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Plant Physiology|August 14, 1998
Rate-limiting steps in selenium assimilation and volatilization by indian mustardde Souza MP, Pilon-Smits, Lytle, et al.Plant Physiology|January 8, 1999
Overexpression of ATP sulfurylase in indian mustard leads to increased selenate uptake, reduction, and tolerancePilon-Smits, Hwang, Mel Lytle C, et al.Planta|August 7, 1999
Rhizosphere bacteria enhance the accumulation of selenium and mercury in wetland plantsde Souza MP, Huang, Chee, et al.Plant Physiology|February 10, 1999
Rhizosphere bacteria enhance selenium accumulation and volatilization by indian mustardde Souza MP, Chu, Zhao, et al.Plant Physiology|January 8, 1999
Overexpression of glutathione synthetase in indian mustard enhances cadmium accumulation and toleranceLiang Zhu Y, Pilon-Smits, Jouanin, et al.Microbial Ecology|May 1, 1996
Differential Metabolism of Dimethylsulfoniopropionate and Acrylate in Saline and Brackish Intertidal Sedimentsde Souza MP, YochInternational Journal of Phytoremediation|August 27, 2004
Exploring the selenium phytoremediation potential of transgenic Indian mustard overexpressing ATP sulfurylase or cystathionine-gamma-synthaseT Van Huysen, N Terry, E A H Pilon-SmitsJournal of Environmental Quality|April 6, 2006
Constitutive expression of a high-affinity sulfate transporter in Indian mustard affects metal tolerance and accumulationStormy Dawn Lindblom, Salah Abdel-Ghany, Brady R Hanson, et al.International Journal of Phytoremediation|March 6, 2009
Heavy metal tolerance and accumulation in Indian mustard (Brassica juncea L.) expressing bacterial gamma-glutamylcysteine synthetase or glutathione synthetaseSarah Reisinger, Michela Schiavon, Norman Terry, et al.Pageof 17,191