Tianjin Key Laboratory of Industrial Biology Systems and Processing Engineering, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin, 300308, China.
John A. Paulson School of Engineering and Applied Sciences, Harvard University, Cambridge, MA, 02138, USA.
J Ind Microbiol Biotechnol. 2019 Nov;46(11):1603-1610. doi: 10.1007/s10295-019-02221-2. Epub 2019 Aug 2.
The selection of improved producers among the huge number of variants in mutant libraries is a key issue in filamentous fungi of industrial biotechnology. Here, we developed a droplet-based microfluidic high-throughput screening platform for selection of high-cellulase producers from filamentous fungus Trichoderma reesei. The screening system used a fluorogenic assay to measure amount of cellulase and its activity. The key effectors such as cellulase-inducing medium, spore germination, droplet cultivation time, droplet fluorescence signal detection, and droplet cell sorting were studied. An artificial pre-mixed library of high- and low-cellulase-producing T. reesei strains was screened successfully to verify the feasibility of our method. Finally, two cellulase hyperproducers exhibiting improvements in cellulase activity of 27% and 46% were isolated from an atmospheric and room-temperature plasma (ARTP)-mutated library. This high-throughput screening system could be applied to the engineering of T. reesei strains and other industrially valuable protein-producing filamentous fungi.
在突变文库的大量变体中选择改良的生产者是工业生物技术丝状真菌的关键问题。在这里,我们开发了一种基于液滴的微流控高通量筛选平台,用于从里氏木霉中筛选高产纤维素酶的生产者。筛选系统使用荧光测定法来测量纤维素酶的含量及其活性。研究了关键效应物,如纤维素酶诱导培养基、孢子萌发、液滴培养时间、液滴荧光信号检测和液滴细胞分选。成功筛选了人工预先混合的高产和低产纤维素酶里氏木霉菌株文库,以验证我们方法的可行性。最后,从大气压室温等离子体(ARTP)诱变文库中分离出两个纤维素酶超产菌,其纤维素酶活性分别提高了 27%和 46%。该高通量筛选系统可应用于里氏木霉菌株和其他具有工业价值的蛋白产生丝状真菌的工程改造。