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- W4301815917 abstract "Heavy metals are the elements having density higher than that of water. The anthropogenic activities are more significant because they release the heavy metals in bioavailable and mobile forms that can be easily taken up by plants and lead to food chain contamination. Metals and metalloids have so much importance as well as drastic effects on soil, plant and water. Therefore, need to analyze those metals which are toxic and those which are the essential components of the living system. Most effective are x-ray based and spectrometric techniques like ICP-MS, ICP-AES, and EAAS. It is of great concern that phytotoxicity due to accumulation of heavy metals has adverse effects on the crop yield, food safety and marketability. Persistence of heavy metals in soil affects the photosynthesis, gaseous exchange, nutrient absorption and causes the reduction in plant growth. Phytoremediation is a series of plant-based technology that employs natural or genetically modified plants to remove pollutants from contaminated soil and water. Various plants have been proposed in order to improve phytoremediation capabilities through genetic engineering and plant transformation technology. Three most widely used transformation methods are; physical, chemical and biological. According to reports, genetically engineered phytoremediation plants were originally developed to improve resistance to heavy metals. It is a healthy approach to make plants genetically engineer to fight against heavy metal stress." @default.
- W4301815917 created "2022-10-05" @default.
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- W4301815917 date "2022-01-01" @default.
- W4301815917 modified "2023-10-01" @default.
- W4301815917 title "Detection of metals/metalloids and development of engineered plants to fight stress" @default.
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- W4301815917 doi "https://doi.org/10.1016/b978-0-323-91675-2.00023-8" @default.
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