Guan Ling-Liang, Xia Qi-Feng, Pang Yu-Xin, Zhao Zhi, Hu Yuan-Peng, Bai Lin, Wang Hong-Fa, Liu Hong-Chang
Tropical Crops Genetic Resources Institute, Chinese Academy of Tropical Agricultural Sciences, Danzhou 571737, China.
Guizhou University College of Agriculture, Guiyang 550025, China.
Zhongguo Zhong Yao Za Zhi. 2016 May;41(9):1585-1591. doi: 10.4268/cjcmm20160903.
In order to provide a theoretical basis for the regulation of active ingredient, the terpenoids metabolic pathway and specific enzymes in Blumea balsamifera are investigated. Basing on transcriptome information, B. balsamifera terpenoids metabolic pathway was analyzed in KEGG data base. Four metabolic pathway of terpenoids were found in KEGG data base. They were terpenoid backbone biosynthesis, monoterpenoid biosynthesis, diterpenoid biosynthesis, sesquiterpenoid and triterpenoid biosynthesis, contained 103, 10, 29,59 genes, respectively. Through the analysis of the enzyme and product in the pathway, the result showed that there were 8 kinds of monoterpenes, 3 kinds of diterpenes, 3 kinds of triterpenes and sesquiterpenes. The mainly key enzymes were deoxyxylulose 5-phosphate synthase, HMG-CoA reductase and allyl transferase system. In B. balsamifera, there were relatively few monoterpenes synthetic enzymes, while the type of products was much more than other terpenes. This may be relate to the non-specific catalytic characteristic of monoterpene synthase. It is expected to improve the yield of terpenoids in B. balsamifera by analysis the pathways and regulation the key enzymes.
为了给活性成分调控提供理论依据,对艾纳香中萜类代谢途径及特异性酶进行了研究。基于转录组信息,在KEGG数据库中分析了艾纳香萜类代谢途径。在KEGG数据库中发现了4条萜类代谢途径,分别为萜类骨架生物合成、单萜生物合成、二萜生物合成、倍半萜和三萜生物合成,各包含103、10、29、59个基因。通过对途径中酶和产物的分析,结果表明有8种单萜、3种二萜、3种三萜和倍半萜。主要关键酶为1-脱氧-D-木酮糖-5-磷酸合酶、3-羟基-3-甲基戊二酰辅酶A还原酶和烯丙基转移酶系统。在艾纳香中,单萜合成酶相对较少,而产物种类比其他萜类多得多。这可能与单萜合酶的非特异性催化特性有关。期望通过分析途径和调控关键酶来提高艾纳香中萜类的产量。