Investigating Bio-Inspired Degradation of Toxic Dyes Using Potential Multi-Enzyme Producing Extremophiles

被引:29
作者
Pham, Van Hong Thi [1 ]
Kim, Jaisoo [2 ]
Chang, Soonwoong [1 ]
Bang, Donggyu [3 ]
机构
[1] Kyonggi Univ, Coll Creat Engn, Dept Environm Energy Engn, Suwon 16227, South Korea
[2] Kyonggi Univ, Coll Nat Sci, Dept Life Sci, Suwon 16227, South Korea
[3] Kyonggi Univ, Grad Sch, Dept Environm Energy Engn, Suwon 16227, South Korea
关键词
bacterial dye degradation; bioremediation; dye toxicity; extremophiles; REACTIVE AZO DYES; RECENT ADVANCEMENTS; RISK-ASSESSMENT; TEXTILE DYE; DECOLORIZATION; BACTERIA; BIODEGRADATION; HALOTOLERANT; ALKALINE; REMOVAL;
D O I
10.3390/microorganisms11051273
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Biological treatment methods overcome many of the drawbacks of physicochemical strategies and play a significant role in removing dye contamination for environmental sustainability. Numerous microorganisms have been investigated as promising dye-degrading candidates because of their high metabolic potential. However, few can be applied on a large scale because of the extremely harsh conditions in effluents polluted with multiple dyes, such as alkaline pH, high salinity/heavy metals/dye concentration, high temperature, and oxidative stress. Therefore, extremophilic microorganisms offer enormous opportunities for practical biodegradation processes as they are naturally adapted to multi-stress conditions due to the special structure of their cell wall, capsule, S-layer proteins, extracellular polymer substances (EPS), and siderophores structural and functional properties such as poly-enzymes produced. This review provides scientific information for a broader understanding of general dyes, their toxicity, and their harmful effects. The advantages and disadvantages of physicochemical methods are also highlighted and compared to those of microbial strategies. New techniques and methodologies used in recent studies are briefly summarized and discussed. In particular, this study addresses the key adaptation mechanisms, whole-cell, enzymatic degradation, and non-enzymatic pathways in aerobic, anaerobic, and combination conditions of extremophiles in dye degradation and decolorization. Furthermore, they have special metabolic pathways and protein frameworks that contribute significantly to the complete mineralization and decolorization of the dye when all functions are turned on. The high potential efficiency of microbial degradation by unculturable and multi-enzyme-producing extremophiles remains a question that needs to be answered in practical research.
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页数:15
相关论文
共 110 条
[1]  
Abd-Elnaby H. M., 2016, EGYPT J AQUATIC RES, V42, P193, DOI [10.1016/j.ejar.2016.04.003, DOI 10.1016/j.ejar.2016.04.003]
[2]   Efficiency of Thermophilic Bacteria in Wastewater Treatment [J].
Abu Baker, Bassam ;
Tawabini, Bassam ;
Nazal, Mazen ;
AlThaqfi, Jameel ;
Khalil, Amjad .
ARABIAN JOURNAL FOR SCIENCE AND ENGINEERING, 2021, 46 (01) :123-128
[3]   Degradation of azo dyes by Alcaligenes aquatilis 3c and its potential use in the wastewater treatment [J].
Ajaz, Mehvish ;
Rehman, Abdul ;
Khan, Zaman ;
Nisar, Muhammad Atif ;
Hussain, Syed .
AMB EXPRESS, 2019, 9
[4]   Statistical optimization for the efficacious degradation of reactive azo dyes using Acinetobacter baumannii JC359 [J].
Ameenudeen, Shabnam ;
Unnikrishnan, Sneha ;
Ramalingam, Karthikeyan .
JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2021, 279
[5]   Azo dye decolorization by halophilic and halotolerant microorganisms [J].
Amoozegar, Mohammad Ali ;
Hajighasemi, Mahbod ;
Hamedi, Javad ;
Asad, Sedigheh ;
Ventosa, Antonio .
ANNALS OF MICROBIOLOGY, 2011, 61 (02) :217-230
[6]   Adaptive Response of Thermophiles to Redox Stress and Their Role in the Process of dye Degradation From Textile Industry Wastewater [J].
Aragaw, Tadele Assefa ;
Bogale, Fekadu Mazengiaw ;
Gessesse, Amare .
FRONTIERS IN PHYSIOLOGY, 2022, 13
[7]  
Ashraf Fehmina, 2020, Punjab University Journal of Zoology, V35, P147, DOI 10.17582/journal.pujz/2020.35.1.147.156
[8]  
Aydin Muhsin, 2021, Natural and Engineering Sciences, V6, P19, DOI 10.28978/nesciences.868061
[9]  
Babu K.M., 2019, WORLD J TEXT ENG, V5, P43
[10]   Life in acid: pH homelostasis in acidophiles [J].
Baker-Austin, Craig ;
Dopson, Mark .
TRENDS IN MICROBIOLOGY, 2007, 15 (04) :165-171