Bioremediation of malachite green dye by two bacterial strains isolated from textile effluents
•About 280,000 tons of fabric dyes are emitted to the industrial effluents annually.•These synthetic dyes are hazardous for aquatic environment and public health.•Biodegradation of such non-degradable colorants can be an eco-friendly approach.•Two MG dye degrading bacteria had been identified by RAP...
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Published in | Current research in microbial sciences Vol. 1; pp. 37 - 43 |
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Main Authors | , , , , , , , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
01.09.2020
Elsevier |
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Abstract | •About 280,000 tons of fabric dyes are emitted to the industrial effluents annually.•These synthetic dyes are hazardous for aquatic environment and public health.•Biodegradation of such non-degradable colorants can be an eco-friendly approach.•Two MG dye degrading bacteria had been identified by RAPD and 16S rRNA sequencing.•These bacteria of Enterobacter spp. can degrade 100% Malachite Green dye (15 mg/L).
Globally, water pollution from the textile industries is an alarming issue. Malachite Green dye of the triphenylmethane group is an extensively used dye in the fabric industries that is emitted through textile wastewater. This study aimed to isolate and characterize potential Malachite Green (MG) dye degrading bacteria from textile effluents. Different growth and culture parameters such as temperature, pH and dye concentration were optimized to perform the dye-degradation assay using different concentrations of MG dye in the mineral salt medium. A photo-electric-colorimeter was used to measure the decolorizing activity of bacteria at different time intervals after aerobic incubation. Two potential bacterial strains of Enterobacter spp. CV-S1 (accession no: MH450229) and Enterobacter spp. CM-S1 (accession no: MH447289) were isolated from textile effluents exhibiting potential MG dye decoloring efficiency. Further, the RAPD analysis and 16S rRNA sequencing confirmed the genetic differences of the isolated strains. Enterobacter sp CV-S1 and Enterobacter sp CM-S1 can completely decolor MG dye up to 15 mg/L under shaking condition without any requirement of sole carbon source. Thus, these two bacteria have the potency to be utilized in the textile wastewater treatment plant.
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AbstractList | Globally, water pollution from the textile industries is an alarming issue. Malachite Green dye of the triphenylmethane group is an extensively used dye in the fabric industries that is emitted through textile wastewater. This study aimed to isolate and characterize potential Malachite Green (MG) dye degrading bacteria from textile effluents. Different growth and culture parameters such as temperature, pH and dye concentration were optimized to perform the dye-degradation assay using different concentrations of MG dye in the mineral salt medium. A photo-electric-colorimeter was used to measure the decolorizing activity of bacteria at different time intervals after aerobic incubation. Two potential bacterial strains of Enterobacter spp. CV-S1 (accession no: MH450229) and Enterobacter spp. CM-S1 (accession no: MH447289) were isolated from textile effluents exhibiting potential MG dye decoloring efficiency. Further, the RAPD analysis and 16S rRNA sequencing confirmed the genetic differences of the isolated strains. Enterobacter sp CV-S1 and Enterobacter sp CM-S1 can completely decolor MG dye up to 15 mg/L under shaking condition without any requirement of sole carbon source. Thus, these two bacteria have the potency to be utilized in the textile wastewater treatment plant. • About 280,000 tons of fabric dyes are emitted to the industrial effluents annually. • These synthetic dyes are hazardous for aquatic environment and public health. • Biodegradation of such non-degradable colorants can be an eco-friendly approach. • Two MG dye degrading bacteria had been identified by RAPD and 16S rRNA sequencing. • These bacteria of Enterobacter spp. can degrade 100% Malachite Green dye (15 mg/L). Globally, water pollution from the textile industries is an alarming issue. Malachite Green dye of the triphenylmethane group is an extensively used dye in the fabric industries that is emitted through textile wastewater. This study aimed to isolate and characterize potential Malachite Green (MG) dye degrading bacteria from textile effluents. Different growth and culture parameters such as temperature, pH and dye concentration were optimized to perform the dye-degradation assay using different concentrations of MG dye in the mineral salt medium. A photo-electric-colorimeter was used to measure the decolorizing activity of bacteria at different time intervals after aerobic incubation. Two potential bacterial strains of Enterobacter spp. CV-S1 (accession no: MH450229) and Enterobacter spp. CM-S1 (accession no: MH447289) were isolated from textile effluents exhibiting potential MG dye decoloring efficiency. Further, the RAPD analysis and 16S rRNA sequencing confirmed the genetic differences of the isolated strains. Enterobacter sp CV-S1 and Enterobacter sp CM-S1 can completely decolor MG dye up to 15 mg/L under shaking condition without any requirement of sole carbon source. Thus, these two bacteria have the potency to be utilized in the textile wastewater treatment plant. Image, graphical abstract •About 280,000 tons of fabric dyes are emitted to the industrial effluents annually.