
Potential Detergent Compatibility And De-staining Ability Of Cellulolytic Bacteria
Author(s) -
Atia Iqbal,
. Mahnoor
Publication year - 2020
Publication title -
the journal of microbiology and molecular genetics
Language(s) - English
Resource type - Journals
eISSN - 2788-8312
pISSN - 2707-6431
DOI - 10.52700/jmmg.v1i1.3
Subject(s) - cellulase , bacteria , food science , chemistry , cellulose , cellulosic ethanol , staining , microorganism , lactose , agar , microbiology and biotechnology , biology , biochemistry , genetics
Cellulases are inducible enzymes that are synthesized by many microorganisms during their growth on cellulosic materials. Production of cellulase enzyme from bacteria has gained interest for applications in industries owing to their stability, catalytic activity and ease of production. In current study, total 40 cellulolytic bacteria were screened by agar well diffusion assay followed by Congo red stain. Cellulolytic bacteria were evaluated for detergent compatibility and de-staining ability. Bacterial cellulase production was optimized at different environmental conditions. Biochemical testing was done following Bergey’s manual. Ten cellulolytic bacteria selected, were gram positive. Bacteria showed best cellulolytic activity at 40oC to 60oC, at pH 9, lactose as carbon source and peptone as nitrogen source. Best hydrolysis zone shown was 45mm from strain MS22 and least zone was 6mm. The maximum detergent activity for surf excel was observed for G2 while the lowest was observed for MW22. Similarly, maximum activity for ariel and bonus were observed for RS5 and C3. G1 and C3 showed better clearance of ink as compared to other strains. In de-staining, G1, C1and MW17 showed better clearance of edible oil and G1, C2 and MW18 showed better clearance of grease. These promising cellulolytic bacteria can be used for various applications in different industries.