次生代谢
调节器
生物合成
新陈代谢
产量(工程)
转录调控
生物
生物化学
蛋白质组学
基因
基因表达
冶金
材料科学
作者
Jianli Tang,Haocheng He,Yunlong Li,Zhudong Liu,Ziyuan Xia,Li Cao,Zirong Zhu,Ling Shuai,Yang Liu,Qianqian Wan,Yuewen Luo,Youming Zhang,Jie Rang,Liqiu Xia
标识
DOI:10.1021/acs.jafc.1c03654
摘要
Butenyl-spinosyn is a highly effective and broad-spectrum biopesticide produced by Saccharopolyspora pogona. However, the yield of this compound is difficult to increase because the regulatory mechanism of secondary metabolism is still unknown. Here, the transcriptional regulator Sp13016 was discovered to be highly associated with butenyl-spinosyn synthesis and bacterial growth. Overexpression of sp13016 improved butenyl-spinosyn production to a level that was 2.84-fold that of the original strain, while deletion of sp13016 resulted in a significant decrease in yield and growth inhibition. Comparative proteomics revealed that these phenotypic changes were attributed to the influence of Sp13016 on the central carbon metabolism pathway to regulate the supply of precursors. Our research helps to reveal the regulatory mechanism of butenyl-spinosyn biosynthesis and provides a reference for increasing the yield of natural products of Actinomycetes.
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