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鉴定和功能分析萜烯合酶揭示了菊花香气形成的秘密。

Identification and functional analysis of terpene synthases revealing the secrets of aroma formation in Chrysanthemum aromaticum.

机构信息

State Key Laboratory of Efficient Production of Forest Resources, National Engineering Research Center for Floriculture, Beijng Key Laboratory of Ornamental Plants Germplasm Innovation and Molecular Breeding, Beijing Laboratory of Urban and Rural Ecological Environment, Key Laboratory of Genetics and Breeding in Forest Trees and Ornamental Plants of Ministry of Education, School of Landscape Architecture, Beijing Forestry University, Beijing 100083, China.

State Key Laboratory of Efficient Production of Forest Resources, National Engineering Research Center for Floriculture, Beijng Key Laboratory of Ornamental Plants Germplasm Innovation and Molecular Breeding, Beijing Laboratory of Urban and Rural Ecological Environment, Key Laboratory of Genetics and Breeding in Forest Trees and Ornamental Plants of Ministry of Education, School of Landscape Architecture, Beijing Forestry University, Beijing 100083, China.

出版信息

Int J Biol Macromol. 2024 Nov;279(Pt 3):135377. doi: 10.1016/j.ijbiomac.2024.135377. Epub 2024 Sep 6.

Abstract

C. aromaticum is widely cultivated for its aromatic, medicinal, and tea-applicable properties, earning the nickname 'lavender in composite'. Terpenoids are the major compounds of C. aromaticum fragrance. To reveal the molecular mechanisms of terpenoid biosynthesis in C. aromaticum, NGS and SMRT sequencing were employed to identify the key terpene synthase genes. A total of 59,903 non-redundant transcripts were obtained by the transcriptome analysis. Twenty-nine terpene synthase genes (TPSs) were identified, and phylogenetic analysis showed that they belong to four subfamilies of terpene synthases. Five CaTPSs were successfully cloned. Subcellular localization showed they were present in the nucleus and cytosol. Structure models of five terpene synthases were predicted, and molecular docking results showed good binding affinities with FPP/GPP. In vitro enzymatic tests showed that CaTPS7, CaTPS8, CaTPS10 and CaTPS20 could catalyze substrates to produce terpenoids. CaTPS7 and CaTPS20 were both able to effectively convert the precursor FPP into caryophyllene. CaTPS8 could convert FPP to trans-nerolidol and nerolidyl acetate, while CaTPS10 could convert FPP to elemene and aristolochene. This study lays the groundwork for further research to depict the metabolism network of terpenoid in C. aromaticum. These identical terpene synthase genes could be introduced into the cultivated chrysanthemums to enhance their fragrance.

摘要

C. aromaticum 因其芳香、药用和茶用特性而被广泛种植,获得了“复方薰衣草”的别名。萜类化合物是 C. aromaticum 香气的主要成分。为了揭示 C. aromaticum 萜类生物合成的分子机制,我们采用 NGS 和 SMRT 测序来鉴定关键的萜烯合酶基因。通过转录组分析共获得了 59903 个非冗余转录本。鉴定出 29 个萜烯合酶基因(TPS),系统发育分析表明它们属于萜烯合酶的四个亚家族。成功克隆了 5 个 CaTPSs。亚细胞定位表明它们存在于细胞核和细胞质中。预测了 5 种萜烯合酶的结构模型,分子对接结果表明与 FPP/GPP 具有良好的结合亲和力。体外酶促试验表明,CaTPS7、CaTPS8、CaTPS10 和 CaTPS20 可以催化底物产生萜类化合物。CaTPS7 和 CaTPS20 都能有效地将前体 FPP 转化为石竹烯。CaTPS8 可以将 FPP 转化为反式-香叶醇和香叶基乙酸酯,而 CaTPS10 可以将 FPP 转化为榄香烯和大根香叶烯。本研究为进一步描绘 C. aromaticum 萜类代谢网络奠定了基础。这些相同的萜烯合酶基因可以被引入到栽培菊花中,以增强其香气。

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