Heavy Metal Removal by Bioaccumulation Using Genetically Engineered Microorganisms

被引:171
作者
Diep, Patrick [1 ]
Mahadevan, Radhakrishnan [1 ]
Yakunin, Alexander F. [1 ]
机构
[1] Univ Toronto, BioZone Ctr Appl Biosci & Bioengn, Dept Chem Engn & Appl Chem, Toronto, ON, Canada
关键词
RECOMBINANT ESCHERICHIA-COLI; ENHANCED ARSENIC ACCUMULATION; NEUROSPORA-CRASSA METALLOTHIONEIN; SPENT DECONTAMINATION SOLUTIONS; ACIDITHIOBACILLUS-FERROOXIDANS; TRANSPORT PROTEIN; SYNTHETIC BIOLOGY; AQUEOUS-SOLUTION; MERCURY REMOVAL; CELL-SURFACE;
D O I
10.3389/fbioe.2018.00157
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Wastewater effluents from mines and metal refineries are often contaminated with heavy metal ions, so they pose hazards to human and environmental health. Conventional technologies to remove heavy metal ions are well-established, but the most popular methods have drawbacks: chemical precipitation generates sludge waste, and activated carbon and ion exchange resins are made from unsustainable non-renewable resources. Using microbial biomass as the platform for heavy metal ion removal is an alternative method. Specifically, bioaccumulation is a natural biological phenomenon where microorganisms use proteins to uptake and sequester metal ions in the intracellular space to utilize in cellular processes (e.g., enzyme catalysis, signaling, stabilizing charges on biomolecules). Recombinant expression of these import-storage systems in genetically engineered microorganisms allows for enhanced uptake and sequestration of heavy metal ions. This has been studied for over two decades for bioremediative applications, but successful translation to industrial-scale processes is virtually non-existent. Meanwhile, demands for metal resources are increasing while discovery rates to supply primary grade ores are not. This review re-thinks how bioaccumulation can be used and proposes that it can be developed for bioextractive applications-the removal and recovery of heavymetal ions for downstream purification and refining, rather than disposal. This review consolidates previously tested import-storage systems into a biochemical framework and highlights efforts to overcome obstacles that limit industrial feasibility, thereby identifying gaps in knowledge and potential avenues of research in bioaccumulation.
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页数:20
相关论文
共 165 条
[1]   The Next Generation of Synthetic Biology Chassis: Moving Synthetic Biology from the Laboratory to the Field [J].
Adams, Bryn L. .
ACS SYNTHETIC BIOLOGY, 2016, 5 (12) :1328-1330
[2]   Computational approaches for de novo design and redesign of metal-binding sites on proteins [J].
Akcapinar, Gunseli Bayram ;
Sezerman, Osman Ugur .
BIOSCIENCE REPORTS, 2017, 37
[3]   A review of approaches and techniques used in aquatic contaminated sediments: metal removal and stabilization by chemical and biotechnological processes [J].
Akcil, Ata ;
Erust, Ceren ;
Ozdemiroglu, Sevda ;
Fonti, Viviana ;
Beolchini, Francesca .
JOURNAL OF CLEANER PRODUCTION, 2015, 86 :24-36
[4]   Mineral supply for sustainable development requires resource governance [J].
Ali, Saleem H. ;
Giurco, Damien ;
Arndt, Nicholas ;
Nickless, Edmund ;
Brown, Graham ;
Demetriades, Alecos ;
Durrheim, Ray ;
Enriquez, Maria Amelia ;
Kinnaird, Judith ;
Littleboy, Anna ;
Meinert, Lawrence D. ;
Oberhansli, Roland ;
Salem, Janet ;
Schodde, Richard ;
Schneider, Gabi ;
Vidal, Olivier ;
Yakovleva, Natalia .
NATURE, 2017, 543 (7645) :367-372
[5]   New Copper Resistance Determinants in the Extremophile Acidithiobacillus ferrooxidans: A Quantitative Proteomic Analysis [J].
Almarcegui, Rodrigo J. ;
Navarro, Claudio A. ;
Paradela, Alberto ;
Pablo Albar, Juan ;
von Bernath, Diego ;
Jerez, Carlos A. .
JOURNAL OF PROTEOME RESEARCH, 2014, 13 (02) :946-960
[6]   Copper ions stimulate polyphosphate degradation and phosphate efflux in Acidithiobacillus ferrooxidans [J].
Alvarez, S ;
Jerez, CA .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2004, 70 (09) :5177-5182
[7]   Design through the 12 principles of green engineering [J].
Anastas, PT ;
Zimmerman, JB .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2003, 37 (05) :94A-101A
[8]   A New Strategy for Heavy Metal Polluted Environments: A Review of Microbial Biosorbents [J].
Ayangbenro, Ayansina Segun ;
Babalola, Olubukola Oluranti .
INTERNATIONAL JOURNAL OF ENVIRONMENTAL RESEARCH AND PUBLIC HEALTH, 2017, 14 (01)
[9]  
Azam S., 2010, GEOTECH NEWS
[10]   Genetic engineering of Escherichia coli for enhanced uptake and bioaccumulation of mercury [J].
Bae, W ;
Mehra, RK ;
Mulchandani, A ;
Chen, W .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2001, 67 (11) :5335-5338