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Ultrahigh-throughput screening of industrial enzyme-producing strains by droplet-based microfluidic system
Droplet-based microfluidics has emerged as a powerful tool for single-cell screening with ultrahigh throughput, but its widespread application remains limited by the accessibility of a droplet microfluidic high-throughput screening (HTS) platform, especially to common laboratories having no backgrou...
Autores principales: | , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9142201/ https://www.ncbi.nlm.nih.gov/pubmed/35259275 http://dx.doi.org/10.1093/jimb/kuac007 |
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author | Yuan, Huiling Tu, Ran Tong, Xinwei Lin, Yuping Zhang, Yuanyuan Wang, Qinhong |
author_facet | Yuan, Huiling Tu, Ran Tong, Xinwei Lin, Yuping Zhang, Yuanyuan Wang, Qinhong |
author_sort | Yuan, Huiling |
collection | PubMed |
description | Droplet-based microfluidics has emerged as a powerful tool for single-cell screening with ultrahigh throughput, but its widespread application remains limited by the accessibility of a droplet microfluidic high-throughput screening (HTS) platform, especially to common laboratories having no background in microfluidics. Here, we first developed a microfluidic HTS platform based on fluorescence-activated droplet sorting technology. This platform allowed (i) encapsulation of single cells in monodisperse water-in-oil droplets; (ii) cell growth and protein production in droplets; and (iii) sorting of droplets based on their fluorescence intensities. To validate the platform, a model selection experiment of a binary mixture of Bacillus strains was performed, and a 45.6-fold enrichment was achieved at a sorting rate of 300 droplets per second. Furthermore, we used the platform for the selection of higher α-amylase-producing Bacillus licheniformis strains from a mutant library generated by atmospheric and room temperature plasma mutagenesis, and clones displaying over 50% improvement in α-amylase productivity were isolated. This droplet screening system could be applied to the engineering of other industrially valuable strains. |
format | Online Article Text |
id | pubmed-9142201 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-91422012022-06-08 Ultrahigh-throughput screening of industrial enzyme-producing strains by droplet-based microfluidic system Yuan, Huiling Tu, Ran Tong, Xinwei Lin, Yuping Zhang, Yuanyuan Wang, Qinhong J Ind Microbiol Biotechnol Biotechnology Methods Droplet-based microfluidics has emerged as a powerful tool for single-cell screening with ultrahigh throughput, but its widespread application remains limited by the accessibility of a droplet microfluidic high-throughput screening (HTS) platform, especially to common laboratories having no background in microfluidics. Here, we first developed a microfluidic HTS platform based on fluorescence-activated droplet sorting technology. This platform allowed (i) encapsulation of single cells in monodisperse water-in-oil droplets; (ii) cell growth and protein production in droplets; and (iii) sorting of droplets based on their fluorescence intensities. To validate the platform, a model selection experiment of a binary mixture of Bacillus strains was performed, and a 45.6-fold enrichment was achieved at a sorting rate of 300 droplets per second. Furthermore, we used the platform for the selection of higher α-amylase-producing Bacillus licheniformis strains from a mutant library generated by atmospheric and room temperature plasma mutagenesis, and clones displaying over 50% improvement in α-amylase productivity were isolated. This droplet screening system could be applied to the engineering of other industrially valuable strains. Oxford University Press 2022-03-08 /pmc/articles/PMC9142201/ /pubmed/35259275 http://dx.doi.org/10.1093/jimb/kuac007 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Society of Industrial Microbiology and Biotechnology. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs licence (https://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial reproduction and distribution of the work, in any medium, provided the original work is not altered or transformed in any way, and that the work is properly cited. For commercial re-use, please contact journals.permissions@oup.com |
spellingShingle | Biotechnology Methods Yuan, Huiling Tu, Ran Tong, Xinwei Lin, Yuping Zhang, Yuanyuan Wang, Qinhong Ultrahigh-throughput screening of industrial enzyme-producing strains by droplet-based microfluidic system |
title | Ultrahigh-throughput screening of industrial enzyme-producing strains by droplet-based microfluidic system |
title_full | Ultrahigh-throughput screening of industrial enzyme-producing strains by droplet-based microfluidic system |
title_fullStr | Ultrahigh-throughput screening of industrial enzyme-producing strains by droplet-based microfluidic system |
title_full_unstemmed | Ultrahigh-throughput screening of industrial enzyme-producing strains by droplet-based microfluidic system |
title_short | Ultrahigh-throughput screening of industrial enzyme-producing strains by droplet-based microfluidic system |
title_sort | ultrahigh-throughput screening of industrial enzyme-producing strains by droplet-based microfluidic system |
topic | Biotechnology Methods |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9142201/ https://www.ncbi.nlm.nih.gov/pubmed/35259275 http://dx.doi.org/10.1093/jimb/kuac007 |
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