Yang Zerui, Zhan Ting, Xie Chunzhu, Huang Song, Zheng Xiasheng
Key Specialty of Clinical Pharmacy, The First Affiliated Hospital of Guangdong Pharmaceutical University, Guangzhou, 510000, China; School of Pharmaceutical Sciences, Guangzhou University of Chinese Medicine, Guangzhou, 510006, China.
School of Pharmaceutical Sciences, Guangzhou University of Chinese Medicine, Guangzhou, 510006, China.
Plant Physiol Biochem. 2023 Mar;196:55-64. doi: 10.1016/j.plaphy.2023.01.039. Epub 2023 Jan 20.
Terpene synthase (TPS) plays an important role in terpenoids biosynthesis. Cinnamomum camphora (camphor tree) contains dozens of terpenoids with medicinal value, especially borneol, which has been widely used since ancient times. However, limited information is available regarding the genome-wide identification and characterization of the TPS family in the C. camphora. In this study, 82 CcTPS genes were identified from the camphor tree genome (CTG). Gene cluster and sequence syntenic analysis suggested that tandem duplication occurred within the TPS family of the CTG, especially for the TPS-b subfamily. The chemotype-specific gene expression analysis showed significantly differential expression patterns among six chemotypes. It is worth noting that three genes (CcTPS26, CcTPS49 and CcTPS72) exhibited relatively high expression in the borneol-type camphor tree, compared to the other five chemotypes. Further functional characterization of them indicated that they were all bornyl diphosphate synthases (BPPSs), which function in catalyzing GPP into BPP and then undergoes dephosphorylation to yield borneol. This is the first report that multiple BPPSs exist within a single species. Intriguingly, CcTPS49 and CcTPS72 lead to the generation of dextral-borneol, while CcTPS26 contributes to the biosynthesis of levo-borneol. In addition, the functional characterization of another six CcTPSs suggested that they are responsible for the biosynthesis of linalool, eucalyptol and several other monoterpenes in camphor tree. In conclusion, these novel results provide a foundation for further exploration of the role of the CcTPS gene family and shed light on a better understanding of the biosynthesis and accumulation of monoterpenes in camphor tree.
萜类合酶(TPS)在萜类生物合成中起着重要作用。樟树含有数十种具有药用价值的萜类化合物,尤其是冰片,自古以来就被广泛使用。然而,关于樟树中TPS家族的全基因组鉴定和特征分析的信息有限。在本研究中,从樟树基因组(CTG)中鉴定出82个CcTPS基因。基因簇和序列共线性分析表明,CTG的TPS家族中发生了串联重复,尤其是TPS-b亚家族。化学型特异性基因表达分析显示六种化学型之间存在显著的差异表达模式。值得注意的是,与其他五种化学型相比,三个基因(CcTPS26、CcTPS49和CcTPS72)在冰片型樟树中表现出相对较高的表达。对它们的进一步功能表征表明,它们都是香叶基二磷酸合酶(BPPSs),其功能是催化GPP生成BPP,然后去磷酸化生成冰片。这是首次报道在单一物种中存在多种BPPSs。有趣的是,CcTPS49和CcTPS72导致右旋冰片的产生,而CcTPS26有助于左旋冰片的生物合成。此外,另外六个CcTPSs的功能表征表明,它们负责樟树中芳樟醇、桉叶油素和其他几种单萜的生物合成。总之,这些新结果为进一步探索CcTPS基因家族的作用提供了基础,并有助于更好地理解樟树中单萜的生物合成和积累。