Tang Guangfu, Man Haiqiao, Wang Jiao, Zou Jie, Zhao Jiehong, Han Jie
Key Lab of Pharmacognostics of Guizhou Province, College of Pharmacy, Guizhou University of Traditional Chinese Medicine, Guiyang, 550002, China.
Mycotoxin Res. 2023 Aug;39(3):247-259. doi: 10.1007/s12550-023-00491-5. Epub 2023 Jun 3.
Monascus produces a kind of mycotoxin, citrinin, whose synthetic pathway is still not entirely clear. The function of CtnD, a putative oxidoreductase located upstream of pksCT in the citrinin gene cluster, has not been reported. In this study, the CtnD overexpressed strain and the Cas9 constitutively expressed chassis strain were obtained by genetic transformation mediated by Agrobacterium tumefaciens. The pyrG and CtnD double gene-edited strains were then obtained by transforming the protoplasts of the Cas9 chassis strain with in vitro sgRNAs. The results showed that overexpression of CtnD resulted in significant increases in citrinin content of more than 31.7% and 67.7% in the mycelium and fermented broth, respectively. The edited CtnD caused citrinin levels to be reduced by more than 91% in the mycelium and 98% in the fermented broth, respectively. It was shown that CtnD is a key enzyme involved in citrinin biosynthesis. RNA-Seq and RT-qPCR showed that the overexpression of CtnD had no significant effect on the expression of CtnA, CtnB, CtnE, and CtnF but led to distinct changes in the expression of acyl-CoA thioesterase and two MFS transporters, which may play an unknown role in citrinin metabolism. This study is the first to report the important function of CtnD in M. purpureus through a combination of CRISPR/Cas9 editing and overexpression.
红曲霉会产生一种霉菌毒素——桔霉素,其合成途径仍不完全清楚。桔霉素基因簇中位于pksCT上游的一种假定氧化还原酶CtnD的功能尚未见报道。在本研究中,通过根癌农杆菌介导的遗传转化获得了CtnD过表达菌株和组成型表达Cas9的底盘菌株。然后通过用体外sgRNA转化Cas9底盘菌株的原生质体获得了pyrG和CtnD双基因编辑菌株。结果表明,CtnD的过表达导致菌丝体和发酵液中桔霉素含量分别显著增加31.7%以上和67.7%以上。编辑后的CtnD使菌丝体和发酵液中的桔霉素水平分别降低了91%以上和98%以上。结果表明,CtnD是桔霉素生物合成中的关键酶。RNA-Seq和RT-qPCR表明,CtnD的过表达对CtnA、CtnB、CtnE和CtnF的表达没有显著影响,但导致酰基辅酶A硫酯酶和两种MFS转运蛋白的表达发生明显变化,这可能在桔霉素代谢中发挥未知作用。本研究首次通过CRISPR/Cas9编辑和过表达相结合的方法报道了CtnD在紫色红曲霉中的重要功能。