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

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(3), and PEG on camptothecin (CPT) biosynthesis in Camptotheca acuminata plantlets. Untargeted analyses re...

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Autores principales: 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
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8987726/
https://www.ncbi.nlm.nih.gov/pubmed/35401649
http://dx.doi.org/10.3389/fpls.2022.851077
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author 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
author_facet 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
author_sort Pu, Xiang
collection PubMed
description 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(3), and PEG on camptothecin (CPT) biosynthesis in Camptotheca acuminata plantlets. Untargeted analyses revealed that treatments with MeJa, AgNO(3), 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(3), and PEG treatment groups, respectively. Using C. acuminata 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 C. acuminata plantlets after abiotic elicitation. The findings enable us to elucidate the previously unexplored CYP450-mediated oxidation steps for CPT biosynthesis.
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spelling pubmed-89877262022-04-08 Integrative Analysis of Elicitor-Induced Camptothecin Biosynthesis in Camptotheca acuminata Plantlets Through a Combined Omics Approach 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 Front Plant Sci Plant Science 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(3), and PEG on camptothecin (CPT) biosynthesis in Camptotheca acuminata plantlets. Untargeted analyses revealed that treatments with MeJa, AgNO(3), 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(3), and PEG treatment groups, respectively. Using C. acuminata 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 C. acuminata plantlets after abiotic elicitation. The findings enable us to elucidate the previously unexplored CYP450-mediated oxidation steps for CPT biosynthesis. Frontiers Media S.A. 2022-03-24 /pmc/articles/PMC8987726/ /pubmed/35401649 http://dx.doi.org/10.3389/fpls.2022.851077 Text en Copyright © 2022 Pu, Gao, Wang, Zhang, Shan, Chen, Zhang, Wang, Wen, Luo and Huang. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
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
Integrative Analysis of Elicitor-Induced Camptothecin Biosynthesis in Camptotheca acuminata Plantlets Through a Combined Omics Approach
title Integrative Analysis of Elicitor-Induced Camptothecin Biosynthesis in Camptotheca acuminata Plantlets Through a Combined Omics Approach
title_full Integrative Analysis of Elicitor-Induced Camptothecin Biosynthesis in Camptotheca acuminata Plantlets Through a Combined Omics Approach
title_fullStr Integrative Analysis of Elicitor-Induced Camptothecin Biosynthesis in Camptotheca acuminata Plantlets Through a Combined Omics Approach
title_full_unstemmed Integrative Analysis of Elicitor-Induced Camptothecin Biosynthesis in Camptotheca acuminata Plantlets Through a Combined Omics Approach
title_short Integrative Analysis of Elicitor-Induced Camptothecin Biosynthesis in Camptotheca acuminata Plantlets Through a Combined Omics Approach
title_sort integrative analysis of elicitor-induced camptothecin biosynthesis in camptotheca acuminata plantlets through a combined omics approach
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8987726/
https://www.ncbi.nlm.nih.gov/pubmed/35401649
http://dx.doi.org/10.3389/fpls.2022.851077
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