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Enhancement of Thermostable Lipase Production by a Genotypically Identified Extremophilic Bacillus subtilis NS 8 in a Continuous Bioreactor

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논문

Enhancement of Thermostable Lipase Production by a Genotypically Identified Extremophilic Bacillus subtilis NS 8 in a Continuous Bioreactor

학술지

Journal of molecular microbiology and biotechnology

저자명

Olusesan, Akanbi Taiwo; Azura, L. Kamaruzaman; Abubakar, Fatimah; Mohamed, Abdul Karim Sabo; Radu, Son; Manap, Mohd Yazid Abdul; Saari, Nazamid

초록

<P><I>Bacillus</I> strain NS 8, a lipase-producing bacterium isolated from a Malaysian hot spring, is able to tolerate a broad range of temperature and pH, which makes it beneficial for this study. It generated PCR products with molecular weight of 1,532 bp, and the 16S rRNA sequence analysis identified it as <I>Bacillus subtilis </I>with accession number AB110598. It showed a 71&percnt; similarity index with <I>B. subtilis </I>using Biolog Microstation System. Its lipase production was optimized using a shake flask system by changing the physical (agitation speed, pH and temperature) and nutritional (nitrogen, carbon and minerals) factors. The most suitable combination of the basal medium for lipase production was 2.5&percnt; olive oil (carbon), 1.5&percnt; peptone (nitrogen), 0.1&percnt; MgSO<SUB>4</SUB> (mineral) at an optimum temperature of 50&deg;C, pH 7.5 and 150 rpm agitation, giving an enzyme yield of 4.23 U/ml. Statistical optimization using response surface methodology was carried out. An optimum lipase production of 5.67 U/ml was achieved when olive oil concentration of 3&percnt;, peptone 2&percnt;, MgSO<SUB>4</SUB>&middot;7H<SUB>2</SUB>O 0.2&percnt; and an agitation rate of 200 rpm were combined. Lipase production was further carried out inside a 2-liter bioreactor, which yielded an enzyme activity of 14.5 U/ml after 15 h of incubation.</P><P>Copyright &copy; 2011 S. Karger AG, Basel</P>

발행연도

2011

발행기관

S. Karger AG

ISSN

1464-1801

ISSN

1660-2412

20

2

페이지

pp.105-115

주제어

16S rRNA; Lipase activity; Response surface methodology; Enzyme yield

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1 2023-12-11

논문; 2011-12-31

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