216
Views
3
CrossRef citations to date
0
Altmetric
Original Papers

Physiological responses of tomato roots grown in organ culture to iron-deficiency stress

, &
Pages 1177-1181 | Received 12 Jun 2004, Accepted 30 Sep 2004, Published online: 14 Sep 2011

References

  • Barton , LB , Johnson , GV , O'Nan , AG and Wagener , BM . 2000 . Inhibition of ferric chelate reductase in alfalfa roots by cobalt, nickel, chromium and copper . J. Plant Nutr. , 23 : 1833 – 1845 .
  • Bienfait , HF , De Weger , LA and Kramer , D . 1987 . Control of the development of iron-efficiency reactions in potato as a response to iron deficiency is located in the roots . Plant Physiol. , 83 : 244 – 247 .
  • Butcher , DN and Street , HE . 1964 . Excised root culture . Bot. Rev. , 30 : 513 – 586 .
  • Chaney , RL , Brown , JC and Tiffin , LO . 1972 . Obligatory reduction of ferric chelates in iron uptake by soybean . Plant Physiol. , 50 : 208 – 213 .
  • Cornea , JD and Johnson , GV . 1991 . “ Ferric chelate reduction by suspension culture cells and roots of soybean: a kinetic comparison ” . In Iron Nutrition and Interactions in Plants , Edited by: Chen , Y and Hadar , Y . 95 – 100 . Boston : Kluwer Academic Publishers . In
  • Curie , C and Briat , JF . 2003 . Iron transport and signaling in plants . Annu. Rev. Plant Biol. , 54 : 183 – 206 .
  • Dodds , JH and Roberts , LW . 1995 . Experiments in Plant Tissue Culture , 3rd Ed. , New York : Cambridge University Press . 256 pp.
  • Grusak , MA . 1995 . Whole-root iron(III) reductase activity throughout the life cycle of iron-grown Pisum sativum L. (Fabaceae): relevance to the iron nutrition of developing seeds . Planta , 197 : 111 – 117 .
  • Grusak , MA and Pezeshgi , S . 1996 . Shoot to root signal transmission regulates root Fe(III) reductase activity in the dgl mutant of pea . Plant Physiol. , 110 : 329 – 334 .
  • Grusak , MA , Welch , RM and Kochian , LV . 1990 . Physiological characterization of a single-gene mutant of Pisum sativum exhibiting excess iron accumulation I. Root iron reduction and iron uptake . Plant Physiol. , 93 : 976 – 981 .
  • Heilman , AR and Johnson , GV . Proceedings 11th International Symposium on Iron Nutrition and Interactions in Plants . Udine, Italy. Ferric chelate reductase in radish: response to metals and ethylene effectors , pp. 72 – 72 . In
  • Landsberg , EC . 1984 . Regulation of iron-stress-response by whole-plant activity . J. Plant Nutr. , 7 : 609 – 621 .
  • Maas , FM , van de Wetering , DAM , van Buesichein , ML and Bienfait , HF . 1988 . Characterization of phloem iron and its possible role in the regulation of Fe-efficiency reactions . Plant Physiol. , 87 : 167 – 171 .
  • Moog , PR and Brüggemann , W . 1995 . “ Iron reductase systems on the plant plasma membrane—a review ” . In Iron Nutrition in Soils and Plants , Edited by: Abadia , J . 343 – 362 . Boston : Kluwer Academic Publishers . In
  • Nikolic , M and Römheld , V . 1999 . Mechanism of Fe uptake by the leaf symplast: Is Fe inactivation in a leaf a cause of Fe deficiency chlorosis? . Plant Soil , 215 : 229 – 237 .
  • Robinson , NJ , Procter , CM , Connolly , EL and Guerinot , ML . 1999 . A ferric-chelate reductase for iron uptake from soils . Nature , 397 : 694 – 697 .
  • Romera , FJ and Alcantara , E . 1994 . Iron deficiency stress responses in cucumber (Cucumis sativus L.) roots: a possible role for ethylene? . Plant Physiol. , 105 : 1133 – 1138 .
  • Romera , FJ and Alcantara , E . 2004 . Ethylene involvement in the regulation of Fe-deficiency stress responses by Strategy I plants . Funct. Plant Biol. , 31 : 315 – 328 .
  • Romera , FJ , Alcantara , E and de la Guardia , MD . 1992 . Role of roots and shoots in the regulation of the Fe efficiency responses in sunflower and cucumber . Physiol. Plant. , 85 : 141 – 146 .
  • Romera , FJ , Welch , RM , Norvell , WA and Schaefer , SC . 1996 . Iron requirement for and effects of promoters and inhibitors of ethylene action on stimulation of Fe(III)-chelate reductase in roots of strategy I species . BioMetals , 9 : 45 – 50 .
  • Sain , SL and Johnson , GV . 1984 . Selection of iron-efficient soybean cell lines using plant cells uspension culture . J. Plant Nutr. , 7 : 389 – 398 .
  • Sain , SL and Johnson , GV . 1986 . Characterization of iron uptake by iron-efficient and iron-inefficient soybeans in cell suspension culture . J. Plant Nutr. , 9 : 729 – 750 .
  • Schmidt , W . 1999 . Mechanisms and regulation of reduction-based iron uptake in plants . New Phytol. , 141 : 1 – 26 .
  • Schmidt , W . 2003 . Iron homeostasis in plants: sensing and signaling pathways . J. Plant Nutr. , 26 : 2211 – 2230 .
  • Schmidt , W and Steinbach , S . 2000 . Sensing iron—a whole plant approach . Ann. Bot. , 86 : 589 – 593 .
  • Stookey , LL . 1970 . Ferrozine—a new spectrophotometric reagent for iron . Anal. Chem. , 26 : 1534 – 1538 .
  • Vert , GA , Briat , JF and Curie , C . 2003 . Dual regulation of the Arabidopsis high-affinity root iron uptake system by local and long-distance signals . Plant Physiol. , 132 : 796 – 804 .
  • White , PR . 1934 . Potentially unlimited growth of excised tomato root tips in a liquid medium . Plant Physiol. , 9 : 585 – 600 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.