Kinetic Study of Cell Growth and Production of Amylase, Cellulase and Xylanase by Bacillus subtilis Using Barley Husk as the Prime Carbon Source
Journal of Advances in Biology & Biotechnology · pp. 1–18 · Published 27 Jul 2017
10.9734/JABB/2017/33698Abstract
Kinetic Study of Cell Growth and Production of Amylase, Cellulase and Xylanase by Bacillus subtilis Using Barley Husk as the Prime Carbon Source Bacillus spp have been widely adopted as one of the vital producers of the industrial enzymes including amylase, cellulase and xylanase. In fact, submerged fermentation (SmF) with the presence of excess water is the best suited technique for the culture of bacteria especially Bacillus that required high moisture content to grow. Pure carbon sources besides being expensive, are not economically viable for the production of enzymes. Therefore, inexpensive yet effective agricultural residues such as barley husk was used in this study. Aims: The primary aim of this study was to investigate the kinetic of cell growth and enzymes production of amylase, cellulase and xylanase by Bacillus subtilis ATCC 6633 using barley husk as the main carbon source under SmF. Methodology: In the present study, the standard inoculum size of 1 × 108 cells of B. subtilis was inoculated into culture flask containing barley husk for the production of enzymes in SmF. Samples were collected every 12 h for analysis. Results: In this study, B. subtilis possessed the maximum specific growth rate (µmax) of 0.55 h-1 at 48 h with the maximum cell productivity of 1.98 × 1010 cells/L/h was attained during the exponential growth phase. On the other hand, the highest enzyme activity by B. subtilis obtained in this study was identified to be amylase with its activity of 1.991 U/mL, followed by xylanase activity of 1.492 U/mL and lastly cellulase with the lowest activity of 0.304 U/mL. In addition, the specific enzymes activity and productivity were also elucidated to describe the kinetic study of enzymes production. The maximum specific xylanase activity of 6.81 U/mg, followed by specific amylase activity of 6.68 U/mg and the least specific cellulase activity of 0.73 U/mg were attained from B. subtilis. In fact, cellulase productivity of 18.23 U/mL/h was found to be relatively low compared to amylase with 119.48 U/mL/h and xylanase with 89.52 U/mL/h. Cellulase production was determined as growth associated process where its maximum production was attained at the end of the exponential growth phase. On the contrary, the production of amylase and xylanase were partially growth associated due to their maximal production observed after the exponential phase of cell growth. Conclusion: In a nutshell, B. subtilis is anticipated to be potential bacteria for the optimisation of enzymes production for amylase, cellulase and xylanase using barley husk as the sole carbon source in SmF.
Cited by 4
Junaid Ahmad Raza, Aqsa Aslam, Sibtain Ahmed · International Biodeterioration & Biodegradation · 2026
N. Akhtar, Hugh Y. Cai, Elijah G. Kiarie · Journal of Applied Microbiology · 2021
S. N. Rosli, R. Man, N. Masngut · Indonesian Journal of Chemistry · 2019
N. Razdan, G. Kocher · International Journal of Current Microbiology and Applied Sciences · 2018
Related research
- Amylolytic Potential of Lactic Acid Bacteria Isolated from Wet Milled Cereals, Cassava Flour and Fruits — shares topic coverage
- Strain Development of Aspergillus brasiliensis Using Physical and Chemicals Mutagenesis for Possible Overproduction of Xylanase, Amylase, Protease and Cellulase under Submerged Fermentation (SmF) — shares topic coverage
- Isolation, Identification and Optimization of Culture Conditions of Bacillus sp. Strain PM1 for Alkalo-thermostable Amylase Production — shares topic coverage
- Isolation, Biochemical Characterization and Production of Immobilised β-Amylase Chitosan Beads Using Bacteria from Waste Water Effluents for its Industrial Production Aspect — shares topic coverage
- Extract Development of sorghum Grains during Malting and Utilization of Bitter Leaf Extract for Beer Production Using Saccharomyces cerevisiae — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
4
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.