Genetically engineered microorganisms for environmental remediation
Генетически модифицированные микроорганизмы для восстановления окружающей среды
2022-10-06
SCID: 54.1/e7s9yzjr
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biodegradationbioremediationenvironmental remediationgenetically engineered microorganismshazardous contaminants
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Abstract (AI)
In the recent era, the increasing persistence of hazardous contaminants is badly affecting the globe in many ways. Due to high environmental contamination, almost every second species on earth facing the worst issue in their survival. Advances in newer remediation approaches may help enhance bioremediation's quality, while conventional procedures have failed to remove hazardous compounds from the environment. Chemical and physical waste cleanup approaches have been used in current circumstances; however, these methods are costly and harmful to the environment. Thus, there has been a rise in the use of bioremediation due to an increase in environmental contamination, which led to the development of genetically engineered microbes (GEMs). It is safer and more cost-effective to use engineered microorganisms rather than alternative methods. GEMs are created by introducing a stronger protein into bacteria through biotechnology or genetic engineering to enhance the desired trait. Biodegradation of oil spills, halobenzoates naphthalenes, toluenes, trichloroethylene, octanes, xylenes etc. has been accomplished using GEMs such bacteria, fungus, and algae. Biotechnologically induced microorganisms are more powerful than naturally occurring ones and may degrade contaminants faster because they can quickly adapt to new pollutants they encounter or co-metabolize. Genetic engineering is a worthy process that will benefit the environment and ultimately the health of our people.
Key Findings
1
Compared with naturally occurring microorganisms, engineered microbes may degrade contaminants faster through improved adaptation to new pollutants or co-metabolism.
2
Engineered bacteria, fungi, and algae have been used to biodegrade oil spills, halobenzoates, naphthalenes, toluenes, trichloroethylene, octanes, and xylenes.
3
GEMs enhance microbial remediation by introducing stronger proteins through biotechnology or genetic engineering to improve desired degradation traits.
4
Genetically engineered microorganisms are presented as safer and more cost-effective alternatives to chemical and physical environmental cleanup methods.
5
The abstract frames genetic engineering as a promising strategy for addressing persistent hazardous contamination and protecting environmental and human health.
Research Object
genetically engineered microorganisms (GEMs) used for environmental remediation
Research Subject
the enhanced biodegradation of hazardous environmental contaminants by GEMs, including their degradation capability, adaptability, and effectiveness compared with naturally occurring microorganisms
Publication Details
Publication Date
2022-10-06
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