Cargando…
Effect of Different Initial Fermentation pH on Exopolysaccharides Produced by Pseudoalteromonas agarivorans Hao 2018 and Identification of Key Genes Involved in Exopolysaccharide Synthesis via Transcriptome Analysis
Exopolysaccharides (EPSs) are carbohydrate polymers produced and secreted by microorganisms. In a changing marine environment, EPS secretion can reduce damage from external environmental disturbances to microorganisms. Meanwhile, EPSs have promising application prospects in the fields of food, cosme...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8877158/ https://www.ncbi.nlm.nih.gov/pubmed/35200619 http://dx.doi.org/10.3390/md20020089 |
_version_ | 1784658344815886336 |
---|---|
author | Ju, Yuhao Shan, Kai Liu, Wenlin Xi, Chenxiang Zhang, Yiling Wang, Wei Wang, Chunlei Cao, Ruiwen Zhu, Wenxing Wang, Haiyong Zhao, Yanqiu Hao, Lujiang |
author_facet | Ju, Yuhao Shan, Kai Liu, Wenlin Xi, Chenxiang Zhang, Yiling Wang, Wei Wang, Chunlei Cao, Ruiwen Zhu, Wenxing Wang, Haiyong Zhao, Yanqiu Hao, Lujiang |
author_sort | Ju, Yuhao |
collection | PubMed |
description | Exopolysaccharides (EPSs) are carbohydrate polymers produced and secreted by microorganisms. In a changing marine environment, EPS secretion can reduce damage from external environmental disturbances to microorganisms. Meanwhile, EPSs have promising application prospects in the fields of food, cosmetics, and pharmaceuticals. Changes in external environmental pH have been shown to affect the synthesis of EPSs in microorganisms. In this study, we analyzed the effects of different initial fermentation pHs on the production, monosaccharide composition, and antioxidant activity of the EPSs of Pseudoalteromonas agarivorans Hao 2018. In addition, the transcriptome sequence of P. agarivorans Hao 2018 under different initial fermentation pH levels was determined. GO and KEGG analyses showed that the differentially expressed genes were concentrated in the two-component regulatory system and bacterial chemotaxis pathways. We further identified the expression of key genes involved in EPS synthesis during pH changes. In particular, the expression of genes encoding the glucose/galactose MFS transporter, phosphomannomutase, and mannose-1-phosphate guanylyltransferase was upregulated when the environmental pH increased, thus promoting EPS synthesis. This study not only contributes to elucidating the environmental adaptation mechanisms of P. agarivorans, but also provides important theoretical guidance for the directed development of new products using biologically active polysaccharides. |
format | Online Article Text |
id | pubmed-8877158 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-88771582022-02-26 Effect of Different Initial Fermentation pH on Exopolysaccharides Produced by Pseudoalteromonas agarivorans Hao 2018 and Identification of Key Genes Involved in Exopolysaccharide Synthesis via Transcriptome Analysis Ju, Yuhao Shan, Kai Liu, Wenlin Xi, Chenxiang Zhang, Yiling Wang, Wei Wang, Chunlei Cao, Ruiwen Zhu, Wenxing Wang, Haiyong Zhao, Yanqiu Hao, Lujiang Mar Drugs Article Exopolysaccharides (EPSs) are carbohydrate polymers produced and secreted by microorganisms. In a changing marine environment, EPS secretion can reduce damage from external environmental disturbances to microorganisms. Meanwhile, EPSs have promising application prospects in the fields of food, cosmetics, and pharmaceuticals. Changes in external environmental pH have been shown to affect the synthesis of EPSs in microorganisms. In this study, we analyzed the effects of different initial fermentation pHs on the production, monosaccharide composition, and antioxidant activity of the EPSs of Pseudoalteromonas agarivorans Hao 2018. In addition, the transcriptome sequence of P. agarivorans Hao 2018 under different initial fermentation pH levels was determined. GO and KEGG analyses showed that the differentially expressed genes were concentrated in the two-component regulatory system and bacterial chemotaxis pathways. We further identified the expression of key genes involved in EPS synthesis during pH changes. In particular, the expression of genes encoding the glucose/galactose MFS transporter, phosphomannomutase, and mannose-1-phosphate guanylyltransferase was upregulated when the environmental pH increased, thus promoting EPS synthesis. This study not only contributes to elucidating the environmental adaptation mechanisms of P. agarivorans, but also provides important theoretical guidance for the directed development of new products using biologically active polysaccharides. MDPI 2022-01-20 /pmc/articles/PMC8877158/ /pubmed/35200619 http://dx.doi.org/10.3390/md20020089 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 Ju, Yuhao Shan, Kai Liu, Wenlin Xi, Chenxiang Zhang, Yiling Wang, Wei Wang, Chunlei Cao, Ruiwen Zhu, Wenxing Wang, Haiyong Zhao, Yanqiu Hao, Lujiang Effect of Different Initial Fermentation pH on Exopolysaccharides Produced by Pseudoalteromonas agarivorans Hao 2018 and Identification of Key Genes Involved in Exopolysaccharide Synthesis via Transcriptome Analysis |
