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转录组广泛研究和功能表征揭示了与柠檬香蜂草γ-松油烯生物合成相关的萜烯合酶。

Transcriptome-wide investigation and functional characterization reveal a terpene synthase involved in γ-terpinene biosynthesis in Monarda citriodora.

机构信息

Plant Sciences and Agrotechnology Division, CSIR-Indian Institute of Integrative Medicine Canal Road, Jammu, 180001, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.

出版信息

Funct Integr Genomics. 2024 Nov 26;24(6):222. doi: 10.1007/s10142-024-01491-z.

DOI:10.1007/s10142-024-01491-z
PMID:39589550
Abstract

Monarda citriodora Cerv. ex Lag. is a rich source of industrially important compounds like γ-terpinene, carvacrol, thymol and thymoquinone. Understanding the regulation of γ-terpinene biosynthesis, a precursor for other monoterpenes, could facilitate upscaling of these metabolites in M. citriodora. Therefore, the present study aimed to unravel and characterize the terpene synthase (TPS) involved in γ-terpinene biosynthesis. Homology searches revealed 33 TPS members in the transcriptome assembly of M. citriodora. Based on the correlation of expression patterns and phytochemical profile, McTPS22 emerged as the putative TPS for γ-terpinene biosynthesis. Molecular docking suggested geranyl diphosphate (GPP) as a potential substrate for McTPS22. Heterologous expression in Escherichia coli and Nicotiana benthamiana confirmed the role of McTPS22 in γ-terpinene biosynthesis. Both in-silico prediction and confocal microscopy indicated plastidial localization of the McTPS22. Gene co-expression network analysis revealed 507 genes interacting with McTPS22, including 80 transcription factors (TFs). Of these, 46 TFs had binding sites in the McTPS22 promoter, and 36 showed significant correlations with γ-terpinene accumulation, suggesting they may be potential regulators. Promoter analysis indicated regulation by phytohormones and abiotic factors, confirmed by phytohormone elicitation and QRT-PCR. The histochemical GUS staining suggested that McTPS22 is primarily active in the glandular trichomes of M. citriodora. The present work provides insights into the molecular regulation of biosynthesis of γ-terpinene in M. citriodora.

摘要

柠檬香桃木是一种富含工业上重要化合物的植物,如γ-松油烯、香芹酚、百里酚和百里醌。了解γ-松油烯生物合成的调控机制,这是其他单萜类化合物的前体,可以促进柠檬香桃木中这些代谢物的规模化生产。因此,本研究旨在揭示并鉴定参与γ-松油烯生物合成的萜烯合酶(TPS)。同源搜索显示柠檬香桃木转录组组装中存在 33 个 TPS 成员。根据表达模式和植物化学特征的相关性,McTPS22 被认为是γ-松油烯生物合成的假定 TPS。分子对接表明二磷酸香叶基(GPP)可能是 McTPS22 的潜在底物。在大肠杆菌和黄花烟中异源表达证实了 McTPS22 在γ-松油烯生物合成中的作用。计算机预测和共聚焦显微镜均表明 McTPS22 定位于质体。基因共表达网络分析表明,与 McTPS22 相互作用的基因有 507 个,包括 80 个转录因子(TFs)。其中,46 个 TF 在 McTPS22 启动子上具有结合位点,36 个与γ-松油烯积累呈显著相关性,表明它们可能是潜在的调控因子。启动子分析表明,McTPS22 受植物激素和非生物因素的调控,这一结论得到了植物激素诱导和 QRT-PCR 的验证。组织化学 GUS 染色表明 McTPS22 主要在柠檬香桃木的腺毛中活跃。本研究为柠檬香桃木中 γ-松油烯生物合成的分子调控提供了新的见解。

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