Detection and quantification of ligands involved in nickel detoxification in a herbaceous Ni hyperaccumulator Stackhousia tryonii Bailey

Author:

Bhatia Naveen P.,Walsh Kerry B.,Baker Alan J. M.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

Reference34 articles.

1. Anderson TR, Howes AW, Slatter K, Dutton MF. 1997. Studies on the nickel hyperaccumulator, Berkheya coddii. In: Jaffré T, Reeves RD, Becquer T, eds. The ecology of ultramafic and metalliferous areas. Proceedings of the Second International Conference on Serpentine Ecology, Nouméa. Nouméa, New Caledonia: ORSTOM, 261–266.

2. Baker AJM, McGrath SP, Reeves RD, Smith JAC. 2000. Metal hyperaccumulator plants: a review of the ecology and physiology of a biological resource for phytoremediation of metal-polluted soils. In: Terry N, Bañuelos G, eds. Phytoremediation of contaminated soil and water. Boca Raton, Florida, USA: Lewis Publishers, 85–107.

3. Batianoff GN, Reeves RD, Specht RL. 1990. Stackhousia tryonii Bailey: a nickel-accumulating serpentine-endemic species of Central Queensland. Australian Journal of Botany38,121–130.

4. Bhatia NP, Walsh KB, Orlic I, Siegele R, Ashwath N, Baker AJM. 2004. Studies on spatial distribution of nickel in leaves and stems of the metal hyperaccumulator Stackhousia tryonii Bailey using nuclear microprobe (micro-PIXE) and EDXS techniques. Functional Plant Biology31,1061–1074.

5. Bidwell SD. 2001. Hyperaccumulation of metals in Australian native plants. PhD thesis, The University of Melbourne, Australia.

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