11.03.2015 Views

Physiology and Molecular Biology of Stress ... - KHAM PHA MOI

Physiology and Molecular Biology of Stress ... - KHAM PHA MOI

Physiology and Molecular Biology of Stress ... - KHAM PHA MOI

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

246<br />

K. Gasic <strong>and</strong> S.S. Korban<br />

Bennett, L.E., Burkhead, J.L., Hale, K.L., Terry, N. <strong>and</strong> Pilon-Smits, E.A. (2003). Analysis <strong>of</strong><br />

transgenic Indian mustard plants for phytoremediation <strong>of</strong> metal-contaminated mine tailings. J.<br />

Environ. Qual. 32, 432-440.<br />

Bereczky, Z., Wang, H-Y., Schubert, V., Ganal, M. <strong>and</strong> Bauer, P. (2003). Differential regulation <strong>of</strong><br />

nramp <strong>and</strong> irt metal transporter genes in wild type <strong>and</strong> iron uptake mutants <strong>of</strong> tomato. J. Biol.<br />

Chem. 278, 24697-24704.<br />

Bernhard, W.R. <strong>and</strong> Kägi, H.R. 1987. Purification <strong>and</strong> characterization <strong>of</strong> atypical cadmium-binding<br />

polypeptides from Zea mays. Experientia 52, 309-315.<br />

Bizili, S.P., Rugh, C.L. <strong>and</strong> Megaher, R.B. (2000). Phytodetoxification <strong>of</strong> hazardous organomercurials<br />

by genetically engineered plants. Nat. Biotech. 18, 213-217.<br />

Blaudez, D., Kohler, A., Martin, F., S<strong>and</strong>ers, D. <strong>and</strong> Chalot, M. (2003). Poplar metal tolerance<br />

protein 1 confers zinc tolerance <strong>and</strong> is an oligomeric vacuolar zinc transporter with an essential<br />

leucine zipper motif. Plant Cell 15, 2911-2928.<br />

Bleeker, P.M., Schat, H., Voojis, R., Verkleij, A.C. <strong>and</strong> Ernst, W.H.O. (2003). Mechanisms <strong>of</strong><br />

arsenate tolerance in Cytisus striatus. New Phytol. 157, 33-38.<br />

Boominathan, R. <strong>and</strong> Doran, P.M. (2003). Cadmium tolerance <strong>and</strong> antioxidative defenses in hairy<br />

roots <strong>of</strong> the cadmium hyperaccumulator, Thlaspi caerulescens. Biotech. Bioeng. 83, 158-167.<br />

Borrelly, G.P., Harrison, M.D., Robinson, A.K., Cox, S.G., Robinson, N.J. <strong>and</strong> Whitehall, S.K.<br />

(2002). Surplus zinc is h<strong>and</strong>led by Zym1 metallothionein <strong>and</strong> Zhf endoplasmic reticulum transporter<br />

in Schizosaccharomyces pombe. J. Biol. Chem. 277, 30394-30400.<br />

Bovet, L., Eggman, T., Meylan-Bettex, M., Polier, J., Kammer, P., Marin, E., Feller, U. <strong>and</strong> Martinoia,<br />

E. (2003). Transcription levels <strong>of</strong> AtMRPs after cadmium treatment: induction <strong>of</strong> AtMRP3.<br />

Plant Cell Env. 26, 371-381<br />

Bughio, N., Yamaguchi, H., Nishizawa, N.K., Nakanishi, H. <strong>and</strong> Mori, S. (2002). Cloning an ironregulated<br />

metal transporter from rice. J. Exp. Bot. 53, 1677-1682.<br />

Carrier, P., Baryla, A. <strong>and</strong> Havaux, M. (2003). Cadmium distribution <strong>and</strong> microlocalization in oilseed<br />

rape (Brassica napus) after long-term growth on cadmium –contaminated soil. Planta 216,<br />

939–950.<br />

Chang, T., Liu, X., Xu, H., Meng, K., Chen, S. <strong>and</strong> Zhu, Z. (2004). A metallothionein like gene htMT2<br />

strongly expressed in internodes <strong>and</strong> nodes <strong>of</strong> Helinathus tuberosus <strong>and</strong> effects <strong>of</strong> metal ion<br />

treatment on its expression. Planta 218, 449-455.<br />

Chassaigne, H., Vachina, V., Kutchan, T.M. <strong>and</strong> Zenk, M.H. (2001). Identification <strong>of</strong> phytochelatinrelated<br />

peptides in maize seedlings exposed to cadmium <strong>and</strong> obtained enzymatically in vitro.<br />

Phytochem. 56, 657-668.<br />

Chen, J., Zhou, J. <strong>and</strong> Goldsbrough, P. (1997). Characterization <strong>of</strong> phytocheltain synthase from<br />

tomato. Physiol. Plant. 101, 165-172.<br />

Clemens, S., Bloss, T., Vess, C., Neumann, D., Nies, D.H <strong>and</strong> zur Nieden, U. (2002). A transporter in<br />

the endoplasmic reticulum <strong>of</strong> Schizosaccharomyces pombe cells mediated zinc storage <strong>and</strong><br />

differentially affects transition metal tolerance. J. Biol. Chem. 277, 18215-18221.<br />

Clemens, S., Kim, E.J., Neumann, D. <strong>and</strong> Schroeder, J.I. 1999. Tolerance to toxic metals by a gene<br />

family <strong>of</strong> phytochelatin synthases from plants <strong>and</strong> yeast. EMBO J. 18, 3325-3333.<br />

Clemens, S. 2001. <strong>Molecular</strong> mechanisms <strong>of</strong> plant metal tolerance <strong>and</strong> homeostasis. Planta 212,<br />

475-486<br />

Cobbett, C.S. <strong>and</strong> Goldsbrough, P. (2002). Phytochelatins <strong>and</strong> metallothioneins: roles in heavy metal<br />

detoxification <strong>and</strong> homeostasis. Annu. Rev. Plant Biol. 53, 159-182<br />

Cobbett, C.S., Hussain, D. <strong>and</strong> Haydon, M.J. (2003). Structural <strong>and</strong> functional relationship between<br />

type 1 B<br />

heavy metal-transporting P-type ATPases in Arabidopsis. New Phytol. 159, 315-321.<br />

Cobbett, C.S., May, M.J., Howden, R. <strong>and</strong> Rolls, B. (1998). The gluthatione-deficient, cadmiumsensitive<br />

mutant, cad2-1, <strong>of</strong> Arabidopsis thaliana is deficient in γ-glutamylcysteine synthetase.<br />

Plant J. 16, 73-78.<br />

Cobbett, C.S. (2000). Phytochelatins <strong>and</strong> their roles in heavy metal detoxification. Plant Physiol.<br />

123, 825-832.<br />

Connolly, E.L., Fett, J.P. <strong>and</strong> Guerinot, M.L. (2002). Expression <strong>of</strong> the IRT1 metal transporter is

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!