Production of high cell mass of bacillus firmus using statistical medium optimization

Growing concern over agricultural losses due to nematodes infection had drawn huge interest in using biological control of Bacillus firmus as an agent to reduce the damages and increase crop yield. Bacillus firmus strains are well known for their ability to terminate nematode Meloidogyne incognita a...

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Main Authors: Sukumaran, S., Dailin, D. J., Malek, R. A., Peng, T., Hanapi, S. Z., El-Enshasy, H.
Format: Article
Published: National Institute of Science Communication and Information Resources 2019
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Online Access:http://eprints.utm.my/id/eprint/96939/
http://nopr.niscair.res.in/handle/123456789/47559
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spelling my.utm.969392022-09-04T07:18:32Z http://eprints.utm.my/id/eprint/96939/ Production of high cell mass of bacillus firmus using statistical medium optimization Sukumaran, S. Dailin, D. J. Malek, R. A. Peng, T. Hanapi, S. Z. El-Enshasy, H. TP Chemical technology Growing concern over agricultural losses due to nematodes infection had drawn huge interest in using biological control of Bacillus firmus as an agent to reduce the damages and increase crop yield. Bacillus firmus strains are well known for their ability to terminate nematode Meloidogyne incognita activity. They are also able to secrete beneficial enzyme for use in food, animal feed and industrial sector. Therefore, production of high cell mass for this microbeis required. Extensive study for the development of a suitable medium composition and cultivation strategy is needed. The aim of this study is to increase the biomass production of Bacillus firmus through optimization of medium composition using statistical approach. Different production media from previous literatures were screened to supports high cells growth. The best medium was found to yield the highest cell mass of about 6.27 g L-1. The composition of the medium was screened for significant factors and further being optimized using statistical method which employed Box Behnken design. The optimized mediumwas found to efficiently increased the cell mass of about 10.22 g L-1. This value is 49.85% higher compared to the unoptimized medium. National Institute of Science Communication and Information Resources 2019 Article PeerReviewed Sukumaran, S. and Dailin, D. J. and Malek, R. A. and Peng, T. and Hanapi, S. Z. and El-Enshasy, H. (2019) Production of high cell mass of bacillus firmus using statistical medium optimization. Journal of Scientific and Industrial Research, 78 (6). pp. 358-363. ISSN 0022-4456 http://nopr.niscair.res.in/handle/123456789/47559 NA
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TP Chemical technology
spellingShingle TP Chemical technology
Sukumaran, S.
Dailin, D. J.
Malek, R. A.
Peng, T.
Hanapi, S. Z.
El-Enshasy, H.
Production of high cell mass of bacillus firmus using statistical medium optimization
description Growing concern over agricultural losses due to nematodes infection had drawn huge interest in using biological control of Bacillus firmus as an agent to reduce the damages and increase crop yield. Bacillus firmus strains are well known for their ability to terminate nematode Meloidogyne incognita activity. They are also able to secrete beneficial enzyme for use in food, animal feed and industrial sector. Therefore, production of high cell mass for this microbeis required. Extensive study for the development of a suitable medium composition and cultivation strategy is needed. The aim of this study is to increase the biomass production of Bacillus firmus through optimization of medium composition using statistical approach. Different production media from previous literatures were screened to supports high cells growth. The best medium was found to yield the highest cell mass of about 6.27 g L-1. The composition of the medium was screened for significant factors and further being optimized using statistical method which employed Box Behnken design. The optimized mediumwas found to efficiently increased the cell mass of about 10.22 g L-1. This value is 49.85% higher compared to the unoptimized medium.
format Article
author Sukumaran, S.
Dailin, D. J.
Malek, R. A.
Peng, T.
Hanapi, S. Z.
El-Enshasy, H.
author_facet Sukumaran, S.
Dailin, D. J.
Malek, R. A.
Peng, T.
Hanapi, S. Z.
El-Enshasy, H.
author_sort Sukumaran, S.
title Production of high cell mass of bacillus firmus using statistical medium optimization
title_short Production of high cell mass of bacillus firmus using statistical medium optimization
title_full Production of high cell mass of bacillus firmus using statistical medium optimization
title_fullStr Production of high cell mass of bacillus firmus using statistical medium optimization
title_full_unstemmed Production of high cell mass of bacillus firmus using statistical medium optimization
title_sort production of high cell mass of bacillus firmus using statistical medium optimization
publisher National Institute of Science Communication and Information Resources
publishDate 2019
url http://eprints.utm.my/id/eprint/96939/
http://nopr.niscair.res.in/handle/123456789/47559
_version_ 1743107048845869056
score 13.209306