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鉴定和功能分析菖蒲属植物花萜烯合酶基因。

Identification and functional analysis of floral terpene synthase genes in Curcuma alismatifolia.

机构信息

The Research Center for Ornamental Plants, College of Horticulture, South China Agricultural University, Guangzhou, 510642, China.

College of Life Sciences, South China Agricultural University, Guangzhou, 510642, China.

出版信息

Planta. 2024 Jun 11;260(1):26. doi: 10.1007/s00425-024-04440-z.

Abstract

CaTPS2 and CaTPS3 were significantly expressed in flowers of Curcuma alismatifolia 'Shadow' and demonstrated bifunctional enzyme activity, CaTPS2 generated linalool and nerolidol as products, and CaTPS3 catalyzed β-myrcene and β-farnesene formation. This study presents the discovery and functional characterization of floral terpene synthase (TPS) genes in Curcuma alismatifolia 'Shadow', a cultivar renowned for its unique fragrance. Addressing the gap in understanding the genetic basis of floral scent in this species, we identified eight TPS genes through comprehensive transcriptome sequencing. Among these, CaTPS2 and CaTPS3 were significantly expressed in floral tissues and demonstrated bifunctional enzyme activity corresponding to the major volatile compounds detected in 'Shadow'. Functional analyses, including in vitro assays complemented with rigorous controls and alternative identification methods, elucidated the roles of these TPS genes in terpenoid biosynthesis. In vitro studies were conducted via heterologous expression in E. coli, followed by purification of the recombinant protein using affinity chromatography, enzyme assays were performed with GPP/FPP as the substrate, and volatile products were inserted into the GC-MS for analysis. Partially purified recombinant protein of CaTPS2 catalyzed GPP and FPP to produce linalool and nerolidol, respectively, while partially purified recombinant protein of CaTPS3 generated β-myrcene and β-farnesene with GPP and FPP as substrates, respectively. Real-time quantitative PCR further validated the expression patterns of these genes, correlating with terpenoid accumulation in different plant tissues. Our findings illuminate the molecular mechanisms underpinning floral fragrance in C. alismatifolia and provide a foundation for future genetic enhancements of floral scent in ornamental plants. This study, therefore, contributes to the broader understanding of terpenoid biosynthesis in plant fragrances, paving the way for biotechnological applications in horticulture plant breeding.

摘要

CaTPS2 和 CaTPS3 在姜黄 '影子' 的花朵中表达量较高,表现出双功能酶活性,CaTPS2 生成了芳樟醇和橙花叔醇,而 CaTPS3 则催化了 β-月桂烯和 β-法呢烯的形成。本研究发现并对姜黄 '影子' 的花萜烯合酶 (TPS) 基因进行了功能表征,该品种以其独特的香气而闻名。本研究旨在填补对该物种花香遗传基础理解的空白,通过综合转录组测序,共鉴定到 8 个 TPS 基因。其中,CaTPS2 和 CaTPS3 在花组织中表达量较高,且具有与 '影子' 中检测到的主要挥发性化合物相对应的双功能酶活性。功能分析包括体外实验,体外实验辅以严格的对照和替代鉴定方法,阐明了这些 TPS 基因在萜类生物合成中的作用。通过在大肠杆菌中异源表达进行体外研究,然后使用亲和层析纯化重组蛋白,用 GPP/FPP 作为底物进行酶促反应,将挥发性产物插入 GC-MS 进行分析。CaTPS2 的部分纯化重组蛋白催化 GPP 和 FPP 分别生成芳樟醇和橙花叔醇,而 CaTPS3 的部分纯化重组蛋白分别用 GPP 和 FPP 作为底物生成 β-月桂烯和 β-法呢烯。实时定量 PCR 进一步验证了这些基因的表达模式,与不同植物组织中萜类化合物的积累相关。我们的研究结果阐明了姜黄花香的分子机制,并为观赏植物花香的遗传改良提供了基础。因此,本研究有助于更全面地理解植物香气中的萜类生物合成,并为园艺植物育种中的生物技术应用铺平了道路。

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