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Single-Cell-Based High-Throughput Cultivation and Functional Characterization of Biosurfactant-Producing Bacteria from Soil and Oilfield-Produced Water

Biosurfactants are a group of surface-active compounds that can be produced by diverse microorganisms. They have been widely used in various industrial fields. Reducing production costs, improving efficiency, and collecting more diverse producing strains have become major challenges in the biosurfac...

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Autores principales: Xu, Ying, Jing, Yali, Zhang, Yaqian, Liu, Qingjie, Xiu, Jianlong, Zhang, Ke, Jia, Ninghong, Zhou, Minghui, Zhou, Xinyu, Huang, Jia, Nie, Yong, Wu, Xiao-Lei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9696802/
https://www.ncbi.nlm.nih.gov/pubmed/36363808
http://dx.doi.org/10.3390/microorganisms10112216
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author Xu, Ying
Jing, Yali
Zhang, Yaqian
Liu, Qingjie
Xiu, Jianlong
Zhang, Ke
Jia, Ninghong
Zhou, Minghui
Zhou, Xinyu
Huang, Jia
Nie, Yong
Wu, Xiao-Lei
author_facet Xu, Ying
Jing, Yali
Zhang, Yaqian
Liu, Qingjie
Xiu, Jianlong
Zhang, Ke
Jia, Ninghong
Zhou, Minghui
Zhou, Xinyu
Huang, Jia
Nie, Yong
Wu, Xiao-Lei
author_sort Xu, Ying
collection PubMed
description Biosurfactants are a group of surface-active compounds that can be produced by diverse microorganisms. They have been widely used in various industrial fields. Reducing production costs, improving efficiency, and collecting more diverse producing strains have become major challenges in the biosurfactant industry. These challenges could be overcome by screening for more diverse and efficient biosurfactant-producing strains. The conventional methods for the isolation and functional characterization of microorganisms are laborious and biased toward fast-growing or strongly competitive microorganisms. Here, we established a high-throughput approach of single-cell-based cultivation and functional characterization of biosurfactant-producing bacteria (SCCBB). This approach combines single-cell cultivation with the detection of optical distortions. Using this approach, we isolated 431 strains with biosurfactant production potential from petroleum-contaminated soil and oilfield-produced water. The surfactant production capabilities of the strains were subsequently validated using surface tension measurements, TLC, and CMC measurements. To investigate the industrial production potential, we optimized the production conditions of a representative glycolipids-producing strain, Pseudomonas sp. L01, using response surface methodology (RSM). Optimal conditions yielded a crude biosurfactant yield of 8.43 g/L in a flask. Our work provides a high-throughput approach to the isolation and screening of biosurfactant-producing bacteria, as well as other functional bacteria in a wide range of fields.
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spelling pubmed-96968022022-11-26 Single-Cell-Based High-Throughput Cultivation and Functional Characterization of Biosurfactant-Producing Bacteria from Soil and Oilfield-Produced Water Xu, Ying Jing, Yali Zhang, Yaqian Liu, Qingjie Xiu, Jianlong Zhang, Ke Jia, Ninghong Zhou, Minghui Zhou, Xinyu Huang, Jia Nie, Yong Wu, Xiao-Lei Microorganisms Article Biosurfactants are a group of surface-active compounds that can be produced by diverse microorganisms. They have been widely used in various industrial fields. Reducing production costs, improving efficiency, and collecting more diverse producing strains have become major challenges in the biosurfactant industry. These challenges could be overcome by screening for more diverse and efficient biosurfactant-producing strains. The conventional methods for the isolation and functional characterization of microorganisms are laborious and biased toward fast-growing or strongly competitive microorganisms. Here, we established a high-throughput approach of single-cell-based cultivation and functional characterization of biosurfactant-producing bacteria (SCCBB). This approach combines single-cell cultivation with the detection of optical distortions. Using this approach, we isolated 431 strains with biosurfactant production potential from petroleum-contaminated soil and oilfield-produced water. The surfactant production capabilities of the strains were subsequently validated using surface tension measurements, TLC, and CMC measurements. To investigate the industrial production potential, we optimized the production conditions of a representative glycolipids-producing strain, Pseudomonas sp. L01, using response surface methodology (RSM). Optimal conditions yielded a crude biosurfactant yield of 8.43 g/L in a flask. Our work provides a high-throughput approach to the isolation and screening of biosurfactant-producing bacteria, as well as other functional bacteria in a wide range of fields. MDPI 2022-11-09 /pmc/articles/PMC9696802/ /pubmed/36363808 http://dx.doi.org/10.3390/microorganisms10112216 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xu, Ying
Jing, Yali
Zhang, Yaqian
Liu, Qingjie
Xiu, Jianlong
Zhang, Ke
Jia, Ninghong
Zhou, Minghui
Zhou, Xinyu
Huang, Jia
Nie, Yong
Wu, Xiao-Lei
Single-Cell-Based High-Throughput Cultivation and Functional Characterization of Biosurfactant-Producing Bacteria from Soil and Oilfield-Produced Water
title Single-Cell-Based High-Throughput Cultivation and Functional Characterization of Biosurfactant-Producing Bacteria from Soil and Oilfield-Produced Water
title_full Single-Cell-Based High-Throughput Cultivation and Functional Characterization of Biosurfactant-Producing Bacteria from Soil and Oilfield-Produced Water
title_fullStr Single-Cell-Based High-Throughput Cultivation and Functional Characterization of Biosurfactant-Producing Bacteria from Soil and Oilfield-Produced Water
title_full_unstemmed Single-Cell-Based High-Throughput Cultivation and Functional Characterization of Biosurfactant-Producing Bacteria from Soil and Oilfield-Produced Water
title_short Single-Cell-Based High-Throughput Cultivation and Functional Characterization of Biosurfactant-Producing Bacteria from Soil and Oilfield-Produced Water
title_sort single-cell-based high-throughput cultivation and functional characterization of biosurfactant-producing bacteria from soil and oilfield-produced water
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9696802/
https://www.ncbi.nlm.nih.gov/pubmed/36363808
http://dx.doi.org/10.3390/microorganisms10112216
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