Isolation and identification of bacteria-producing cellulose from tropical fruit for Halal capsule application

Bacterial cellulose (BC) is pure cellulose synthesized by various species of bacteria. Raising demands on bacterial cellulose is due to its pure and simpler structure. It has plenty of applications in various industries such as food, medical and cosmetics, rendering it a choice in halal industry app...

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Main Authors: Awang, Nursyahidatul Azwa, Amid, Azura, Mahamad Maifiah, Mohd Hafidz, Jimat, Dzun Noraini
Format: Article
Language:English
English
Published: Indonesian Society for Knowledge and Human Development (INSIGHT) 2018
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Online Access:http://irep.iium.edu.my/67180/1/67180_Isolation%20and%20Identification%20of%20Bacteria-producing.pdf
http://irep.iium.edu.my/67180/7/67180_Isolation%20and%20identification%20of%20bacteria-producing_SCOPUS.pdf
http://irep.iium.edu.my/67180/
http://insightsociety.org/ojaseit/index.php/ijaseit/article/view/7033/pdf_836
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Institution: Universiti Islam Antarabangsa Malaysia
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spelling my.iium.irep.671802018-12-06T03:05:42Z http://irep.iium.edu.my/67180/ Isolation and identification of bacteria-producing cellulose from tropical fruit for Halal capsule application Awang, Nursyahidatul Azwa Amid, Azura Mahamad Maifiah, Mohd Hafidz Jimat, Dzun Noraini TP248.13 Biotechnology Bacterial cellulose (BC) is pure cellulose synthesized by various species of bacteria. Raising demands on bacterial cellulose is due to its pure and simpler structure. It has plenty of applications in various industries such as food, medical and cosmetics, rendering it a choice in halal industry application as a substitute for non-halal gelatine. However, challenges arise during the BC production such as high production cost and low volumetric yield. In this study, BC is studied to overcome the barriers to BC production. Isolation and identification of cellulose producing bacteria were carried out on eight different tropical fruit sources using Hestrin-Schramm media in static culture condition. Morphological and molecular identification by microscopic observation, gram staining, and 16S rRNA analysis were conducted to identify the characteristics and strain of the new isolates. Next, the selected colonies were challenged to grow in agitating condition using modified HS media. The effects of carbon concentration and agitation speed on the production of cellulose were investigated using on central composite design (CCD). Three new cellulose producing bacteria were successfully isolated and identified to be similar to Enterobacter sp. SJZ-5, Bacterium sp NLAE-zl-H356, and Bulkhoderia sp. RD_DACAR_02 through morphological and molecular analysis. The most potent strain which is similar to Enterobacter sp. SJZ-5 (named as Enterobacter sp.M003) has been chosen for BC optimization study for high BC production using modified HS media. Optimization of bacterial cellulose production using response surface methodology (RSM) with 13 runs indicated that the optimal production parameters were 17.5 g/L for carbon concentration at 277 rpm for agitation speed gave 1.7g/L cellulose. It is expected that the newly isolated bacteria will be able to provide an alternative to gelatine for halal capsule production, thus minimizing and replacing non-halal gelatine usage. Indonesian Society for Knowledge and Human Development (INSIGHT) 2018 Article PeerReviewed application/pdf en http://irep.iium.edu.my/67180/1/67180_Isolation%20and%20Identification%20of%20Bacteria-producing.pdf application/pdf en http://irep.iium.edu.my/67180/7/67180_Isolation%20and%20identification%20of%20bacteria-producing_SCOPUS.pdf Awang, Nursyahidatul Azwa and Amid, Azura and Mahamad Maifiah, Mohd Hafidz and Jimat, Dzun Noraini (2018) Isolation and identification of bacteria-producing cellulose from tropical fruit for Halal capsule application. International Journal on Advanced Science, Engineering and Information Technology, 8 (4-2). pp. 1591-1596. http://insightsociety.org/ojaseit/index.php/ijaseit/article/view/7033/pdf_836 10.18517/ijaseit.8.4-2.7033
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
English
topic TP248.13 Biotechnology
spellingShingle TP248.13 Biotechnology
Awang, Nursyahidatul Azwa
Amid, Azura
Mahamad Maifiah, Mohd Hafidz
Jimat, Dzun Noraini
Isolation and identification of bacteria-producing cellulose from tropical fruit for Halal capsule application
description Bacterial cellulose (BC) is pure cellulose synthesized by various species of bacteria. Raising demands on bacterial cellulose is due to its pure and simpler structure. It has plenty of applications in various industries such as food, medical and cosmetics, rendering it a choice in halal industry application as a substitute for non-halal gelatine. However, challenges arise during the BC production such as high production cost and low volumetric yield. In this study, BC is studied to overcome the barriers to BC production. Isolation and identification of cellulose producing bacteria were carried out on eight different tropical fruit sources using Hestrin-Schramm media in static culture condition. Morphological and molecular identification by microscopic observation, gram staining, and 16S rRNA analysis were conducted to identify the characteristics and strain of the new isolates. Next, the selected colonies were challenged to grow in agitating condition using modified HS media. The effects of carbon concentration and agitation speed on the production of cellulose were investigated using on central composite design (CCD). Three new cellulose producing bacteria were successfully isolated and identified to be similar to Enterobacter sp. SJZ-5, Bacterium sp NLAE-zl-H356, and Bulkhoderia sp. RD_DACAR_02 through morphological and molecular analysis. The most potent strain which is similar to Enterobacter sp. SJZ-5 (named as Enterobacter sp.M003) has been chosen for BC optimization study for high BC production using modified HS media. Optimization of bacterial cellulose production using response surface methodology (RSM) with 13 runs indicated that the optimal production parameters were 17.5 g/L for carbon concentration at 277 rpm for agitation speed gave 1.7g/L cellulose. It is expected that the newly isolated bacteria will be able to provide an alternative to gelatine for halal capsule production, thus minimizing and replacing non-halal gelatine usage.
format Article
author Awang, Nursyahidatul Azwa
Amid, Azura
Mahamad Maifiah, Mohd Hafidz
Jimat, Dzun Noraini
author_facet Awang, Nursyahidatul Azwa
Amid, Azura
Mahamad Maifiah, Mohd Hafidz
Jimat, Dzun Noraini
author_sort Awang, Nursyahidatul Azwa
title Isolation and identification of bacteria-producing cellulose from tropical fruit for Halal capsule application
title_short Isolation and identification of bacteria-producing cellulose from tropical fruit for Halal capsule application
title_full Isolation and identification of bacteria-producing cellulose from tropical fruit for Halal capsule application
title_fullStr Isolation and identification of bacteria-producing cellulose from tropical fruit for Halal capsule application
title_full_unstemmed Isolation and identification of bacteria-producing cellulose from tropical fruit for Halal capsule application
title_sort isolation and identification of bacteria-producing cellulose from tropical fruit for halal capsule application
publisher Indonesian Society for Knowledge and Human Development (INSIGHT)
publishDate 2018
url http://irep.iium.edu.my/67180/1/67180_Isolation%20and%20Identification%20of%20Bacteria-producing.pdf
http://irep.iium.edu.my/67180/7/67180_Isolation%20and%20identification%20of%20bacteria-producing_SCOPUS.pdf
http://irep.iium.edu.my/67180/
http://insightsociety.org/ojaseit/index.php/ijaseit/article/view/7033/pdf_836
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