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Biochemistry and physiology of iron

A critical evaluation of iron mobilization mechanisms with special reference to the contact effect phenomenon

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Pages 759-780 | Published online: 21 Nov 2008

References

  • Armstrong , W. , Healy , M.T. and Lythe , S. 1983 . Oxygen diffusion in pea. II. Oxygen concentrations in the primary pea root apex as affected by growth, the production of laterals and radial oxygen loss . New Phytol. , 94 : 549 – 559 .
  • Azarabadi , S. and Marschner , H. 1979 . Role of the rhizosphere in utilization of inorganic iron‐III‐compounds by corn plants . Z. Pflanzenernaehr. Bodenkd. , 142 : 751 – 764 .
  • Barber , D.A. and Gunn , K.B. 1974 . The effect of mechanical forces on the exudation of organic substances by the roots of cereal plants growing under sterile conditions . New Phytol. , 83 : 39 – 45 .
  • Barber , S.A. 1984 . Soil Nutrient Bioavailability , New York : John Wiley & Sons .
  • Barrett‐Lennard , E.G. , Marschner , H. and Römheld , V. 1983 . Mechanism of short term FeIII reduction by roots. Evidence against the role of secreted reductants . Plant Physiol. , 73 : 893 – 898 .
  • Bienfait , H.F. , Duivenvoorden , J. and Verkerke , W. 1982 . Ferric reduction by roots of chlorotic bean plants: Indications for an enzymatic process . J. Plant Nutr. , 5 : 451 – 456 .
  • Carpita , N. , Sabularse , D. , Montezinos , D. and Delmer , D.P. 1979 . Determination of the pore size of cell walls of living plant cells . Science , 205 : 1144 – 1147 .
  • Chaney , R.L. 1984 . Diagnostic practices to identify iron deficiency in higher plants . J. Plant Nutr. , 7 : 47 – 67 .
  • Chaney , R.L. , Brown , J.C. and Tiffin , L.O. 1972 . Obligatory reduction of ferric chelates in Fe uptake by soybeans . Plant Physiol. , 50 : 208 – 213 .
  • Chapman , H.D. 1939 . Absorption of iron from finely ground magnetite by citrus seedlings . Soil Sci. , 48 : 309 – 315 .
  • Chapman , H.D. and Liebig , G.F. Jr. 1938 . Adaptation and use of automatically operated sand‐culture equipment . J. Agr. Res. , 56 : 73 – 80 .
  • Chen , Y. and Barak , P. 1982 . Iron nutrition of plants in calcareous soils . Adv. Agron. , 35 : 217 – 238 .
  • Chereskin , B.M. and Castelfranco , P.A. 1982 . Effects of iron and oxygen on chlorophyll biosynthesis. II. Observations on the bio‐synthetic pathway in isolated etiochloroplasts . Plant Physiol. , 68 : 112 – 116 .
  • Davis , B.E. , ed. 1980 . Applied Soil Trace Elements , Chichester, , U.K. : John Wiley & Sons .
  • Dittmer , H.J.A. 1937 . Ouantitative study of roots and root hairs of a winter rye‐plant (Secale cereale) . Am. J. Bot. , 24 : 417 – 420 .
  • Drew , M.C. and Lynch , J.M. 1980 . Soil anaerobiosis, microorganisms, and root function . Annu. Rev. Phytopathol. , 18 : 37 – 66 .
  • Duss , F. , Mozafar , A. , Oertli , J.J. and Jäggi , W. 1985 . Effect of bacteria on the iron uptake by axenically‐cultured‐roots of Fe‐efficient and Fe‐inefficient tomatoes (Lycopersicon esculentum Mill.) . J. Plant Nutr. , (This issue)
  • Eaton , F.M. 1936 . Automatically operated sand‐culture equipment . J. Agr. Res. , 53 : 433 – 444 .
  • Egmond , F. van and Aktas , M. 1977 . Iron‐nutritional aspects of the ionic balance of plants . Plant Soil , 48 : 685 – 703 .
  • Finck , A. 1982 . Pflanzenernährung in Stichworten , Kiel, , West Germany : Verlag Ferdinand Hirt .
