Produce Degradation Pathways and Prevention

(Romina) #1

Structure and Function of Complex Carbohydrates in Produce 593



  1. Hofmann, T., Bors, W., and Stettmaier, K., Radical intermediates in the early stage
    of the nonenzymatic browning reaction of carbohydrates and amino acids, J. Agric.
    Food Chem., 47, 379, 1999.

  2. Yaylayan, V. A. and Keyhani, A., Origin of carbohydrate degradation products in
    L-alanine D-[C-13]glucose model systems, J. Agric. Food Chem., 48, 2415, 2000.

  3. Irving, D. E. and Hurst, P. L., Respiration, soluble carbohydrates and enzymes of
    carbohydrate metabolism in tip of harvested asparagus spears, Plant Sci., 94, 89, 1993.

  4. Irving, D. E., Hurst, P. L., and Ragg, J. S., Changes in carbohydrates and carbohydrate
    metabolizing enzymes during the development, maturation, and ripening of buttercup
    squash (Cucurbita maxima D. ‘Delica’), Am. Soc. Hortic. Sci. J., 122, 3, 1997.

  5. Wakabayashi, K., Chun, J. P., Huber, D. J., Extensive solubilization and depolymer-
    ization of cell wall polysaccharides during avocado (Persesa Americana) ripening
    involves concerted action of polygalacturonase and pectinmethylesterase, Physiol.
    Plant., 108, 345, 2000.

  6. Wakabayashi, K., Hoson, T., and Huber, D. J., Methyl de-esterification as a major
    factor regulating the extent of pectin depolymerization during fruit ripening: a com-
    parison of the action of avocado (Persea Americana) and tomato (Lycopersicon
    esculentum) polygalacturonases, J. Plant Physiol., 160, 667, 2003.

  7. Cardarelli, A. et al., Effects of exogenous propylene on softening, glycosidase, and
    pectinmethylesterase activity during postharvest ripening of apricots, J. Agric. Food
    Chem., 50, 1441, 2002.

  8. Thakur, B. R., Singh, R. K., and Handa, A. K., Chemistry and uses of pectin: a review,
    Crit. Rev. Food Sci. Nutr., 37, 47, 1997.

  9. King, G. A. and O’Donoghue, E. M., Unravelling senescence: new opportunities for
    delaying the inevitable in harvested fruits and vegetables, Trends Food Sci. Technol.,
    6, 385, 1995.

  10. Heaton, J. W., and Marangoni, A. G., Chlorophyll degradation in processed foods
    and senescent plant tissues, Trends Food Sci. Technol., 7, 8, 1996.

  11. Arenas-Ocampoo, M. L., Evangelista-Lozano, S. R., Arana-Errasquin, R., Jimenez-
    Apricio, A., and Davila-Ortiz, G., Softening and biochemical changes of sapote
    Mamey fruit (Pourteria sapote) at different development and ripening stages, J. Food
    Biochem., 27, 91, 2003.

  12. Schols, H. A., Voragen, A. G. J., and Colquhoun, I. J., Isolation and characterization
    of rhamnogalacturonan oligomers, liberated during degradation of pectic hairy regions
    by rhamnogalacturonase, Carbohydr. Res., 256, 97, 1994.

  13. Schols, H. A. and Voragen, A. G. J., Occurrence of pectic hairy regions in various
    plant cell wall materials during their degradability by rhamnogalacturonase, Carbo-
    hydr. Res., 256, 83, 1994.

  14. Poulose, A. J. and Boston, M., Enzyme assisted degradation of surface membranes
    of harvested fruits and vegetables, U.S. Patent 5 298 256, 1994.

  15. Dourtoglou, A. and Tsopelas, P., Postharvest fruit protection using components of
    natural essential oils in combination with coating waxes, WO patent 93/06735A1,



  16. Poulose, A. J. and Boston, M., Enzyme assisted degradation of surface membranes
    of harvested fruits and vegetables, U.S. Patent 5 037 662, 1991.

  17. Guillon, F. et al., Characterization of residual fibers from fermentation of pea and
    apple fibers by human fecal bacteria, J. Sci. Food. Agric., 68, 521, 1995.

  18. Huber, D. J., Karakurt, Y., and Jeong, J., Pectin degradation in ripening and wounded
    fruits, R. Bras. Fisiol. Veg., 13, 224, 2001.

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