title | Effect of Different Initial Fermentation pH on Exopolysaccharides Produced by Pseudoalteromonas agarivorans Hao 2018 and Identification of Key Genes Involved in Exopolysaccharide Synthesis via Transcriptome Analysis |
title_full | Effect of Different Initial Fermentation pH on Exopolysaccharides Produced by Pseudoalteromonas agarivorans Hao 2018 and Identification of Key Genes Involved in Exopolysaccharide Synthesis via Transcriptome Analysis |
title_fullStr | Effect of Different Initial Fermentation pH on Exopolysaccharides Produced by Pseudoalteromonas agarivorans Hao 2018 and Identification of Key Genes Involved in Exopolysaccharide Synthesis via Transcriptome Analysis |
title_full_unstemmed | Effect of Different Initial Fermentation pH on Exopolysaccharides Produced by Pseudoalteromonas agarivorans Hao 2018 and Identification of Key Genes Involved in Exopolysaccharide Synthesis via Transcriptome Analysis |
title_short | Effect of Different Initial Fermentation pH on Exopolysaccharides Produced by Pseudoalteromonas agarivorans Hao 2018 and Identification of Key Genes Involved in Exopolysaccharide Synthesis via Transcriptome Analysis |
title_sort | effect of different initial fermentation ph on exopolysaccharides produced by pseudoalteromonas agarivorans hao 2018 and identification of key genes involved in exopolysaccharide synthesis via transcriptome analysis |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8877158/ https://www.ncbi.nlm.nih.gov/pubmed/35200619 http://dx.doi.org/10.3390/md20020089 |
work_keys_str_mv | AT juyuhao effectofdifferentinitialfermentationphonexopolysaccharidesproducedbypseudoalteromonasagarivoranshao2018andidentificationofkeygenesinvolvedinexopolysaccharidesynthesisviatranscriptomeanalysis AT shankai effectofdifferentinitialfermentationphonexopolysaccharidesproducedbypseudoalteromonasagarivoranshao2018andidentificationofkeygenesinvolvedinexopolysaccharidesynthesisviatranscriptomeanalysis AT liuwenlin effectofdifferentinitialfermentationphonexopolysaccharidesproducedbypseudoalteromonasagarivoranshao2018andidentificationofkeygenesinvolvedinexopolysaccharidesynthesisviatranscriptomeanalysis AT xichenxiang effectofdifferentinitialfermentationphonexopolysaccharidesproducedbypseudoalteromonasagarivoranshao2018andidentificationofkeygenesinvolvedinexopolysaccharidesynthesisviatranscriptomeanalysis AT zhangyiling effectofdifferentinitialfermentationphonexopolysaccharidesproducedbypseudoalteromonasagarivoranshao2018andidentificationofkeygenesinvolvedinexopolysaccharidesynthesisviatranscriptomeanalysis AT wangwei effectofdifferentinitialfermentationphonexopolysaccharidesproducedbypseudoalteromonasagarivoranshao2018andidentificationofkeygenesinvolvedinexopolysaccharidesynthesisviatranscriptomeanalysis AT wangchunlei effectofdifferentinitialfermentationphonexopolysaccharidesproducedbypseudoalteromonasagarivoranshao2018andidentificationofkeygenesinvolvedinexopolysaccharidesynthesisviatranscriptomeanalysis AT caoruiwen effectofdifferentinitialfermentationphonexopolysaccharidesproducedbypseudoalteromonasagarivoranshao2018andidentificationofkeygenesinvolvedinexopolysaccharidesynthesisviatranscriptomeanalysis AT zhuwenxing effectofdifferentinitialfermentationphonexopolysaccharidesproducedbypseudoalteromonasagarivoranshao2018andidentificationofkeygenesinvolvedinexopolysaccharidesynthesisviatranscriptomeanalysis AT wanghaiyong effectofdifferentinitialfermentationphonexopolysaccharidesproducedbypseudoalteromonasagarivoranshao2018andidentificationofkeygenesinvolvedinexopolysaccharidesynthesisviatranscriptomeanalysis AT zhaoyanqiu effectofdifferentinitialfermentationphonexopolysaccharidesproducedbypseudoalteromonasagarivoranshao2018andidentificationofkeygenesinvolvedinexopolysaccharidesynthesisviatranscriptomeanalysis AT haolujiang effectofdifferentinitialfermentationphonexopolysaccharidesproducedbypseudoalteromonasagarivoranshao2018andidentificationofkeygenesinvolvedinexopolysaccharidesynthesisviatranscriptomeanalysis |