Molecular identification and amylolytic potential of a thermophilic bacteria species from refuse dump in Ile-Ife

International Journal of Biological Research, Vol. 2 No. 2, p.134-139

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Հիմնական հեղինակներ: Omoboye, Olumide, Kolawole, Bakare Mufutau, Olusanjo, Adewale Isaac, Oyedeji, Olaoluwa
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Լեզու:անգլերեն
Հրապարակվել է: International Journal of Biological Research 2023
Խորագրեր:
Առցանց հասանելիություն:https://ir.oauife.edu.ng/123456789/5504
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author Omoboye, Olumide
Kolawole, Bakare Mufutau
Olusanjo, Adewale Isaac
Oyedeji, Olaoluwa
author_facet Omoboye, Olumide
Kolawole, Bakare Mufutau
Olusanjo, Adewale Isaac
Oyedeji, Olaoluwa
author_sort Omoboye, Olumide
collection DSpace
description International Journal of Biological Research, Vol. 2 No. 2, p.134-139
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id oai:ir.oauife.edu.ng:123456789-5504
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publisher International Journal of Biological Research
record_format dspace
spelling oai:ir.oauife.edu.ng:123456789-55042023-05-13T17:50:47Z Molecular identification and amylolytic potential of a thermophilic bacteria species from refuse dump in Ile-Ife Omoboye, Olumide Kolawole, Bakare Mufutau Olusanjo, Adewale Isaac Oyedeji, Olaoluwa Optimum Thermophilic Bacillus Species Alpha Amylase Soluble Starch International Journal of Biological Research, Vol. 2 No. 2, p.134-139 Molecular identification and amylolytic potential of a thermophilic bacterium species isolated from refuse dump was investigated. Bacte-rial isolates were identified by morphological and biochemical characterization while amylolytic bacterium of interest was identified by molecular analysis using 16S rRNA gene sequencing. The bacterium with the highest α-amylase activity was selected for enzyme pro-duction. The optimal conditions for α-amylase secretion were determined by varying the pH, temperature, percentage soluble starch, nitrogen sources and carbon sources. The isolated and identified bacteria were Bacillus alvei (40%) Bacillus licheniformis (40%) and Bacillus brevis (20%) while Bacillus licheniformis RD24 was identified by 16S rRNA gene sequencing. The peak of amylase production was at 20 h of incubation (925 µg/ml/min). The optimum pH and temperature for the enzyme production were 7 and 45oC respectively. Enzyme production medium with 1% starch gave highest enzyme activity of 102 ± 5.3 µg/ml/min. Peptone gave an enzyme activity of 165 ± 8.97 µg/ml/min and yeast extract gave 52.26 ± 2.86 µg/ml/min. Of the raw starches, cassava flour gave the highest specific activity of 72 ± 0.07 Units/mg proteins, while sorghum starch gave the lowest specific activity of 5 ± 1.52 Units/mg proteins. The study conclud-ed that starch-rich household waste can be employed for amylase production using Bacillus licheniformis RD24. 2023-05-13T17:50:47Z 2023-05-13T17:50:47Z 2014-10 Journal DOI: 10.14419/ijbr.v2i2.2537 https://ir.oauife.edu.ng/123456789/5504 en text/plain text/plain text/plain International Journal of Biological Research
spellingShingle Optimum
Thermophilic
Bacillus Species
Alpha Amylase
Soluble Starch
Omoboye, Olumide
Kolawole, Bakare Mufutau
Olusanjo, Adewale Isaac
Oyedeji, Olaoluwa
Molecular identification and amylolytic potential of a thermophilic bacteria species from refuse dump in Ile-Ife
title Molecular identification and amylolytic potential of a thermophilic bacteria species from refuse dump in Ile-Ife
title_full Molecular identification and amylolytic potential of a thermophilic bacteria species from refuse dump in Ile-Ife
title_fullStr Molecular identification and amylolytic potential of a thermophilic bacteria species from refuse dump in Ile-Ife
title_full_unstemmed Molecular identification and amylolytic potential of a thermophilic bacteria species from refuse dump in Ile-Ife
title_short Molecular identification and amylolytic potential of a thermophilic bacteria species from refuse dump in Ile-Ife
title_sort molecular identification and amylolytic potential of a thermophilic bacteria species from refuse dump in ile ife
topic Optimum
Thermophilic
Bacillus Species
Alpha Amylase
Soluble Starch
url https://ir.oauife.edu.ng/123456789/5504
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AT olusanjoadewaleisaac molecularidentificationandamylolyticpotentialofathermophilicbacteriaspeciesfromrefusedumpinileife
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