191
Mkandawire M, Vogel K, Taubert B, Dudel EG (2007) Phosphate regulates uranium(VI) toxicity
to Lemna gibba L. G3. Environ Toxicol 22:9–16
Nakajima A, Horikoshi T, Sakaguchi T (1979) Ion effects on the uptake of uranium by Chlorella
regularis. Agric Biol Chem 43:625–629
Nie XQ, Dong FQ, Liu N, Liu XM, Zhang W, Sun SY, Yang J (2014) An investigation on the subcellular distribution and compartmentalization of uranium in Phaseolus vulgaris L. J Radioanal
Nucl Chem 299:1351–1357
Pan C, Hu N, Ding DX, Hu JS, Li GY, Wang YD (2016) An experimental study on the synergistic
effects between Azolla and Anabaena in removal of uranium from solutions by Azolla–anabaena symbiotic system. J Radioanal Nucl Chem 307:385–394
Pratas J, Favas PJ, Paulo C, Rodrigues N, Prasad MNV (2012) Uranium accumulation by aquatic
plants from uranium-contaminated water in central Portugal. Int J Phytorem 14:221–234
Pratas J, Paulo C, Favas PJC, Venkatachalam P (2014) Potential of aquatic plants for phytofiltration of uranium-contaminated waters in laboratory conditions. Ecol Eng 69:170–176
Ragnarsdottir KV, Charlet L (2000) Uranium behaviour in natural environments. In: CotterHowells JD, Campbell LS, Valsami-Jones E, Batchelder M (eds) Environmental mineralogy:
microbial interactions, anthropogenic influences, contaminated land and waste management.
Mineralogical Society, UK, pp 245–289
Rai PK (2008) Technical Note: Phytoremediation of Hg and Cd from industrial effluents using an
aquatic free floating Macrophyte Azolla Pinnata. Int J Phytorem 10:430–439
Rauser WE (1999) Structure and function of metal chelators produced by plants. Cell Biochem
Biophys 31:19–48
Song M, Wang Q, Meng Y (2012) Removal of UO 2
2+ from aqueous solution by plasma functionalized MWCNTs. J Radioanal Nucl Chem 293:899–906
Srivastava S, Bhainsa KC, D’Souza SF (2010) Investigation of uranium accumulation potential
and biochemical responses of an aquatic weed Hydrilla verticillata (L.f.) Royle. Bioresour
Technol 101:2573–2579
Tang LF, Huang YB, Weng BQ, Liu ZZ, Liu XS (2000) Sustainable agricultural model of high
output, low input and less pollution in Paddy field. Scient Agricul Sin 33:60–66. (In Chinese).
Influence of Uranium Speciation on Plant Uptake
Mkandawire M, Vogel K, Taubert B, Dudel EG (2007) Phosphate regulates uranium(VI) toxicity
to Lemna gibba L. G3. Environ Toxicol 22:9–16
Nakajima A, Horikoshi T, Sakaguchi T (1979) Ion effects on the uptake of uranium by Chlorella
regularis. Agric Biol Chem 43:625–629
Nie XQ, Dong FQ, Liu N, Liu XM, Zhang W, Sun SY, Yang J (2014) An investigation on the subcellular distribution and compartmentalization of uranium in Phaseolus vulgaris L. J Radioanal
Nucl Chem 299:1351–1357
Pan C, Hu N, Ding DX, Hu JS, Li GY, Wang YD (2016) An experimental study on the synergistic
effects between Azolla and Anabaena in removal of uranium from solutions by Azolla–anabaena symbiotic system. J Radioanal Nucl Chem 307:385–394
Pratas J, Favas PJ, Paulo C, Rodrigues N, Prasad MNV (2012) Uranium accumulation by aquatic
plants from uranium-contaminated water in central Portugal. Int J Phytorem 14:221–234
Pratas J, Paulo C, Favas PJC, Venkatachalam P (2014) Potential of aquatic plants for phytofiltration of uranium-contaminated waters in laboratory conditions. Ecol Eng 69:170–176
Ragnarsdottir KV, Charlet L (2000) Uranium behaviour in natural environments. In: CotterHowells JD, Campbell LS, Valsami-Jones E, Batchelder M (eds) Environmental mineralogy:
microbial interactions, anthropogenic influences, contaminated land and waste management.
Mineralogical Society, UK, pp 245–289
Rai PK (2008) Technical Note: Phytoremediation of Hg and Cd from industrial effluents using an
aquatic free floating Macrophyte Azolla Pinnata. Int J Phytorem 10:430–439
Rauser WE (1999) Structure and function of metal chelators produced by plants. Cell Biochem
Biophys 31:19–48
Song M, Wang Q, Meng Y (2012) Removal of UO 2
2+ from aqueous solution by plasma functionalized MWCNTs. J Radioanal Nucl Chem 293:899–906
Srivastava S, Bhainsa KC, D’Souza SF (2010) Investigation of uranium accumulation potential
and biochemical responses of an aquatic weed Hydrilla verticillata (L.f.) Royle. Bioresour
Technol 101:2573–2579
Tang LF, Huang YB, Weng BQ, Liu ZZ, Liu XS (2000) Sustainable agricultural model of high
output, low input and less pollution in Paddy field. Scient Agricul Sin 33:60–66. (In Chinese).
Influence of Uranium Speciation on Plant Uptake
