Zhou Rui, Liao Guojian, Hu Changhua
Institute of Modern Biopharmaceuticals, School of Pharmaceutical Sciences, Southwest University, Chongqing 400716, China.
Sheng Wu Gong Cheng Xue Bao. 2011 Aug;27(8):1142-8.
Secondary metabolites of filamentous fungi are important sources of new drugs, and their biosynthetic processes are regulated by numerous factors. Recent studies indicate that many filamentous fungal secondary metabolites are regulated by epigenetic modifications, which not only affect the titers of secondary metabolites, but also activate the cryptic gene clusters. This review summarizes recent advances of epigenetic application in filamentous fungal secondary metabolite biosynthesis, especially the types of fungal epigenetic modification and epigenetic remodeling of the fungal secondary metabolism. The application of epigenetic theory in filamentous fungi is becoming a new strategy for fungal strain improvement and a powerful method to obtain novel natural products.
丝状真菌的次级代谢产物是新药的重要来源,其生物合成过程受到众多因素的调控。最近的研究表明,许多丝状真菌次级代谢产物受表观遗传修饰调控,这不仅影响次级代谢产物的产量,还能激活沉默基因簇。本文综述了表观遗传学在丝状真菌次级代谢产物生物合成中的最新进展,特别是真菌表观遗传修饰的类型以及真菌次级代谢的表观遗传重塑。表观遗传学理论在丝状真菌中的应用正成为真菌菌株改良的新策略和获得新型天然产物的有力方法。