By Dhamendra Kumar Gupta, Soumya Chatterjee
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Additional info for Heavy Metal Remediation: Transport and Accumulation in Plants
Cd–Mn interaction. Plant Sci 162: 761–767. Rascio N, Navari-Izzo F (2011) Heavy metal hyperaccumulating plants: How and why do they do it? And what makes them so interesting? Plant Sci 180: 169–181. Rastgoo L, Alemzadeh A, Afsharifar A (2011) Isolation of two novel isoforms encoding zinc- and copper-transporting P1B-ATPase from Gouan (Aeluropus littoralis). Plant Omics J 4: 377–383. Rea PA (1999) MRP subfamily ABC transporters from plants and yeast. J Exp Bot 50: 895– 913. Rea PA, Li Z S, Lu YP, Drozdowicz YM (1998) From vacuolar GS-X pumps to multispeciffic ABC transporters.
2007). Arabidopsis halleri is a Zn/Cd hyperaccumulator species (Ernst 1974; Dahmani-Muller et al. 2001; Bert et al. 2002). The predominant expression of the ZIP transporters AhIRT3, AhZIP3, AhZIP6 and AhZIP12 in roots and shoots and AhZIP9 in roots of A. halleri was indicated to be responsible for the Zn and Cd uptake capacity in this species (Becher et al. 2004; Weber et al. 2004; Chiang et al. 2006). Seven genes have been identified in Medicago trancatula, three of them MtZIP1, MtZIP5, and MtZIP6 show through yeast complementation research the capacity of transporting Zn (Lopéz-Millán 2004).
In: Prasad MNV (ed) Heavy Metal Stress in Plants, 2nd edn, Springer-Verlag, New York pp 84–126. Shigaki T, Pittman JK, Hirschi KD (2003) Manganese specificity determinants in the Arabidopsis metal/H+ antiporter CAX2. J Bio Chem 278: 6610–6617. Shikanai T, Muller-Moule P, Munekage Y, Niyogi KK, Pilon M (2003) PAA1, a P-type ATPase of Arabidopsis, functions in copper transport in chloroplasts. Plant Cell 15: 1333–1346. Solioz M, Vulpe C (1996) CPx-type ATPases: a class of P-type ATPases that pump heavy metals.