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- W1992304503 abstract "'Phytoremediation, the use of plants for environmental cleanup of pollutants, including toxic metals, holds the potential to allow the economic restoration of heavy metal and radionuclide contaminated sites. A number of terrestrial plants are known to naturally accumulate high levels of metals in their shoots (1--2% dry weight), and these plants have been termed metal-hyperaccumulators. Clearly, the genetic traits that determine metal-hyperaccumulation offers the potential for the development of practical phytoremediation processes. The long-term objective is to rationally design and generate plants ideally suited for phytoremediation using this unique genetic material. Initially, the strategy will focus on isolating and characterizing the key genetic information needed for expression of the metal-hyperaccumulation phenotype. Recently, histidine has been shown to play a major role in Ni hyperaccumulation. Based on this information the authors propose to investigate, at the molecular level, the role of histidine biosynthesis in Ni hyperaccumuIation in Thlaspi goesingense, a Ni hyperaccumulator species.'" @default.
- W1992304503 created "2016-06-24" @default.
- W1992304503 creator A5044903153 @default.
- W1992304503 date "1997-10-28" @default.
- W1992304503 modified "2023-09-27" @default.
- W1992304503 title "Molecular dissection of the cellular mechanisms involved in nickel hyperaccumulation. 1997 annual progress report" @default.
- W1992304503 doi "https://doi.org/10.2172/13710" @default.
- W1992304503 hasPublicationYear "1997" @default.
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