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Biotechnology and bioengineering. 2020 Jun;117(6):1724-1737. doi: 10.1002/bit.27327 Q23.52024

Microbial microdroplet culture system (MMC): An integrated platform for automated, high-throughput microbial cultivation and adaptive evolution

微生物微滴培养系统(MMC):一种用于自动化、高通量的微生物培养和适应性进化的一体化平台 翻译改进

Xingjin Jian  1  2, Xiaojie Guo  3, Jia Wang  4, Zheng Lin Tan  1  2  5, Xin-Hui Xing  1  2  6, Liyan Wang  3, Chong Zhang  1  2  6

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作者单位

  • 1 Department of Chemical Engineering, Institute of Biochemical Engineering, Tsinghua University, Beijing, China.
  • 2 Key Laboratory of Industrial Biocatalysis, Ministry of Education, Tsinghua University, Beijing, China.
  • 3 Luoyang TMAXTREE Biotechnology Co., Ltd., Luoyang, China.
  • 4 Biochemical Engineering Research Group, School of Chemical Engineering and Technology, Xi'an Jiaotong University, Xi'an, China.
  • 5 School of Life Science and Technology, Tokyo Institute of Technology, Midori-ku, Yokohama, Kanagawa Prefecture, Japan.
  • 6 Center for Synthetic & Systems Biology, Tsinghua University, Beijing, China.
  • DOI: 10.1002/bit.27327 PMID: 32159223

    摘要 Ai翻译

    Conventional microbial cell cultivation techniques are typically labor intensive, low throughput, and poorlyparallelized, rendering them inefficient. The development of automated, modular microbial cell micro-cultivation systems, particularly those employing droplet microfluidics, have gained attention for their high-throughput, highly paralellized and efficient cultivation capabilities. Here, we report the development of a microbial microdroplet culture system (MMC), which is an integrated platform for automated, high-throughput cultivation and adaptive evolution of microorganisms. We demonstrated that the MMC yielded both accurate and reproducible results for the manipulation and detection of droplets. The superior performance of MMC for microbial cell cultivation was validated by comparing the growth curves of six microbial strains grown in MMC, conventional shake flasks or well plates. The highest incipient growth rate for all six microbial strains was achieved by using MMC. We also conducted an 18-day process of adaptive evolution of methanol-essential Escherichia coli strain in MMC and obtained two strains exhibiting higher growth rates compared with the parent strain. Our study demonstrates the power of MMC to provide an efficient and reliable approach for automated, high-throughput microbial cultivation and adaptive evolution.

    Keywords: automated operations; high-throughput; laboratory adaptive evolution; microbial cultivation; microbial microdroplet culture system.

    Keywords:adaptive evolution

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    期刊名:Biotechnology and bioengineering

    缩写:BIOTECHNOL BIOENG

    ISSN:0006-3592

    e-ISSN:1097-0290

    IF/分区:3.5/Q2

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