Optimization of submerged steady-state fermentation process for glucose oxidase production by Aspergillus niger isolated from local environment
Glucose oxidase (GOX) is an enzyme with large scale applications in various industries as a biosensor for the detection of the glucose level of body fluids. The present study aims to optimize the cost-effective steady-state fermentation process for the maximum produ...
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doaj-70b97bc3d49c4d509e1062e0d20515eb2020-11-25T02:58:11ZengPlovdiv University Press Journal of BioScience and Biotechnology1314-62381314-62462020-07-01912732Optimization of submerged steady-state fermentation process for glucose oxidase production by Aspergillus niger isolated from local environment Md. EmamHossain0Md. Firoz Alam1Mazedul Anwar Razib2Mohammad Taufiq Alam3Md. Shameem Ahsan4Department of Applied Chemistry and Chemical Engineering, Faculty of Engineering, University of Rajshahi, Rajshahi-6205, Bangladesh.Department of Biotechnology and Genetic Engineering, Faculty of Applied Science and Technology, Islamic University, Kushtia-7003, Bangladesh.Department of Biotechnology and Genetic Engineering, Faculty of Applied Science and Technology, Islamic University, Kushtia-7003, Bangladesh.Department of Applied Chemistry and Chemical Engineering, Faculty of Engineering, University of Rajshahi, Rajshahi-6205, Bangladesh.Department of Applied Chemistry and Chemical Engineering, Faculty of Engineering, University of Rajshahi, Rajshahi-6205, Bangladesh.Glucose oxidase (GOX) is an enzyme with large scale applications in various industries as a biosensor for the detection of the glucose level of body fluids. The present study aims to optimize the cost-effective steady-state fermentation process for the maximum production of glucose oxidase by Aspergillus niger isolated from a locally contaminated onion. For low-cost enzyme production, the possibility of a submerged steady-state fermentation process was evaluated. The enzyme production was assessed by using local low-cost saccharose (C12H22O11) as carbon source and sodium nitrate (NaNO3) as the nitrogen source. Effect of peptone and urea on GOX production by A. nigerwere also examined. The initial pH for the optimal production of GOX was found 5.5. The addition of K+in fermentation medium increases enzyme activity while Mg2+was found to inhibit glucose oxidase production by A. niger. Although Ferric ion (Fe3+) showed the highest GOX productivity,it forms reddish-brown colour which hinder colour measurement in GOX activity. Incubation time and culture morphology were also examined to increase glucose oxidase production.https://editorial.uni-plovdiv.bg/index.php/JBB/article/view/290/245glucose oxidaseaspergillus nigersteady-state fermentationczapek dox medium. |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Md. EmamHossain Md. Firoz Alam Mazedul Anwar Razib Mohammad Taufiq Alam Md. Shameem Ahsan |
spellingShingle |
Md. EmamHossain Md. Firoz Alam Mazedul Anwar Razib Mohammad Taufiq Alam Md. Shameem Ahsan Optimization of submerged steady-state fermentation process for glucose oxidase production by Aspergillus niger isolated from local environment Journal of BioScience and Biotechnology glucose oxidase aspergillus niger steady-state fermentation czapek dox medium. |
author_facet |
Md. EmamHossain Md. Firoz Alam Mazedul Anwar Razib Mohammad Taufiq Alam Md. Shameem Ahsan |
author_sort |
Md. EmamHossain |
title |
Optimization of submerged steady-state fermentation process for glucose oxidase production by Aspergillus niger isolated from local environment |
title_short |
Optimization of submerged steady-state fermentation process for glucose oxidase production by Aspergillus niger isolated from local environment |
title_full |
Optimization of submerged steady-state fermentation process for glucose oxidase production by Aspergillus niger isolated from local environment |
title_fullStr |
Optimization of submerged steady-state fermentation process for glucose oxidase production by Aspergillus niger isolated from local environment |
title_full_unstemmed |
Optimization of submerged steady-state fermentation process for glucose oxidase production by Aspergillus niger isolated from local environment |
title_sort |
optimization of submerged steady-state fermentation process for glucose oxidase production by aspergillus niger isolated from local environment |
publisher |
Plovdiv University Press |
series |
Journal of BioScience and Biotechnology |
issn |
1314-6238 1314-6246 |
publishDate |
2020-07-01 |
description |
Glucose oxidase (GOX) is an enzyme with large scale applications in various industries as a biosensor for the detection of the glucose level of body fluids. The present study aims to optimize the cost-effective steady-state fermentation process for the maximum production of glucose oxidase by Aspergillus niger isolated from a locally contaminated onion. For low-cost enzyme production, the possibility of a submerged steady-state fermentation process was evaluated. The enzyme production was assessed by using local low-cost saccharose (C12H22O11) as carbon source and sodium nitrate (NaNO3) as the nitrogen source. Effect of peptone and urea on GOX production by A. nigerwere also examined. The initial pH for the optimal production of GOX was found 5.5. The addition of K+in fermentation medium increases enzyme activity while Mg2+was found to inhibit glucose oxidase production by A. niger. Although Ferric ion (Fe3+) showed the highest GOX productivity,it forms reddish-brown colour which hinder colour measurement in GOX activity. Incubation time and culture morphology were also examined to increase glucose oxidase production. |
topic |
glucose oxidase aspergillus niger steady-state fermentation czapek dox medium. |
url |
https://editorial.uni-plovdiv.bg/index.php/JBB/article/view/290/245 |
work_keys_str_mv |
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