389/fpls.2022.851077. eCollection 2022.

Abstract

Treatments with abiotic elicitors can efficiently induce the accumulation of specialized metabolites in plants. We used a combined omics approach to analyze the elicitation effects of MeJa, AgNO, and PEG on camptothecin (CPT) biosynthesis in plantlets. Untargeted analyses revealed that treatments with MeJa, AgNO, and PEG significantly inhibited the photosynthetic pathway and promoted carbon metabolism and secondary metabolic pathways. The CPT levels increased by 78.6, 73.3, and 50.0% in the MeJa, AgNO, and PEG treatment groups, respectively. Using plantlets after elicitation treatment, we mined and characterized 15 new alkaloids, 25 known CPT analogs and precursors, 9 iridoid biosynthetic precursors, and 15 tryptamine biosynthetic precursors based on their MS/MS fragmentation spectra. Using 32 characterized genes involved in CPT biosynthesis as bait, we mined 12 prioritized CYP450 genes from the 416 CYP450 candidates that had been identified based on co-expression analysis, conserved domain analysis, and their elicitation-associated upregulation patterns. This study provides a comprehensive perspective on CPT biosynthesis in plantlets after abiotic elicitation. The findings enable us to elucidate the previously unexplored CYP450-mediated oxidation steps for CPT biosynthesis.

摘要

非生物诱导剂处理能够有效诱导植物中特殊代谢产物的积累。我们采用多组学联合方法分析茉莉酸甲酯(MeJa)、硝酸银(AgNO)和聚乙二醇(PEG)对组培苗中喜树碱(CPT)生物合成的诱导作用。非靶向分析表明,MeJa、AgNO和PEG处理显著抑制光合途径,促进碳代谢和次生代谢途径。MeJa、AgNO和PEG处理组的CPT水平分别提高了78.6%、73.3%和50.0%。利用诱导处理后的组培苗,基于其二级质谱碎片图谱,我们挖掘并鉴定了15种新生物碱、25种已知的CPT类似物和前体、9种环烯醚萜生物合成前体以及15种色胺生物合成前体。以32个参与CPT生物合成的已鉴定基因作为诱饵,我们从基于共表达分析、保守结构域分析及其诱导相关上调模式鉴定出的416个细胞色素P450(CYP450)候选基因中挖掘出12个优先CYP450基因。本研究为非生物诱导后组培苗中CPT的生物合成提供了全面的视角。这些发现使我们能够阐明此前未被探索的CPT生物合成中CYP450介导的氧化步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1be2/8987726/d3a6f1bd5455/fpls-13-851077-g001.jpg

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