•These synthetic dyes are hazardous for aquatic environment and public health.•Biodegradation of such non-degradable colorants can be an eco-friendly approach.•Two MG dye degrading bacteria had been identified by RAPD and 16S rRNA sequencing.•These bacteria of Enterobacter spp. can degrade 100% Malachite Green dye (15 mg/L). Globally, water pollution from the textile industries is an alarming issue. Malachite Green dye of the triphenylmethane group is an extensively used dye in the fabric industries that is emitted through textile wastewater. This study aimed to isolate and characterize potential Malachite Green (MG) dye degrading bacteria from textile effluents. Different growth and culture parameters such as temperature, pH and dye concentration were optimized to perform the dye-degradation assay using different concentrations of MG dye in the mineral salt medium. A photo-electric-colorimeter was used to measure the decolorizing activity of bacteria at different time intervals after aerobic incubation. Two potential bacterial strains of Enterobacter spp. CV-S1 (accession no: MH450229) and Enterobacter spp. CM-S1 (accession no: MH447289) were isolated from textile effluents exhibiting potential MG dye decoloring efficiency. Further, the RAPD analysis and 16S rRNA sequencing confirmed the genetic differences of the isolated strains. Enterobacter sp CV-S1 and Enterobacter sp CM-S1 can completely decolor MG dye up to 15 mg/L under shaking condition without any requirement of sole carbon source. Thus, these two bacteria have the potency to be utilized in the textile wastewater treatment plant. [Display omitted] |
Author | Rahman, Md. Mizanur Saha, Ananda Kumar Roy, Dipankar Chandra Biswas, Sudhangshu Kumar Roy, Apurba Kumar Haque, Md. Enamul Hasan, Md Rockybul Tang, Swee-Seong Sheam, Md. Moinuddin |
Author_xml | – sequence: 1 givenname: Dipankar Chandra orcidid: 0000-0003-0299-5710 surname: Roy fullname: Roy, Dipankar Chandra organization: Department of Biotechnology and Genetic Engineering, Faculty of Biological Sciences, Islamic University, Kushtia-7003, Bangladesh – sequence: 2 givenname: Sudhangshu Kumar surname: Biswas fullname: Biswas, Sudhangshu Kumar email: skbiswas@btge.iu.ac.bd organization: Department of Biotechnology and Genetic Engineering, Faculty of Biological Sciences, Islamic University, Kushtia-7003, Bangladesh – sequence: 3 givenname: Md. Moinuddin surname: Sheam fullname: Sheam, Md. Moinuddin organization: Department of Biotechnology and Genetic Engineering, Faculty of Biological Sciences, Islamic University, Kushtia-7003, Bangladesh – sequence: 4 givenname: Md Rockybul surname: Hasan fullname: Hasan, Md Rockybul organization: Division of Microbiology, Institute of Biological Sciences, Faculty of Science, University of Malaya, 50603 Kuala Lumpur, Malaysia – sequence: 5 givenname: Ananda Kumar surname: Saha fullname: Saha, Ananda Kumar organization: Department of Zoology, Faculty of Biological Sciences, University of Rajshahi, Rajshahi-6205, Bangladesh – sequence: 6 givenname: Apurba Kumar surname: Roy fullname: Roy, Apurba Kumar organization: Department of Genetic Engineering and Biotechnology, Faculty of Biological Sciences, University of Rajshahi, Rajshahi-6205, Bangladesh – sequence: 7 givenname: Md. Enamul surname: Haque fullname: Haque, Md. Enamul organization: University of Chinese Academy of Sciences, Beijing, China – sequence: 8 givenname: Md. Mizanur orcidid: 0000-0003-4225-9451 surname: Rahman fullname: Rahman, Md. Mizanur organization: Department of Biotechnology and Genetic Engineering, Faculty of Biological Sciences, Islamic University, Kushtia-7003, Bangladesh – sequence: 9 givenname: Swee-Seong orcidid: 0000-0002-6996-441X surname: Tang fullname: Tang, Swee-Seong organization: Division of Microbiology, Institute of Biological Sciences, Faculty of Science, University of Malaya, 50603 Kuala Lumpur, Malaysia |
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Keywords | Enterobacter sp Textile effluents 16S rRNA gene sequencing Bioremediation Malachite Green dye RAPD |
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Snippet | •About 280,000 tons of fabric dyes are emitted to the industrial effluents annually.•These synthetic dyes are hazardous for aquatic environment and public... • About 280,000 tons of fabric dyes are emitted to the industrial effluents annually. • These synthetic dyes are hazardous for aquatic environment and public... Globally, water pollution from the textile industries is an alarming issue. Malachite Green dye of the triphenylmethane group is an extensively used dye in the... |
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Title | Bioremediation of malachite green dye by two bacterial strains isolated from textile effluents |
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