Department of Pharmaceutical Engineering, School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300072, People's Republic of China.
Key Laboratory of Systems Bioengineering (Ministry of Education), Tianjin University, Tianjin, 300072, People's Republic of China.
Planta. 2021 Feb 18;253(3):71. doi: 10.1007/s00425-021-03586-4.
Two sesquiterpene synthases were identified through comparative transcriptome analysis of Leonurus sibiricus. LsSqTPS2 could produce high titer of δ-cadinene in vivo which suggests the terpene specificity of L. sibiricus. Leonurus sibiricus L., a medicinal herb, is widely used in China due to its pharmacological activities. Cadinene type sesquiterpenes, one of major bioactive components mainly present in aerial parts of L. sibiricus, showed antibacterial, anti-inflammatory, antioxidant and antiproliferative properties. However, there is no report about the sesquiterpene biosynthesis in L. sibiricus. This study identified L. sibiricus sesquiterpene synthases (LsSqTPSs) through comparative transcriptome analysis of L. sibiricus leaf and root samples using the BGISEQ-500 sequencing technique. A total of 83,244 unigenes were obtained with an average length of 1025 bp. Among them, 50,356 unigenes (60.49%) acquired annotations according to the BLAST searching results. A total of 68 differentially expressed genes (DEGs) were potentially involved in the sesquiterpene biosynthesis. Furthermore, four candidate DEGs encoding LsSqTPSs were characterized. The enzymatic characterization in engineered yeast showed that LsSqTPS1 produced α-farnesene as the single product and LsSqTPS2 mainly produced 76.23 mg/L of δ-cadinene, which constituted the major component of L. sibiricus leaf essential oil. This work contributes to the investigation of sesquiterpene biosynthesis in L. sibiricus.
通过比较转录组分析,从益母草中鉴定出了两种倍半萜合酶。LsSqTPS2 可以在体内产生高浓度的 δ-卡烯,这表明益母草具有萜类特异性。益母草,一种药用植物,由于其药理活性,在中国被广泛使用。卡烯型倍半萜,是益母草地上部分主要的生物活性成分之一,具有抗菌、抗炎、抗氧化和抗增殖作用。然而,目前还没有关于益母草中倍半萜生物合成的报道。本研究通过 BGISEQ-500 测序技术对益母草叶和根样品进行比较转录组分析,鉴定了益母草倍半萜合酶(LsSqTPSs)。共获得 83244 条 unigenes,平均长度为 1025bp。其中,50356 条 unigenes(60.49%)根据 BLAST 搜索结果获得注释。总共 68 个差异表达基因(DEGs)可能参与倍半萜生物合成。此外,还对 4 个编码 LsSqTPSs 的候选 DEGs 进行了表征。在工程酵母中的酶学特征表明,LsSqTPS1 产生 α-法呢烯作为单一产物,而 LsSqTPS2 主要产生 76.23mg/L 的 δ-卡烯,这是益母草叶精油的主要成分。这项工作有助于研究益母草中倍半萜的生物合成。