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- W2891098608 abstract "Based on a review of the literature, we have developed a functional conceptual framework of plant metal uptake in relation to plant available metal concentration in the soil. This framework applies to all plant parts and plant available metal levels in soils, and was validated using independent datasets from field surveys and the literature. This is the first framework based on metal transporter kinetic parameters and combining Michaelis-Menten (hyperbolic) kinetics facilitated by the High Affinity Transport System (HATS) for soil concentrations below the transition concentration between transport systems, and linear metal uptake facilitated by the Low Affinity Transport System (LATS) for higher soil available metal concentrations. We propose a new terminology for metal tolerant plants, i.e. metal tolerators, based on this framework. Depending on the plant available metal levels in the soil, tolerator responses to metals can be described best by either Vmax and Km for soil concentrations below the transition concentration between metal transport systems (HATS), or by the slope for greater soil concentrations (LATS). This conceptual framework may be a useful tool for selecting suitable metal tolerators for specific phytoremediation purposes, and may be also applied to non-metal elements or ions." @default.
- W2891098608 created "2018-09-27" @default.
- W2891098608 creator A5029084932 @default.
- W2891098608 creator A5034513378 @default.
- W2891098608 creator A5070497753 @default.
- W2891098608 creator A5085396075 @default.
- W2891098608 date "2019-02-01" @default.
- W2891098608 modified "2023-10-14" @default.
- W2891098608 title "A new conceptual framework for plant responses to soil metals based on metal transporter kinetic parameters" @default.
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