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Transcriptomic Analysis of Degradative Pathways for Azo Dye Acid Blue 113 in Sphingomonas melonis B‐2 from the Dye Wastewater Treatment Processopen access

Authors
Santhanarajan, Aalfin-EmmanuelRhee, ChaeyoungSul, Woo JunYoo, KeunjeSeong, Hoon JeKim, Hong-GiKoh, Sung-Cheol
Issue Date
Feb-2022
Publisher
MDPI
Keywords
Acid Blue 113; Azo dye; Biodegradation; Decolorization; Dye wastewater treatment
Citation
Microorganisms, v.10, no.2
Journal Title
Microorganisms
Volume
10
Number
2
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/55344
DOI
10.3390/microorganisms10020438
ISSN
2076-2607
2076-2607
Abstract
Background: Acid Blue 113 (AB113) is a typical azo dye, and the resulting wastewater is toxic and difficult to remove. Methods: The experimental culture was set up for the biodegradation of the azo dye AB113, and the cell growth and dye decolorization were monitored. Transcriptome sequencing was performed in the presence and absence of AB113 treatment. The key pathways and enzymes involved in AB113 degradation were found through pathway analysis and enrichment software (GO, EggNog and KEGG). Results: S. melonis B‐2 achieved more than 80% decolorization within 24 h (50 and 100 mg/L dye). There was a positive relationship between cell growth and the azo dye degradation rate. The expression level of enzymes involved in benzoate and naphthalene degradation pathways (NADH quinone oxidoreductase, N‐acetyltransferase and aromatic ring‐hy-droxylating dioxygenase) increased significantly after the treatment of AB113. Conclusions: Benzo-ate and naphthalene degradation pathways were the key pathways for AB113 degradation. NADH quinone oxidoreductase, N‐acetyltransferase, aromatic ring‐hydroxylating dioxygenase and CYP450 were the key enzymes for AB113 degradation. This study provides evidence for the process of AB113 biodegradation at the molecular and biochemical level that will be useful in monitoring the dye wastewater treatment process at the full‐scale treatment. © 2022 by the authors. Licensee MDPI, Basel, Switzerland.
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생명공학대학 (시스템생명공학과)
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