Zhao Chen, Huang Ying, Guo Chao, Yang Bolei, Zhang Yan, Lan Zhou, Guan Xiong, Song Yuan, Zhang Xiaolin
Academy of State Administration of Grainy, Beijing, PR China.
J Mol Microbiol Biotechnol. 2017;27(3):190-198. doi: 10.1159/000477543. Epub 2017 Aug 19.
Spinosyns are a group of macrolide insecticides produced by Saccharopolyspora spinosa. Although S. spinosa can be used for industrial-scale production of spinosyns, this might suffer from several limitations, mainly related to its long growth cycle, low fermentation biomass, and inefficient utilization of starch. It is crucial to generate a robust strain for further spinosyn production and the development of spinosyn derivatives. A BAC vector, containing the whole biosynthetic gene cluster for spinosyn (74 kb) and the elements required for conjugal transfer and site-specific integration, was introduced into different Streptomyces hosts in order to obtain heterologous spinosyn-producing strains. The exconjugants of different Streptomyces strains did not show spinosyn production unless the rhamnose biosynthesis genes from S. spinosa genomic DNA were present and expressed under the control of a strong constitutive ermE*p promoter. Using this heterologous expression system resulted in yields of 1 μg/mL and 1.5 μg/mL spinosyns in Streptomyces coelicolor and Streptomyces lividans, respectively. This report demonstrates spinosyn production in 2 Streptomyces strains and stresses the essential role of rhamnose in this process. This work also provides a potential alternative route for producing spinosyn analogs by means of genetic manipulation in the heterologous hosts.
多杀菌素是由多刺糖多孢菌产生的一类大环内酯类杀虫剂。尽管多刺糖多孢菌可用于工业规模生产多杀菌素,但这可能存在一些局限性,主要涉及其生长周期长、发酵生物量低以及淀粉利用效率低。为进一步生产多杀菌素和开发多杀菌素衍生物,培育出一株强壮的菌株至关重要。将一个包含多杀菌素完整生物合成基因簇(74 kb)以及接合转移和位点特异性整合所需元件的BAC载体导入不同的链霉菌宿主中,以获得能产生异源多杀菌素的菌株。不同链霉菌菌株的接合后体均未表现出多杀菌素的产生,除非存在来自多刺糖多孢菌基因组DNA的鼠李糖生物合成基因,并在强组成型ermE*p启动子的控制下表达。使用这种异源表达系统,在天蓝色链霉菌和变铅青链霉菌中分别产生了1 μg/mL和1.5 μg/mL的多杀菌素。本报告证明了在2种链霉菌菌株中产生了多杀菌素,并强调了鼠李糖在此过程中的重要作用。这项工作还为通过在异源宿主中进行基因操作生产多杀菌素类似物提供了一条潜在的替代途径。