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Carbohydrate metabolism in developing potatoes

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Literature Cited

  1. Anderson, R.S. and E.E. Ewing. 1978. Partial purification of potato tuber invertase and its proteinaceous inhibitor. Phytochemistry 17:1077–1081.

    Article  CAS  Google Scholar 

  2. ap Rees, T. 1974. Pathways of carbohydrate breakdown in plants.In: MTP International Review of Science, Biochemistry, Series One, Vol. 11 (D.H. Northcote, Ed.). Butterworth, London, pp. 89–127.

    Google Scholar 

  3. ap Rees, T. 1980. Integration of pathways of synthesis and degradation of hexose phosphates.In: The Biochemistry of Plants Vol. 3 (J. Priess, Ed.). Academic Press, New York, pp. 1–42.

    Google Scholar 

  4. ap Rees, T. 1985. The organization of glycolysis and the oxidative pentose phosphate pathway in plants.In: Encyclopedia qf Plant Physiology, New Series, Vol. 18. (R. Douce and D.A. Day, Eds.). Springer Verlag, Berlin, pp. 391–441.

    Google Scholar 

  5. ap Rees, T. 1988. Hexose phosphate metabolism, by nonphotosynthetic tissues of higher plants.In: The Biochemistry of Plants Vol. 14. (J. Priess, Ed.). Academic Press, New York. pp. 1–33.

    Google Scholar 

  6. ap Rees, T. and H. Beevers. 1960. Pentose phosphate pathway as a major component of induced respiration in carrot and potato slices. Plant Physiol 35:839–847.

    Article  CAS  Google Scholar 

  7. ap Rees, T. and G. Entwistle. 1989. Entry into the amyloplast of carbon for starch synthesis.In: Physiology, Biochemistry, and Genetics of Nongreen Plastids. (C.D. Boyer, J.C. Shannon and R.C. Hardison, Eds.). American Society of Plant Physiologists, Rockville, Maryland, pp. 49–62.

    Google Scholar 

  8. Barker, J. and A.E el Saifi. 1952. Studies in the respiratory and carbohydrate metabolism of plant tissues. Proc Roy Soc B 140:362–403.

    Article  CAS  Google Scholar 

  9. Bracho, G.E. and J.R. Whitaker. 1990. Characteristics of the inhibition of potato (Solanum tuberosum) invertase by an endogenous proteinaceous inhibitor in potatoes. Plant Physiol 92:381–385.

    Article  PubMed  CAS  Google Scholar 

  10. Burton, W.G. 1966. The Potato (Second Edition). Veenman and Zonen NV, Wageningen. 382 pp.

    Google Scholar 

  11. Dixon, W.L. and T. ap Rees. 1980. Identification of the regulatory steps in glycolysis in potato tubers. Phytochemistry 19:1297–1301.

    CAS  Google Scholar 

  12. Entwistle, G. and T ap Rees. 1990a. Failure to corroborate claims that the developing endosperm of wheat (Tritkum aestivum) contains significant activities of fructose-1,6-bisphosphatase. Physiol Plant (In press).

  13. Entwistle, G. and T. ap Rees. 1990b. Lack of fructose-l,6-bisphosphatase in a range of tissues that store starch. Biochem J (In press).

  14. Edwards, J., J.H. Green and T. ap Rees. 1988. Activity of branching enzyme as a cardinal feature of the Ra locus inPisum sativum. Phytochemistry 27:1615–1620.

    Article  CAS  Google Scholar 

  15. Groen, A.K., C.W.T. van Roermund, R.C. Vervoorn and J.M. Tager. 1986. Control of gluconeogenesis in rat liver cells. Biochem J 237:379–389.

    PubMed  CAS  Google Scholar 

  16. Hardy, P.J. and G. Norton. 1968. Sugar absorption and compartmentation in potato tuber slices. New Phytologist 67:139–143.

    Article  CAS  Google Scholar 

  17. Hatzfeld, W.-D. and M. Stitt. 1990. A study of the rate of recycling of triose phosphates in heterotrophicChenopodium rubrum cells, potato tubers, and maize endosperm. Planta 180:198–204.

    CAS  Google Scholar 

  18. Heldt, H.W. and U.I. Flugge. 1987. Subcellular transport of metabolites in plant cells.In: The Biochemistry of Plants, Vol. 12. (D.D. Davies, Ed.). Academic Press, New York. pp. 49–85.

    Google Scholar 

  19. Jacobsen, B.S., B.N. Smith, S. Epstein and G.G. Laties. 1970. The prevalence of carbon-13 in respiratory carbon dioxide as an indicator of respiratory substrate. J Gen Physiol 55:1–17.

    Article  Google Scholar 

  20. Kacser, H. 1987. Control of metabolism.In: The Biochemistry of Plants, Vol. 12. (D.D. Davies, Ed.). Academic Press, New York. pp. 39–67.

    Google Scholar 

  21. Kahl, G., H. Lange and G. Rosenstock. 1969. Substratspiegel, enzymaktivitate und genetische regulation nach derepression in pflanzlichen speichgeweben. Natur-forschg. 24b:911–918.

    Google Scholar 

  22. Kahl, G., H. Lange and G. Rosenstock. 1969. Regulation glykoltischen umsatzes durch synthese und abbau von enzymen. Naturforschg. 24b:1544–1549.

