Cargando…

Anti-Biofouling Performance of an Immobilized Indigenous Quorum Quenching Bacterium Bacillus cereus HG10 and Its Influence on the Microbial Community in a Bioreactor

Quorum quenching-membrane bioreactors (QQ-MBRs) have been studied widely in recent decades. However, limited information is known about the influence of QQ on the microbial community. In this study, the indigenous QQ bacterium Bacillus cereus HG10 was immobilized and used to control biofouling in a...

Descripción completa

Detalles Bibliográficos
Autores principales: Xu, Fangfang, Zhao, Chang, Lee, Chuang Hak, Wang, Wenzhao, Xu, Qiyong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6802356/
https://www.ncbi.nlm.nih.gov/pubmed/31597309
http://dx.doi.org/10.3390/ijerph16193777
_version_ 1783460783300018176
author Xu, Fangfang
Zhao, Chang
Lee, Chuang Hak
Wang, Wenzhao
Xu, Qiyong
author_facet Xu, Fangfang
Zhao, Chang
Lee, Chuang Hak
Wang, Wenzhao
Xu, Qiyong
author_sort Xu, Fangfang
collection PubMed
description Quorum quenching-membrane bioreactors (QQ-MBRs) have been studied widely in recent decades. However, limited information is known about the influence of QQ on the microbial community. In this study, the indigenous QQ bacterium Bacillus cereus HG10 was immobilized and used to control biofouling in a bioreactor. QQ beads caused extracellular polymeric substance reduction and significantly hindered biofilm formation on a submerged membrane. Community profiling of 16S rRNA gene amplicons revealed that QQ beads dramatically altered the bacterial community structure in activated sludge but not in biofilm. Bacterial structure in the presence of QQ beads showed a clear divergence from that of the control groups at phylum, class, order, family, and genus taxonomic ranks. A significant enrichment of several bacterial genera, including Acinetobacter, Aeromonas, Delftia, Bacillus, and Pseudomonas, and depletion of over 12 bacterial genera were observed. These findings would contribute to a better understanding of why and how immobilized QQ bacteria impair membrane biofouling in QQ-MBRs.
format Online
Article
Text
id pubmed-6802356
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-68023562019-11-18 Anti-Biofouling Performance of an Immobilized Indigenous Quorum Quenching Bacterium Bacillus cereus HG10 and Its Influence on the Microbial Community in a Bioreactor Xu, Fangfang Zhao, Chang Lee, Chuang Hak Wang, Wenzhao Xu, Qiyong Int J Environ Res Public Health Article Quorum quenching-membrane bioreactors (QQ-MBRs) have been studied widely in recent decades. However, limited information is known about the influence of QQ on the microbial community. In this study, the indigenous QQ bacterium Bacillus cereus HG10 was immobilized and used to control biofouling in a bioreactor. QQ beads caused extracellular polymeric substance reduction and significantly hindered biofilm formation on a submerged membrane. Community profiling of 16S rRNA gene amplicons revealed that QQ beads dramatically altered the bacterial community structure in activated sludge but not in biofilm. Bacterial structure in the presence of QQ beads showed a clear divergence from that of the control groups at phylum, class, order, family, and genus taxonomic ranks. A significant enrichment of several bacterial genera, including Acinetobacter, Aeromonas, Delftia, Bacillus, and Pseudomonas, and depletion of over 12 bacterial genera were observed. These findings would contribute to a better understanding of why and how immobilized QQ bacteria impair membrane biofouling in QQ-MBRs. MDPI 2019-10-08 2019-10 /pmc/articles/PMC6802356/ /pubmed/31597309 http://dx.doi.org/10.3390/ijerph16193777 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xu, Fangfang
Zhao, Chang
Lee, Chuang Hak
Wang, Wenzhao
Xu, Qiyong
Anti-Biofouling Performance of an Immobilized Indigenous Quorum Quenching Bacterium Bacillus cereus HG10 and Its Influence on the Microbial Community in a Bioreactor
title Anti-Biofouling Performance of an Immobilized Indigenous Quorum Quenching Bacterium Bacillus cereus HG10 and Its Influence on the Microbial Community in a Bioreactor
title_full Anti-Biofouling Performance of an Immobilized Indigenous Quorum Quenching Bacterium Bacillus cereus HG10 and Its Influence on the Microbial Community in a Bioreactor
title_fullStr Anti-Biofouling Performance of an Immobilized Indigenous Quorum Quenching Bacterium Bacillus cereus HG10 and Its Influence on the Microbial Community in a Bioreactor
title_full_unstemmed Anti-Biofouling Performance of an Immobilized Indigenous Quorum Quenching Bacterium Bacillus cereus HG10 and Its Influence on the Microbial Community in a Bioreactor
title_short Anti-Biofouling Performance of an Immobilized Indigenous Quorum Quenching Bacterium Bacillus cereus HG10 and Its Influence on the Microbial Community in a Bioreactor
title_sort anti-biofouling performance of an immobilized indigenous quorum quenching bacterium bacillus cereus hg10 and its influence on the microbial community in a bioreactor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6802356/
https://www.ncbi.nlm.nih.gov/pubmed/31597309
http://dx.doi.org/10.3390/ijerph16193777
work_keys_str_mv AT xufangfang antibiofoulingperformanceofanimmobilizedindigenousquorumquenchingbacteriumbacilluscereushg10anditsinfluenceonthemicrobialcommunityinabioreactor
AT zhaochang antibiofoulingperformanceofanimmobilizedindigenousquorumquenchingbacteriumbacilluscereushg10anditsinfluenceonthemicrobialcommunityinabioreactor
AT leechuanghak antibiofoulingperformanceofanimmobilizedindigenousquorumquenchingbacteriumbacilluscereushg10anditsinfluenceonthemicrobialcommunityinabioreactor
AT wangwenzhao antibiofoulingperformanceofanimmobilizedindigenousquorumquenchingbacteriumbacilluscereushg10anditsinfluenceonthemicrobialcommunityinabioreactor
AT xuqiyong antibiofoulingperformanceofanimmobilizedindigenousquorumquenchingbacteriumbacilluscereushg10anditsinfluenceonthemicrobialcommunityinabioreactor