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Original Articles

Plant genotype differences to ferrous and total iron in emerging leaves. I. Sorghum and maize

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Pages 371-387 | Published online: 21 Nov 2008

References

  • Banin , A. and Navrot , J. 1972 . Pattern of iron distribution in the soil‐plant system and its possible relation to iron‐chlorosis . Commun. Soil Sci. Plant Anal. , 3 : 177 – 182 .
  • 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 .
  • Brown , J. C. and Ambler , J. E. 1974 . Iron stress response in tomato . Physiol. Plant. , 31 : 221 – 224 .
  • Brown , J. C. , Ambler , J. E. , Chaney , R. L. and Foy , C. D. 1972 . “ Differential responses of plant genotypes to micronutrients ” . In Micronutrients in agriculture , Edited by: Mortvedt , J. J. , Giordano , P. M. and Lindsey , W. L. 389 – 418 . Madison, WI : Soil Sci. Soc. Am. .
  • Brown , J. C. and Bell , W. D. 1969 . Iron uptake dependant upon gentotypes of corn . Soil Sci. Soc. Am. Proc. , 33 : 99 – 101 .
  • Brown , J. C. , Cathey , H. M. , Bennett , J. H. and Thimijan , R. W. 1979 . Effect of light quality and temperature on Fe3+ reduction, and chlorophyll concentration in plants . Agron. J. , 71 : 1015 – 1021 .
  • Brown , J. C. and Jones , W. E. 1976 . A technique to determine iron efficiency in plants . Soil Sci. Soc. Am. J. , 40 : 389 – 405 .
  • Chaney , R. L. , Brown , J. C. and Tiffin , L. O. 1972 . Obligatory reduction of ferric chelates in iron uptake by soybeans . Plant Physiol. , 50 : 208 – 213 .
  • Clark , R. B. 1982 . Nutrient solution growth of sorghum and corn in mineral nutrition studies . J. Plant Nutr. , 5 : 1039 – 1057 .
  • Clark , R. B. and Brown , J. C. 1974a . Differential mineral uptake by maize inbreds . Commun. Soil Sci. Plant Anal. , 5 : 213 – 227 .
  • Clark , R. B. and Brown , J. C. 1974b . Internal root control of iron uptake and utilization in maize genotypes . Plant Soil , 40 : 669 – 677 .
  • Clark , R. B. , Tiffin , L. O. and Brown , J. C. 1973 . Organic acids and iron translocation in maize genotypes . Plant Physiol. , 52 : 147 – 150 .
  • Clark , R. B. , Yusuf , Y. , Ross , W. M. and Maranville , J. W. 1982 . Screening for sorghum differences to iron efficiency . J. Plant Nutr. , 5 : 587 – 604 .
  • Clarkson , D. T. and Hanson , J. B. 1980 . The mineral nutrition of higher plants . Annu. Rev. Plant Physiol. , 31 : 239 – 298 .
  • DeKock , P. C. 1981 . Iron nutrition under conditions of stress . J. Plant Nutr. , 3 : 513 – 521 .
  • DeKock , P. C. , Hall , A. and Inkson , R. H. E. 1979 . Active iron in plant leaves . Ann. Bot. , 43 : 737 – 740 .
  • Esty , J. C. , Onken , A. B. , Hossner , L. R. and Matheson , R. 1980 . Iron use efficiency in grain sorghum hybrids and parental lines . Agron. J. , 72 : 589 – 592 .
  • Goodman , B. A. and DeKock , P. C. 1982 . Mossbauer studies of plant materials. I. Duckweed, stocks, soyabean and pea . J. Plant Nutr. , 5 : 345 – 353 .
  • Kannan , S. 1980a . Differences in iron stress response and iron uptake in some sorghum varieties . J. Plant Nutr. , 2 : 347 – 358 .
  • Kannan , S. 1980b . Correlative influence of pH reduction on recovery from iron chlorosis in sorghum varieties . J. Plant Nutr. , 2 : 507 – 516 .
  • Kannan , S. 1981 . The reduction of pH and recovery from chlorosis in Fe‐stressed sorghum seedlings. The principle role of adventitious roots . J. Plant Nutr. , 4 : 73 – 78 .
  • Katyal , J. C. and Sharma , B. D. 1980 . A new technique of plant analysis to resolve iron chlorosis . Plant Soil , 55 : 105 – 118 .
  • Kramer , D. 1981 . “ Structure and function in absorption and transportation of nutrients ” . In Structure and function of plant roots , Edited by: Brouwer , R. , Gasparikova , O. , Kolek , J. and Loughman , B. C. 303 – 307 . Boston, MA : Martinus Nijhoff/Dr. W. Junk Publishers .
  • Landsberg , E.‐Ch. 1981 . Organic acid synthesis and release of hydrogen ions in response to Fe deficiency stress of mono‐ and dicotylendenous plant species . J. Plant Nutr. , 3 : 579 – 581 .
