Molecular Identification of Thermophilic Bacteria Producing Lipase from Two Hot Springs in Perak, Malaysia

Microbial lipase has been identified as a key biocatalyst in industrial biotechnological applications. Microbial thermostable lipases are excellent candidates because of their capability to survive in high temperatures reaction in industries. The aims of this study were to screen lipolytic activity...

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Published in:INTERNATIONAL JOURNAL OF INTEGRATED ENGINEERING
Main Authors: Suraya, S. Noor; Rasol, R.; Razarinah, W. A. R. Wan; Norashirene, M. J.
Format: Article
Language:English
Published: UNIV TUN HUSSEIN ONN MALAYSIA 2024
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-recordWOS:001364045900008
author Suraya
S. Noor; Rasol
R.; Razarinah
W. A. R. Wan; Norashirene, M. J.
spellingShingle Suraya
S. Noor; Rasol
R.; Razarinah
W. A. R. Wan; Norashirene, M. J.
Molecular Identification of Thermophilic Bacteria Producing Lipase from Two Hot Springs in Perak, Malaysia
Engineering
author_facet Suraya
S. Noor; Rasol
R.; Razarinah
W. A. R. Wan; Norashirene, M. J.
author_sort Suraya
spelling Suraya, S. Noor; Rasol, R.; Razarinah, W. A. R. Wan; Norashirene, M. J.
Molecular Identification of Thermophilic Bacteria Producing Lipase from Two Hot Springs in Perak, Malaysia
INTERNATIONAL JOURNAL OF INTEGRATED ENGINEERING
English
Article
Microbial lipase has been identified as a key biocatalyst in industrial biotechnological applications. Microbial thermostable lipases are excellent candidates because of their capability to survive in high temperatures reaction in industries. The aims of this study were to screen lipolytic activity on Rhodamine B agar; to measure the amount of lipolytic activity through UV-VIS spectrophotometer and to identify the species which have the highest production of lipase enzymes using molecular identification. Two Gram-positive and rod-shaped thermophilic isolates from Ulu Slim (US) and Ara Panjang (AP) were selected. Based on the spectrophotometric assay, isolate AP was a good lipase producer as it produced a higher value of 444.43 U/mL as compared to commercialized lipase. Further molecular identification revealed both isolates as Bacillus sp. Isolate AP was considered as a potential candidate for further studies as the lipase production exceed commercialized lipase production.
UNIV TUN HUSSEIN ONN MALAYSIA
2229-838X

2024
16
8
10.30880/ijie.2024.16.08.008
Engineering

WOS:001364045900008
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-recordWOS:001364045900008
title Molecular Identification of Thermophilic Bacteria Producing Lipase from Two Hot Springs in Perak, Malaysia
title_short Molecular Identification of Thermophilic Bacteria Producing Lipase from Two Hot Springs in Perak, Malaysia
title_full Molecular Identification of Thermophilic Bacteria Producing Lipase from Two Hot Springs in Perak, Malaysia
title_fullStr Molecular Identification of Thermophilic Bacteria Producing Lipase from Two Hot Springs in Perak, Malaysia
title_full_unstemmed Molecular Identification of Thermophilic Bacteria Producing Lipase from Two Hot Springs in Perak, Malaysia
title_sort Molecular Identification of Thermophilic Bacteria Producing Lipase from Two Hot Springs in Perak, Malaysia
container_title INTERNATIONAL JOURNAL OF INTEGRATED ENGINEERING
language English
format Article
description Microbial lipase has been identified as a key biocatalyst in industrial biotechnological applications. Microbial thermostable lipases are excellent candidates because of their capability to survive in high temperatures reaction in industries. The aims of this study were to screen lipolytic activity on Rhodamine B agar; to measure the amount of lipolytic activity through UV-VIS spectrophotometer and to identify the species which have the highest production of lipase enzymes using molecular identification. Two Gram-positive and rod-shaped thermophilic isolates from Ulu Slim (US) and Ara Panjang (AP) were selected. Based on the spectrophotometric assay, isolate AP was a good lipase producer as it produced a higher value of 444.43 U/mL as compared to commercialized lipase. Further molecular identification revealed both isolates as Bacillus sp. Isolate AP was considered as a potential candidate for further studies as the lipase production exceed commercialized lipase production.
publisher UNIV TUN HUSSEIN ONN MALAYSIA
issn 2229-838X

publishDate 2024
container_volume 16
container_issue 8
doi_str_mv 10.30880/ijie.2024.16.08.008
topic Engineering
topic_facet Engineering
accesstype
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url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-recordWOS:001364045900008
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