State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, People's Republic of China.
Appl Biochem Biotechnol. 2013 Mar;169(5):1683-95. doi: 10.1007/s12010-013-0095-4. Epub 2013 Jan 20.
Improvement of microbial strains for the high-production of industrial products has been the hallmark of all commercial fermentation processes. Strain improvement has been conventionally achieved through mutation and selection. However, most of the screenings were performed in shake flasks, which made the screening procedure very complex, time-consuming, and inefficient. Most mutant spore suspension had no chance to be screened due to the low-throughput of shake flasks and had to be sacrificed. In this paper, in order to get a Cephalosporin C (CPC) high-yield stain, traditional mutagenesis was employed to obtain the mutant library and gave them the equal screening chance by a novel mixture culture method combined with high-throughput screening method. The good correlation of fermentation results between differing-scale cultivations confirmed the feasibility of utilizing the 48-deep microtiter plates as a scale-down tool instead of shake flasks for culturing high-aerobic microbes with long cultivation period. The microbioassay based on the antibacterial activity of CPC against Alcaligenes faecalis was used to select mutants. As a result, the high-yield strain W-6 was successfully screened out and the CPC titer was nearly 50 % higher than that of the parental strain in the shake flask. The CPC production of strain W-6 was further validated in 50 l bioreactor, and the CPC production reached 32.0 g/l, twofold higher than that of the wild strain.
提高微生物菌株生产工业产品的能力一直是所有商业发酵过程的标志。传统上,通过突变和选择来实现菌株的改良。然而,大多数筛选都是在摇瓶中进行的,这使得筛选过程非常复杂、耗时且效率低下。由于摇瓶的高通量较低,大多数突变体孢子悬浮液没有机会被筛选,只能被牺牲。在本文中,为了获得头孢菌素 C(CPC)高产菌株,采用传统诱变方法获得突变文库,并通过新型混合培养方法与高通量筛选方法相结合,为它们提供均等的筛选机会。不同规模培养的发酵结果之间的良好相关性证实了利用 48 孔深微量滴定板作为摇瓶的缩小工具来培养具有长培养周期的需氧微生物的可行性。基于 CPC 对粪产碱杆菌的抗菌活性的微生物测定法用于筛选突变体。结果,成功筛选出高产菌株 W-6,其 CPC 效价在摇瓶中比亲本菌株高近 50%。在 50L 生物反应器中进一步验证了菌株 W-6 的 CPC 生产能力,CPC 产量达到 32.0g/L,是野生菌株的两倍。