ISSN: 2155-6199

Journal of Bioremediation & Biodegradation

Accès libre

Notre groupe organise plus de 3 000 séries de conférences Événements chaque année aux États-Unis, en Europe et en Europe. Asie avec le soutien de 1 000 autres Sociétés scientifiques et publie plus de 700 Open Access Revues qui contiennent plus de 50 000 personnalités éminentes, des scientifiques réputés en tant que membres du comité de rédaction.

Les revues en libre accès gagnent plus de lecteurs et de citations
700 revues et 15 000 000 de lecteurs Chaque revue attire plus de 25 000 lecteurs

Indexé dans
  • Indice source CAS (CASSI)
  • Index Copernic
  • Google Scholar
  • Sherpa Roméo
  • Ouvrir la porte J
  • JournalSeek de génamique
  • Clés académiques
  • JournalTOC
  • RechercheBible
  • Infrastructure nationale du savoir de Chine (CNKI)
  • Annuaire des périodiques d'Ulrich
  • Accès à la recherche mondiale en ligne sur l'agriculture (AGORA)
  • Recherche de référence
  • Université Hamdard
  • EBSCO AZ
  • OCLC-WorldCat
  • Catalogue en ligne SWB
  • Publons
  • Fondation genevoise pour l'enseignement et la recherche médicale
  • MIAR
  • ICMJE
Partager cette page

Abstrait

Screening, Optimization, and Antibacterial Activity of Cellulose: DegradingBacteria from Sewage Soil Waste

Farjana Islam, Milon Miah, Joyanto Mahato, Narayan Roy

The present study was carried out to isolate, enhancement, identification, optimization of cellulose-degrading bacteria present in sewage soil waste, and screening for potential antibacterial activity. Three bacterial isolates were cultured at a large rate by Minimal Salt Medium (MSM) and showed the highest cellulase activity determined by congo red and iodine assay on Carboxy Methyl Cellulose (CMC) agar plate. Then various culture parameters such as pH, temperature, incubation period, substrate concentration, carbon, and nitrogen sources were optimized for the maximum cellulase secretion. Based on the morphological, cultural, and biochemical tests, the isolated strains were identified as Bacillus licheniformis, Bacillus sp. and Pseudomonas chlororaphis respectively. Bacillus licheniformis compared to other strains produced the highest cellulase enzyme (1 µ/ml) determined by the DNS method at neutral pH and 40ºC temperature on 24 hours incubation period. This bacterial strain was screened for the antibacterial activity determination against several bacterial pathogens and generated an inhibition zone ranging from 12-21 mm. The ethyl acetate extract of the selected strain showed the potential antibacterial activity against Escherichia coli and moderate activity against Shigella boydii and Bacillus cereus. The Minimum Inhibitory Concentration (MIC) of the tested extract was observed to be in the range of 44-62 µg/ml. Based on optimization, cellulose degradation, and antibacterial activity, Bacillus licheniformis was the potential species among the strains. The strain from sewage soil waste can be helpful for biodegradation and industrial application.