  • Gambrell , R.P. and Patrick , W.H. Jr. 1978 . “ Chemical and microbiological properties of anaerobic soils and sediments ” . In Plant Life in Anaerobic Environments , Edited by: Hook , D.D. and Crawford , R.M.M. 375 – 423 . Ann Arbor, Michigan : Ann Arbor Sci. .
  • Glauser , R. and Jenny , H. 1960 . Two‐phase studies on availibility of iron in calcareous soils. I. Experiments with alfalfa plants . Agrochimica , 4 : 263 – 278 .
  • Greenwood , D.J. and Goodman , D. 1967 . Direct measurements of the distribution of oxygen in soil aggregates and in columns of fine soil crumbs . J. Soil Sci. , 18 : 182 – 196 .
  • Guest , P.L. 1944 . Root‐contact phenomena in relation to iron nutrition and growth of citrus . Proc. Amer. Soc. Hort. Sci. , 44 : 43 – 48 .
  • Hale , M.G. and Moore , L.D. 1979 . Factors affecting root exudation. II: 1970–1978 . Adv. Agron. , 31 : 93 – 123 .
  • Jenny , H. 1966 . Pathways of ions from soil into root according to diffusion models . Plant Soil , 25 : 265 – 289 .
  • Jenny , H. and Overstreet , R. 1939 . Cation interchange between plant roots and soil colloids . Soil Sci. , 47 : 257 – 272 .
  • Jones , J.B. Jr. 1970 . Distribution of fifteen elements in corn leaves . Commun. Soil Sci. Plant Anal. , 1 : 27 – 33 .
  • Julian , G. , Cameron , H.J. and Olsen , R.A. 1983 . Role of chelation by ortho dihydroxy phenols in iron absorption by plant roots . J. Plant Nutr. , 6 : 163 – 175 .
  • Kashirad , A. and Marschner , H. 1974 . Effect of pH and phosphate on iron nutrition of sunflower and corn plants . Agrochimica (Pisa) , 18 : 497 – 508 .
  • Landsberg , E.C. 1981 . Organic acid synthesis and release of hydrogen ions in response to Fe deficiency stress of mono‐ and dicotyledonous plant species . J. Plant Nutr. , 3 : 579 – 591 .
  • Landsberg , E.C. 1984 . Regulation of iron‐stress‐response by whole‐plant activity . J. Plant Nutr. , 7 : 609 – 621 .
  • Latimer , W.M. 1952 . Oxidation potentials , 2d ed. , New York : Prentice Hall .
  • Leeper , G.W. 1934 . Relationship of soils to manganese deficiency of plants . Nature , 134 : 972 – 973 .
  • Liebig , J. von. 1858 . Ueber einige Eigenschaften der Ackerkrume . Ann. Chem. Pharm. , 105 : 109 – 144 .
  • Lindsay , W.L. 1984 . Soil and plant relationships associated with iron deficiency with emphasis on nutrient interactions . J. Plant Nutr. , 7 : 489 – 500 .
  • Mengel , K. , Bubl , W. and Scherer , H.W. 1984 . Iron distribution in vine leaves with HCO3 ‐ induced chlorosis . J. Plant Nutr. , 7 : 715 – 724 .
  • Marschner , H. and Römheld , V. 1983 . In vivo measurement of root‐induced pH changes at the soil‐root interface: Effect of plant species and nitrogen source . Z. Pflanzenphysiol. , 111 : 241 – 251 .
  • Neiland , J.B. 1979 . “ Biomedical and environmental significance of siderophores ” . In Trace Metals in Health and Disease , Edited by: Kharasch , N. 27 – 41 . New York : Raven Press .
  • Oertli , J.J. 1956 . Studies on the uptake of iron by higher plants , Berkeley : University of California . Ph.D. diss.
  • Oertli , J.J. and Jacobson , L. 1960 . Some quantitative considerations in iron nutrition of higher plants . Plant Physiol. , 35 : 683 – 688 .
  • Oertli , J.J. and Opoku , A.A. 1974a . Interaction of potassium in the availability and uptake of iron from ferric hydroxide . Soil Sci. Soc. Amer. Proc. , 38 : 451 – 454 .