  • Landsberg , E.‐Ch. 1982 . Transfer cell formation in the root epidermis: A prerequisite for Fe‐efficiency? . J. Plant Nutr. , 5 : 415 – 423 .
  • Manley , S. L. 1981 . Iron uptake and translocation by Macrosystis pyrifers . Plant Physiol , 68 : 914 – 918 .
  • McBride , L. 1980 . The iron reagents , 3rd Ed. , 7 – 60 . Columbus, OH : G. Frederick Smith Chemical Company .
  • Mengel , K. and Malissiovas , N. 1982 . Light dependent proton excretion by roots of entire vine plants (Vitis vinifera L.) . Z. Pflanzenernaehr. Bodenkd , 145 : 261 – 267 .
  • Miller , G. W. , Denney , A. , Pushnik , J. and Yu. , M‐Ho . 1982 . The formation of delta‐aminolevulinate a precursor of chlorophyll in barley, and the role of iron . J. Plant Nutr , 5 : 289 – 300 .
  • 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 .
  • Olsen , R. A. , Brown , J. C. , Bennett , J. H. and Blume , D. 1982 . Reduction of Fe3+ as it relates to Fe chlorosis . J. Plant Nutr. , 5 : 433 – 445 .
  • Olsen , R. A. and Brown , J. C. 1980a . Factors related to iron uptake by dicotyledenous and monocotyledonous plants. I. pH and reductant . J. Plant Nutr. , 2 : 629 – 645 .
  • Olsen , R. A. and Brown , J. C. 1980b . Factors related to iron uptake by dicotyledenous and monocotyledonous plants. II. The reduction of Fe3+ as influenced by roots and inhibitors . J. Plant Nutr. , 2 : 647 – 660 .
  • Olson , R. V. 1965 . “ Total iron. ” . In Methods of soils analysis, Part 2. , Edited by: Black , C. A. , Evans , D. D. , White , J. L. , Ensminger , L. E. , Clark , F. E. and Dinauer , R. C. 963 – 973 . Madison, WI : Am. Soc. Agron. .
  • Oserkowsky , J. 1933 . Quantitative relation between chlorophyll and iron in green and chlorotic pear leaves . Plant Physiol. , 8 : 449 – 468 .
  • Pierson , E. E. and Clark , R. B. in press . Contamination of laboratory glassware with iron . Commun. Soil Sci. Plant Anal. ,
  • Pierson , E. E. and Clark , R. B. 1984a . Chelating agent differences in ferrous iron determinations . J. Plant Nutr. , (this issue)
  • Pierson , E. E. and Clark , R. B. 1984b . Ferrous iron determination in plant tissue . J. Plant Nutr. , (this issue)
  • Pushnik , J. C. and Miller , G. W. 1982 . The effects of iron and light treatments on chloroplast composition and ultrastructure in iron‐deficient barley leaves . J. Plant Nutr. , 5 : 311 – 321 .
  • Romheld , V. and Marschner , H. 1981a . Rhythmic iron stress reactions in sunflowers at suboptimal iron supply . Physiol. Plant. , 53 : 347 – 353 .
  • Romheld , V. and Marschner , H. 1981b . Iron deficiency stress induced morphological and physiological changes in root tips of sunflower . Physiol. Plant. , 53 : 354 – 360 .
  • Romheld , V. and Marschner , H. 1983 . Mechanism of iron uptake by peanut plants . Plant Physiol. , 71 : 949 – 954 .
  • Saywell , L. G. and Cunningham , B. B. 1937 . Determination of iron. Colormetric o‐phenanthroline method . Ind. Eng. Chem. , 9 : 67 – 69 .
  • Seckback , J. 1982 . Ferreting out the secrets of plant ferritin ‐a review . J. Plant Nutr. , 5 : 369 – 394 .
  • Tiffin , L. O. 1972 . “ Translocation of micronutrients in plants ” . In Micronutrients in agriculture , Edited by: Mortvedt , J. J. , Giordano , P. M. and Lindsay , W. L. 199 – 229 . Madison, WI : Soil Sci. Soc. Am. .
  • Venkat‐Raju , K. , Marschner , H. and Romheld , V. 1972 . Studies on the effect of iron supply on ion uptake, substrate pH and production and release of organic acids and riboflavin by sunflower plants . Z. Planzenernaehr. Bodenkd. , 132 : 177 – 190 .
  • Wallace , A. 1981 . Some physiological aspects of iron deficient plants . J. Plant Nutr. , 3 : 637 – 642 .
  • Williams , E. P. , Clark , R. B. , Yusuf , Y. , Ross , W. M. and Maranville , J. W. 1982 . Variability of sorghum genotypes to tolerate iron deficiency . J. Plant Nutr. , 5 : 553 – 567 .
  • Wolf , B. 1982 . A comprehensive system of leaf analysis and its use for diagnosing crop nutrient status . Commun. Soil Sci. Plant Anal. , 13 : 1025 – 1059 .

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