    Google Scholar 

  23. Keeling, PL. 1989. Evidence against triose phosphate transport into amyloplasts of developing wheat and maize grain.In: Physiology, Biochemistry, and Genetics of Nongreen Plastids. (C.T. Boyer, J.C. Shannon and R.C. Hardison, Eds.). American Society of Plant Physiologists, Rockville, Maryland, pp. 63- 78.

    Google Scholar 

  24. Keller, E, M. Frehner and A. Wiemkin. 1988. Sucrose synthase, a cytosolic enzyme in protoplasts of Jerusalem artichoke tubers(Helianthus tuberosus L.) Plant Physiol 88:239–241.

    Article  PubMed  CAS  Google Scholar 

  25. Kruckeberg, A.L., H.E. Neuhaus, R. Fiel, L.D. Gottlieb and M. Stitt. 1989. Decreased-activity mutants of phosphoglucose isomerase in the cytosol and chlo-roplast ofClarkia xantiana. Biochem J 261:457–467.

    PubMed  CAS  Google Scholar 

  26. Leigh, R.A., T. ap Rees, W.A. Fuller and J. Banfield. 1979. The location of acid invertase activity and sucrose in the vacuoles of storage roots of beetroot(Beta vulgaris). Biochem J 178:539–547.

    PubMed  CAS  Google Scholar 

  27. Leloir, L.F. 1964. Nucleoside diphosphate sugars and saccharide synthesis. Biochem J 91:1–8.

    CAS  Google Scholar 

  28. Macdonald, F.D. and T. ap Rees. 1983. Enzymic properties of amyloplasts from suspension cultures of soybean. Biochim biophys Acta 755:81–89.

    CAS  Google Scholar 

  29. Mares, D.J. and H. Marschner. 1980. Assimilate conversion in potatoes in relation to starch deposition and cell growth. Ber Deutsch Bot Ges 93:299–313.

    CAS  Google Scholar 

  30. Mohabir, G. and P. John. 1988. Effect of temperature on starch synthesis in potato tuber tissue and in amyloplasts. Plant Physiol 88:1222–1228.

    Article  PubMed  CAS  Google Scholar 

  31. Morrell, S. and T ap Rees. 1986. Sugar metabolism in developing tubersofSolanum tuberosum. Phytochemistry 25:1579–1585.

    Article  CAS  Google Scholar 

  32. Neuhaus, H.E., W.P. Quick, G. Siegl and M. Stitt. 1990. Control of photosynthetic partitioning in spinach leaves. Planta 181:583–592.

    Article  CAS  Google Scholar 

  33. Newsholme, E.A. and C. Start. 1973. Regulation in metabolism. Wiley, London. 349 pp.

    Google Scholar 

  34. Nishimura, M. and H. Beevers. 1979. Subcellular distribution of gluconeogenetic enzymes in germinating castor bean endosperm. Plant Physiol 64:31–37.

    Article  PubMed  CAS  Google Scholar 

  35. Oparka, K J. 1985. Changes in partitioning of current assimilate during tuber bulking in potato (Solarium tuberosum L.) cv Maris Piper. Ann Bot 55:705–713.

    Google Scholar 

  36. Oparka, KJ. and D.A.M. Prior. 1987.14C sucrose efflux from the perimedulla of growing potato tubers. Plant Cell Environ 10:667–675.

    Article  CAS  Google Scholar 

  37. Oparka, K.J. and D.A.M. Prior. 1988. Movement of Lucifer Yellow CH in potato tuber storage tissues: A comparison of symplastic and apoplastic transport. Planta 176:533–540.

    Article  CAS  Google Scholar 

  38. Pollock, C.J. and T. ap Rees. 1975. Activities of enzymes of sugar metabolism in coldstored tubersof Solarium tuberosum. Phytochemistry 14:613–617.

    Article  CAS  Google Scholar 

  39. Pressey, R. 1967. Invertase inhibitor from potatoes: purification characterization, and reactivity with plant invertases. Plant Physiol 42:1780–1786.

    Article  PubMed  CAS  Google Scholar 

  40. Pressey, R. 1968. Invertase inhibitors from red beet, sugar beet and sweet potato root. Plant Physiol 43:1430–1434.

    Article  PubMed  CAS  Google Scholar 

  41. Pressey, R. 1969, Potato sucrose synthetase: purification, properties, and changes in activity associated with maturation. Plant Physiol 44:759–764.

    Article  PubMed  CAS  Google Scholar 

  42. Salter, M., R.G. Knowles and C.I. Pogson. 1986. Quantification of the importance of individual steps in the control of aromatic amino acid metabolism. Biochem J 234:635–647.

    PubMed  CAS  Google Scholar 

  43. Smith, A.M. 1988. Major differences in isoforms of starch-branching enzyme between developing embryos of round- and wrinkled-seeded peas(Pisum sativum L.) Planta 175:270–279.

    Article  CAS  Google Scholar 

  44. Tyson, R.H. and T. ap Rees. 1969. Failure to detect UDP-glucose phosphorylase in the developing endosperm of maize and wheat. Plant Science 59:71–76.

    Article  Google Scholar 

  45. Weiner, H., M. Stitt and H.W. Heldt. 1987. Subcellular compartmentation of pyrophosphate and alkaline pyrophosphatase in leaves. Biochim biophys Acta 893:13–21.

    Article  CAS  Google Scholar 

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An erratum to this article is available at http://dx.doi.org/10.1007/BF02853619.

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ap Rees, T., Morrell, S. Carbohydrate metabolism in developing potatoes. American Potato Journal 67, 835–847 (1990). https://doi.org/10.1007/BF03044296

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