  • Oertli , J.J. and Opoku , A.A. 1974b . Effect of macronutrient ions on the availibility of iron from a chelated source . Soil Sci. Soc. Amer. Proc. , 38 : 597 – 602 .
  • Olsen , R.A. and Brown , J.C. 1980 . Factors related to iron uptake by dicothylendonous and monocotyledonous plants. I. pH and reductant . J. Plant Nutr. , 2 : 629 – 645 .
  • Olsen , R.A. , Bennett , J.H. , Blume , D. and Brown , J.C. 1981 . Chemical aspects of the Fe stress response mechanism in tomatoes . J. Plant Nutr. , 3 : 905 – 921 .
  • Perret , P. and Koblet , W. 1984 . Soil compaction induced iron‐chlorosis in grape vineyards: presumed involvement of exogenous soil ethylene . J. Plant Nutr. , 7 : 533 – 539 .
  • Powell , P.E. , Cline , G.R. , Reid , C.P.P. and Szaniszol , P.J. 1980 . Occurrence of hydroxamate siderophore iron chelators in soils . Nature , 287 : 833 – 834 .
  • Römheld , V. and Marschner , H. 1981 . Rhythmic iron stress reactions in sunflower at suboptimal iron supply . Physiol. Plant. , 53 : 347 – 353 .
  • Römheld , V. and Marschner , H. 1983 . Mechanism of iron uptake by peanut plants. I. FeIII reduction, chelate splitting, and release of phenolics . Plant Physiol. , 71 : 949 – 954 .
  • Römheld , V. and Marschner , H. 1984 . Plant‐induced pH changes in the rhizosphere of “Fe‐efficient” and “Fe‐inefficient” soybean and corn cultivars . J. Plant Nutr. , 7 : 623 – 630 .
  • Rowell , D.L. 1981 . “ Oxidation and reduction ” . In The Chemistry of Soil Processes , Edited by: Greenland , D.J. and Hayes , M.H.B. 401 – 459 . Chichester, , U.K. : John Wiley & Sons .
  • Sijomns , P.C. and Bienfait , H.F. 1983 . Source of electrons for extracellular Fe(III) reduction in iron‐deficient bean roots . Physiol. Plant. , 59 : 409 – 415 .
  • Sijmons , P.C. , Lanfermeijer , F.C. , de Boer , A.H. , Prins , H.B.A. and Bienfait , H.F. 1984 . Depolarization of cell membrane potential during trans‐plasma membrane electron transfer to extracellular electron acceptors in iron‐deficient roots of Phaseolus vulgaris L . Plant Physiol. , 76 : 943 – 946 .
  • Stromme , E.R. 1951 . Availability to plants of iron and manganese in glassy frits , Michigan State College . Ph.D. thesis
  • Uren , N.C. 1982 . Chemical reduction at the root surface . J. Plant Nutr. , 5 : 515 – 520 .
  • Uren , N.C. 1984 . Forms, reactions and availability of iron in soils . J. Plant Nutr. , 7 : 165 – 176 .
  • Vandenbergh , P.A. , Gonzalez , C.F. , Wright , A.M. and Kunka , B.S. 1983 . Iron‐chelating compounds produced by soil Pseudomonads: correlation with fungal growth inhibition . Appl. Environ. Microbiol. , 46 : 128 – 132 .
  • Wallace , A. 1962 . “ Metal chelation and mechanisms of metal function in biological systems ” . In Decade of Synthetic Chelating Agents in Inorganic Plant Nutrition , Edited by: Wallace , A. 3 – 19 . Ann Arbor, Michigan : Edwards Brothers, Inc. .
  • Wallace , A. and Wallace , G.A. 1984 . Cation‐anion uptake balance and proton efflux in plant efficiency for iron . J. Plant Nutr. , 7 : 847 – 852 .
  • Wallihan , E.F. , Garber , M.J. , Sharpless , R.G. and Printy , W.L. 1961 . Effect of soil oxygen deficit on iron nutrition of orange seedlings . Plant Physiol. , 36 : 425 – 427 .
  • Wardell , J.N. , Brown , C.M. and Flannigan , B. 1983 . “ Microbes and surfaces ” . In Microbes in Their Natural Environments , Edited by: Slater , J.H. , Whittenbury , R. and Wimpenny , J.W.T. 351 – 378 . Cambridge : Cambridge University Press .

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