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真菌芳香聚酮化合物的合成生物学研究进展*
引用本文:饶海密,梁冬梅,李伟国,乔建军,财音青格乐. 真菌芳香聚酮化合物的合成生物学研究进展*[J]. 中国生物工程杂志, 2020, 40(9): 52-61. DOI: 10.13523/j.cb.2003027
作者姓名:饶海密  梁冬梅  李伟国  乔建军  财音青格乐
作者单位:天津大学化工学院 系统生物工程教育部重点实验室 天津 301700
基金项目:* 国家重点研发计划(2017YFD0201400)
摘    要:真菌芳香聚酮化合物是由真菌非还原聚酮合酶(NR-PKSs)催化形成的具有广泛生物活性的一类天然产物。大部分内源真菌菌株存在难培养、致病性或产率低等问题,从根本上限制了真菌芳香聚酮化合物的开发和应用。随着合成生物学和代谢工程的发展,很多具有生物活性的聚酮产物实现了在工业微生物(如酿酒酵母、构巢曲霉等)中的异源生产,相关研究逐渐成为热点。从合成途径解析与挖掘、底盘细胞的构建与改造等方面综述了近年来真菌芳香聚酮化合物的合成生物学研究进展,为未来真菌芳香聚酮化合物人工代谢途径的高效构建和实现工业化生产奠定基础。

关 键 词:真菌芳香聚酮  NR-PKSs  生物合成途径  合成生物学  异源表达  
收稿时间:2020-03-09

Advances in Synthetic Biology of Fungal Aromatic Polyketides
RAO Hai-mi,LIANG Dong-mei,LI Wei-guo,QIAO Jian-jun,CAI YIN Qing-ge-le. Advances in Synthetic Biology of Fungal Aromatic Polyketides[J]. China Biotechnology, 2020, 40(9): 52-61. DOI: 10.13523/j.cb.2003027
Authors:RAO Hai-mi  LIANG Dong-mei  LI Wei-guo  QIAO Jian-jun  CAI YIN Qing-ge-le
Abstract:Fungal aromatic polyketides are a class of natural products with a wide range of bio-activite,which catalyzed by fungal non-reducing polyketide synthase (NR-PKSs).Some aromatic polyketide producting strains have problems such as difficulty in cultivation, pathogenicity, or low yield, which fundamentally limit the development and application of fungal aromatic polyketides.With the development of synthetic biology and metabolic engineering, more and more polyketides with biological activity have realized the heterogeneous production of industrial microorganisms(such as Saccharomyces cerevisiae and Aspergillus nidulans,etc.), and related research have gradually become hot spots. The research progress of the synthetic biology of fungal aromatic polyketides in recent years is reviewed from the analysis and mining of biosynthetic pathways, the construction and optimization of chassis cells, etc., which lays the foundation for the efficient synthesis of artificial metabolic pathways of aromatic polyketides and industrial production in the future.
Keywords:Fungal aromatic polyketides  NR-PKSs  Biosynthetic pathways  Synthetic biology  Heterologous expression  
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