Institute of Natural Medicine, University of Toyama, 2630-Sugitani, Toyama, 930-0194, Japan.
Modern Research Center for Traditional Chinese Medicine, Beijing University of Chinese Medicine, Beijing, 100029, People's Republic of China.
J Nat Med. 2023 Sep;77(4):667-676. doi: 10.1007/s11418-023-01743-5. Epub 2023 Aug 19.
Agarwood has been valued as an exquisite, high-grade fragrant wood since ancient times. Due to the scarcity of high-quality agarwood, it is quite expensive, and the number of original plants has been drastically reduced due to overharvesting, including illegal logging. Despite this, a reliable method of agarwood cultivation has yet to be developed. Thus, identifying the biosynthetic pathways of the fragrant components in agarwood might help developers to optimize the culture conditions and create artificial agarwood, by monitoring the expression of the biosynthetic enzymes or their genes. This review presents the characteristics of our recently identified key enzyme, 2-(2-phenylethyl)chromone precursor synthase (PECPS), which generates the common precursor of 2-(2-phenylethyl)chromones (PECs), the main fragrances in agarwood, as well as our reasoning to reach these conclusions. We also discuss the biosynthetic pathway of PECs, unveiled following the identification of PECPS.
沉香自古以来就被视为一种精致、高档的香木。由于高质量沉香的稀缺性,它的价格非常昂贵,而且由于过度开采,包括非法砍伐,原植物的数量已经大幅减少。尽管如此,一种可靠的沉香种植方法仍未被开发出来。因此,鉴定沉香中芳香成分的生物合成途径可能有助于开发人员通过监测生物合成酶或其基因的表达来优化培养条件并创造人工沉香。本综述介绍了我们最近鉴定的关键酶 2-(2-苯乙基)色酮前体合酶 (PECPS) 的特征,该酶生成 2-(2-苯乙基)色酮 (PECs) 的常见前体,PECs 是沉香中的主要香料,以及我们得出这些结论的推理。我们还讨论了 PECPS 鉴定后揭示的 PECs 的生物合成途径。