首页> 外文期刊>BMC Microbiology >Development of a gene cloning system in a fast-growing and moderately thermophilic Streptomyces species and heterologous expression of Streptomyces antibiotic biosynthetic gene clusters
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Development of a gene cloning system in a fast-growing and moderately thermophilic Streptomyces species and heterologous expression of Streptomyces antibiotic biosynthetic gene clusters

机译:快速增长和适度嗜热链霉菌种的基因克隆系统的开发以及链霉菌抗生素生物合成基因簇的异源表达

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Background Streptomyces species are a major source of antibiotics. They usually grow slowly at their optimal temperature and fermentation of industrial strains in a large scale often takes a long time, consuming more energy and materials than some other bacterial industrial strains (e.g., E. coli and Bacillus). Most thermophilic Streptomyces species grow fast, but no gene cloning systems have been developed in such strains. Results We report here the isolation of 41 fast-growing (about twice the rate of S. coelicolor), moderately thermophilic (growing at both 30°C and 50°C) Streptomyces strains, detection of one linear and three circular plasmids in them, and sequencing of a 6996-bp plasmid, pTSC1, from one of them. pTSC1-derived pCWH1 could replicate in both thermophilic and mesophilic Streptomyces strains. On the other hand, several Streptomyces replicons function in thermophilic Streptomyces species. By examining ten well-sporulating strains, we found two promising cloning hosts, 2C and 4F. A gene cloning system was established by using the two strains. The actinorhodin and anthramycin biosynthetic gene clusters from mesophilic S. coelicolor A3(2) and thermophilic S. refuineus were heterologously expressed in one of the hosts. Conclusions We have developed a gene cloning and expression system in a fast-growing and moderately thermophilic Streptomyces species. Although just a few plasmids and one antibiotic biosynthetic gene cluster from mesophilic Streptomyces were successfully expressed in thermophilic Streptomyces species, we expect that by utilizing thermophilic Streptomyces-specific promoters, more genes and especially antibiotic genes clusters of mesophilic Streptomyces should be heterologously expressed.
机译:背景技术链霉菌属是抗生素的主要来源。它们通常在最适温度下生长缓慢,大规模发酵工业菌株通常需要较长时间,比其他一些细菌工业菌株(例如大肠杆菌和芽孢杆菌)消耗更多的能量和材料。大多数嗜热链霉菌菌种生长很快,但是在这类菌株中尚未开发出基因克隆系统。结果我们在此报告了41种快速生长的链霉菌菌株的分离株(大约是coelicolor S. coelicolor的两倍),嗜热的中等嗜热性菌株(在30°C和50°C均生长),检测到其中一个线性和三个环状质粒,并从其中一个测序出6996 bp质粒pTSC1。 pTSC1衍生的pCWH1可以在嗜热和中温链霉菌菌株中复制。另一方面,几个链霉菌复制子在嗜热链霉菌种中起作用。通过检查十种表现良好的菌株,我们发现了两个有希望的克隆宿主:2C和4F。利用这两个菌株建立了基因克隆系统。来自嗜温链球菌A3(2)和嗜热链球菌S. refuineus的放线菌丝蛋白和蒽霉素生物合成基因簇在宿主之一中异源表达。结论我们已经开发了一种在快速增长和中等嗜热链霉菌种中的基因克隆和表达系统。尽管嗜温链霉菌种仅成功表达了嗜温链霉菌的少数质粒和一个抗生素生物合成基因簇,但我们希望通过利用嗜热链霉菌特异性启动子,应该异源表达更多基因,尤其是嗜温链霉菌的抗生素基因簇。

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