Medium optimization for exopolysaccharides production by Bacillus Zhangzhouensis BZ 16 strain isolated from Khnifiss Lagoon
The increased demand for natural polymers for diverse industrial applications in last years has led to a renovated interest in exopolysaccharides (EPS) production by microorganisms. Ecological roles of EPS especially for those isolated from extreme habitats such as hypersaline ponds have been report...
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doaj-ad906201a27a4070a4076ae38d105d5f2021-02-18T10:35:51ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012340009910.1051/e3sconf/202123400099e3sconf_icies2020_00099Medium optimization for exopolysaccharides production by Bacillus Zhangzhouensis BZ 16 strain isolated from Khnifiss LagoonMiri Mouna0Bergayou Hafida1Belmouden Ahmed2Moukrim Abdellatif3Baazizi Hakim4Boum’handi Naima5University Ibn Zohr, Faculty of sciences, Department of Biology, Laboratory of AQUAMARUniversity Ibn Zohr, Faculty of sciences, Department of Biology, Laboratory of AQUAMARUniversity Ibn Zohr, Faculty of sciences, Department of Biology, Laboratory of AQUAMARUniversity Abdelamalek Essadi, Faculty of SciencesThe Specialized Center of Valorization and Technology of Marine Products (CSVTPM), National Marine Research Institute (INRH), Laboratory quality controlThe Specialized Center of Valorization and Technology of Marine Products (CSVTPM), National Marine Research Institute (INRH), Laboratory quality controlThe increased demand for natural polymers for diverse industrial applications in last years has led to a renovated interest in exopolysaccharides (EPS) production by microorganisms. Ecological roles of EPS especially for those isolated from extreme habitats such as hypersaline ponds have been reported in several studies. A moderate halophilic strain producing exopolysaccharide (EPS) has been isolated earlier. However, the EPS production of the strain (2 g/L) was relatively low to exploit it at the industrial level. In the present work, the strain was identified as Bacillus zhangzhouensis and named as BZ 16 and the optimal medium was studied to boost the EPS production. Maximum EPS production was obtained in medium with 125 g/L sucrose, 30 g/L yeast extract. Phosphate source inhibited EPS production even if it increased the growth. Under optimal medium composition, EPS was produced at 12.37 g/L, which was 6 times greater than the production yield achievable without optimizing conditions.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/10/e3sconf_icies2020_00099.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Miri Mouna Bergayou Hafida Belmouden Ahmed Moukrim Abdellatif Baazizi Hakim Boum’handi Naima |
spellingShingle |
Miri Mouna Bergayou Hafida Belmouden Ahmed Moukrim Abdellatif Baazizi Hakim Boum’handi Naima Medium optimization for exopolysaccharides production by Bacillus Zhangzhouensis BZ 16 strain isolated from Khnifiss Lagoon E3S Web of Conferences |
author_facet |
Miri Mouna Bergayou Hafida Belmouden Ahmed Moukrim Abdellatif Baazizi Hakim Boum’handi Naima |
author_sort |
Miri Mouna |
title |
Medium optimization for exopolysaccharides production by Bacillus Zhangzhouensis BZ 16 strain isolated from Khnifiss Lagoon |
title_short |
Medium optimization for exopolysaccharides production by Bacillus Zhangzhouensis BZ 16 strain isolated from Khnifiss Lagoon |
title_full |
Medium optimization for exopolysaccharides production by Bacillus Zhangzhouensis BZ 16 strain isolated from Khnifiss Lagoon |
title_fullStr |
Medium optimization for exopolysaccharides production by Bacillus Zhangzhouensis BZ 16 strain isolated from Khnifiss Lagoon |
title_full_unstemmed |
Medium optimization for exopolysaccharides production by Bacillus Zhangzhouensis BZ 16 strain isolated from Khnifiss Lagoon |
title_sort |
medium optimization for exopolysaccharides production by bacillus zhangzhouensis bz 16 strain isolated from khnifiss lagoon |
publisher |
EDP Sciences |
series |
E3S Web of Conferences |
issn |
2267-1242 |
publishDate |
2021-01-01 |
description |
The increased demand for natural polymers for diverse industrial applications in last years has led to a renovated interest in exopolysaccharides (EPS) production by microorganisms. Ecological roles of EPS especially for those isolated from extreme habitats such as hypersaline ponds have been reported in several studies. A moderate halophilic strain producing exopolysaccharide (EPS) has been isolated earlier. However, the EPS production of the strain (2 g/L) was relatively low to exploit it at the industrial level. In the present work, the strain was identified as Bacillus zhangzhouensis and named as BZ 16 and the optimal medium was studied to boost the EPS production. Maximum EPS production was obtained in medium with 125 g/L sucrose, 30 g/L yeast extract. Phosphate source inhibited EPS production even if it increased the growth. Under optimal medium composition, EPS was produced at 12.37 g/L, which was 6 times greater than the production yield achievable without optimizing conditions. |
url |
https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/10/e3sconf_icies2020_00099.pdf |
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