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- W2910249075 endingPage "237" @default.
- W2910249075 startingPage "187" @default.
- W2910249075 abstract "Natural and anthropogenic activities lead to radionuclide contamination of the environment and pose a risk to human health. Traditional remediation approaches use physiochemical methods, are very expensive, pose a risk to the workers, and cause irreversible changes to the land; hence the lack public acceptance. Recently, there has been a spark of interest in research to this end involving use of biological organisms, especially plants, called phytoremediation. Phytoremediation is an attractive, cost effective technology that reduces the hazard of radiation exposure to workers. Slow removal rates and inadequate detoxification mechanism limit phytoremediation’s capacity. Advances in plant transformation technology offer altered metal tolerance, accumulation, and/or biotransformation capacity in the transgenic plants, which accelerates the efficacy of phytoremediation. However, to our knowledge a limited number of transgenic plants have been developed for the remediation of radionuclide contamination. A dearth of candidate gene(s) and regulatory issues on transgenic plants are the major concerns. Functional genomic approaches such as RNAi and genome editing could be helpful in identifying potential candidate gene(s) and to overcome the transgenic regulatory issues." @default.
- W2910249075 created "2019-01-25" @default.
- W2910249075 creator A5021443662 @default.
- W2910249075 creator A5026836913 @default.
- W2910249075 creator A5043862548 @default.
- W2910249075 creator A5044990242 @default.
- W2910249075 creator A5077733834 @default.
- W2910249075 date "2019-01-01" @default.
- W2910249075 modified "2023-09-23" @default.
- W2910249075 title "Transgenic Plants for Remediation of Radionuclides" @default.
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