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Production Optimization and Biochemical Characterization of Cellulase from Geobacillus sp. KP43 Isolated from Hot Spring Water of Nepal.

Authors :
Khadka S
Khadka D
Poudel RC
Bhandari M
Baidya P
Sijapati J
Maharjan J
Source :
BioMed research international [Biomed Res Int] 2022 May 12; Vol. 2022, pp. 6840409. Date of Electronic Publication: 2022 May 12 (Print Publication: 2022).
Publication Year :
2022

Abstract

This study is aimed at isolating and identifying a thermophilic cellulolytic bacterium from hot spring water and characterizing thermostable cellulase produced by the isolate. Enrichment and culture of water sample was used for isolation of bacterial strains and an isolate with highest cellulase activity was chosen for the production, partial purification, and biochemical characterization of the enzyme. Different staining techniques, enzymatic tests, and 16s ribosomal DNA (16s rDNA) gene sequencing were used for the identification of the isolate. The cellulase producing isolate was Gram positive, motile, and sporulated rod-shaped bacterium growing optimally between 55°C and 65°C. Based on partial 16s rDNA sequence analysis, the isolate was identified as Geobacillus sp. and was designated as Geobacillus sp. KP43. The cellulase enzyme production condition was optimized, and the product was partially purified and biochemically characterized. Optimum cellulase production was observed in 1% carboxymethyl cellulose (CMC) at 55°C. The molecular weight of the enzyme was found to be approximately 66 kDa on 12% SDS-PAGE analysis. Biochemical characterization of partially purified enzyme revealed the temperature optimum of 70°C and activity over a wide pH range. Further, cellulase activity was markedly stimulated by metal ion Fe <superscript>2+.</superscript> Apart from cellulases, the isolate also depicted good xylanase, cellobiase, and amylase activities. Thermophilic growth with a variety of extracellular enzyme activities at elevated temperature as well as in a wide pH range showed that the isolated bacteria, Geobacillus sp. KP43, can withstand the harsh environmental condition, which makes this organism suitable for enzyme production for various biotechnological and industrial applications.<br />Competing Interests: The authors declare no conflicts of interest.<br /> (Copyright © 2022 Subash Khadka et al.)

Details

Language :
English
ISSN :
2314-6141
Volume :
2022
Database :
MEDLINE
Journal :
BioMed research international
Publication Type :
Academic Journal
Accession number :
35601142
Full Text :
https://doi.org/10.1155/2022/6840409