Suppr超能文献

[绒毛乌头两种蒎烯合酶的催化功能与表达模式比较]

[Comparison of catalytic functions and expression patterns of two pinene synthases from Wurfbainia villosa].

作者信息

Ling Xu-Yi, Lin Xiao-Jing, Huang Lin-Xuan, Yang Peng, Yang Jin-Fen

机构信息

Key Laboratory of Chinese Medicine Resource from Lingnan, School of Pharmaceutical Sciences, Guangzhou University of Chinese Medicine Guangzhou 511400, China.

出版信息

Zhongguo Zhong Yao Za Zhi. 2023 Feb;48(3):642-648. doi: 10.19540/j.cnki.cjcmm.20221101.103.

Abstract

Wurfbainia villosa fruit is rich in volatile terpenoids, among which pinene is one of the main components and has anti-inflammatory, antibacterial, anti-tumor, and other pharmacological activities. This research group found that W. villosa fruits were rich in α-pinene by GC-MS, and terpene synthase(WvTPS63, formerly known as AvTPS1) with β-pinene as the main product was cloned and identified, but α-pinene synthase had not been identified. In this study, based on the genome data of W. villosa, we screened and found WvTPS66 with highly similar sequences to WvTPS63, identified enzyme functions of WvTPS66 in vitro, and performed a comparative analysis of sequence, catalytic function, expression pattern, and promoter with WvTPS63. Multiple sequence alignment showed that the amino acid sequences of WvTPS63 and WvTPS66 were highly similar and the conservative motif of terpene synthase was almost identical. In vitro enzymatic experiments on catalytic functions showed that both could produce pinene, and the main product of WvTPS63 was β-pinene, while that of WvTPS66 was α-pinene. Expression pattern analysis showed that WvTS63 was highly expressed in flowers, WvTPS66 was expressed in the whole plant, and the highest expression level was found in the pericarp, which indicated that it might be mainly responsible for the synthesis of α-pinene in fruits. In addition, promoter analysis revealed the presence of multiple regulatory elements related to stress response in the promoter regions of both genes. The findings of this study can provide a reference for the functional study of terpene synthase genes and new genetic elements for pinene biosynthesis.

摘要

绒毛乌饭树果实富含挥发性萜类化合物,其中蒎烯是主要成分之一,具有抗炎、抗菌、抗肿瘤等药理活性。该研究小组通过气相色谱-质谱联用(GC-MS)发现绒毛乌饭树果实富含α-蒎烯,并克隆鉴定了以β-蒎烯为主要产物的萜烯合酶(WvTPS63,原称AvTPS1),但α-蒎烯合酶尚未被鉴定。在本研究中,基于绒毛乌饭树的基因组数据,我们筛选并发现了与WvTPS63序列高度相似的WvTPS66,在体外鉴定了WvTPS66的酶功能,并与WvTPS63进行了序列、催化功能、表达模式和启动子的比较分析。多序列比对显示,WvTPS63和WvTPS66的氨基酸序列高度相似,萜烯合酶的保守基序几乎相同。催化功能的体外酶学实验表明,二者均可产生蒎烯,WvTPS63的主要产物是β-蒎烯,而WvTPS66的主要产物是α-蒎烯。表达模式分析表明,WvTS63在花中高表达,WvTPS66在全株中表达,在果皮中表达水平最高,这表明它可能主要负责果实中α-蒎烯的合成。此外,启动子分析揭示了两个基因的启动子区域存在多个与胁迫响应相关的调控元件。本研究结果可为萜烯合酶基因的功能研究提供参考,并为蒎烯生物合成提供新的遗传元件。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验