TY - JOUR N2 - The current study was aimed to evaluate the industrial effl uents biodegradation potential of an indigenous microorganism which reduced water pollution caused by these effl uents. In the present study biodegradation of three textile industrial effl uents was performed with locally isolated brown rot fungi named Coniophora puteana IEBL-1. Response Surface Methodology (RSM) was employed under Box Bhenken Design (BBD) for the optimization of physical and nutritional parameters for maximum biodegradation. Quality of treated effl uents was checked by study of BOD, COD and analysis through HPLC. Three ligninolytic enzymes named lignin peroxidase, manganese peroxidase and laccase were also studied during the biodegradation process. The results showed that there was more than 85% biodegradation achieved for all three effl uents with decrease in Biological Oxygen Demand (BOD) and Chemical Oxygen Demand (COD) below the recommended values for industrial effl uent i.e. 80 mg/L for BOD and 220 mg/L for COD after optimization of nutritional parameters in the second stage. Analysis of samples through HPLC revealed the formation of less toxic diphenylamine, 3-methyldiphenylamine and N-methylaniline after treatment. The ligninolytic enzymes assays confi rmed the role of lignin peroxidase (LiP), manganese peroxidase (MnP) and laccase in biodegradation process. Lignin peroxidase with higher activity has more contribution in biodegradation of effl uents under study. It can be concluded through the results that Coniophora buteana IEBL-1 is a potential fungus for the treatment of industrial effluents. L1 - http://www.czasopisma.pan.pl/Content/113720/PDF/blank.pdf L2 - http://www.czasopisma.pan.pl/Content/113720 PY - 2019 IS - No 4 EP - 59 DO - 10.24425/aep.2019.130241 KW - Coniophora puteana IEBL-1 KW - response surface methodology KW - biodegradation KW - laccase KW - ligninperoxidase KW - diphenylamine A1 - Mahmood, Raja T. A1 - Asad, Muhammad J. A1 - Asgher, Muhammad A1 - Zainab, Tayyaba A1 - Zafar, Mudassar A1 - Hadri, Saqib H. A1 - Ali, Imran A1 - Zaman, Nasib A1 - Wattoo, Feroza H. PB - Polish Academy of Sciences VL - vol. 45 DA - 02.12.2019 T1 - First report on implementation of response surface methodology for the biodegradation of textile industrial effluents by Coniophora puteana IEBL-1 SP - 48 UR - http://www.czasopisma.pan.pl/dlibra/publication/edition/113720 T2 - Archives of Environmental Protection ER -