Wang Qi, Cao Rui, Zhang Yuna, Qi Pengyan, Wang Lizhi, Fang Shiming
School of Chinese Materia Medica, Tianjin University of Traditional Chinese Medicine, Tianjin, 301617, China.
Tianjin State Key Laboratory of Modern Chinese Medicine, Tianjin University of Traditional Chinese Medicine, Tianjin, 301617, China.
AMB Express. 2021 Nov 15;11(1):150. doi: 10.1186/s13568-021-01304-7.
Basidiomycetes, also known as club fungi, consist of a specific group of fungi. Basidiomycetes produce a large number of secondary metabolites, of which sesquiterpenoids, diterpenoids and triterpenoids are the primary components. However, these terpenoids tend to be present in low amounts, which makes it difficult to meet application requirements. Terpenoid biosynthesis improves the quantity of these secondary metabolites. However, current understanding of the biosynthetic mechanism of terpenoids in basidiomycetes is insufficient. Therefore, this article reviews the latest research on the biosynthesis of terpenoids in basidiomycetes and summarizes the CYP450 involved in the biosynthesis of terpenoids in basidiomycetes. We also propose opportunities and challenges for chassis microbial heterologous production of terpenoids in basidiomycetes and provide a reference basis for the better development of basidiomycete engineering.
担子菌纲,也被称为伞菌,是一类特定的真菌。担子菌能产生大量次生代谢产物,其中倍半萜、二萜和三萜是主要成分。然而,这些萜类化合物的含量往往较低,难以满足应用需求。萜类生物合成可提高这些次生代谢产物的产量。然而,目前对担子菌中萜类生物合成机制的了解还不够充分。因此,本文综述了担子菌中萜类生物合成的最新研究,并总结了参与担子菌萜类生物合成的细胞色素P450。我们还提出了利用底盘微生物在担子菌中异源生产萜类化合物的机遇和挑战,为担子菌工程的更好发展提供参考依据。