Assessing the biodegradation efficiency and underlying molecular pathway of strain AEPI 0–0: A newly isolated tetracycline-degrading Serratia marcescens
Author:
Publisher
Elsevier BV
Subject
Plant Science,Soil Science,General Environmental Science
Reference46 articles.
1. Comparative genomics analyses on EPS biosynthesis genes required for floc formation of Zoogloea resiniphila and other activated sludge bacteria;An;Water Res.,2016
2. Anaerobic degradation of azo dye Drimaren blue HFRL in UASB reactor in the presence of yeast extract a source of carbon and redox mediator;Baêta;Biodegradation,2012
3. Global analyses of TetR family transcriptional regulators in mycobacteria indicates conservation across species and diversity in regulated functions;Balhana;BMC Genom.,2015
4. Removal of antibiotics in wastewater by enzymatic treatment with fungal laccase – degradation of compounds does not always eliminate toxicity;Becker;Bioresour. Technol.,2016
5. Harnessing the bio-mineralization ability of urease producing Serratia marcescens and Enterobacter cloacae EMB19 for remediation of heavy metal cadmium (II);Bhattacharya;J. Environ. Manag.,2018
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