Produce Degradation Pathways and Prevention

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Attachment of Bacterial Human Pathogens on Fruit and Vegetable Surfaces 435



  1. Adair, C.N., Influence of controlled-atmosphere storage condition on cabbage post-
    harvest decay fungi, Plant Dis. Rep., 55, 864, 1971.

  2. Liao, C.-H. and Shollenberger, L.M., Lethal and sublethal action of acetic acid on
    Salmonella in vitro and on cut surfaces of apple slices, J. Food Sci., 68, 2793, 2003.

  3. Liao, C.-H. and Shollenberger, L.M., Enumeration, resuscitation, and infectivity of
    the sublethally injured Erwinia cells induced by mild acid treatment, Phytopathology,
    94, 76, 2004.

  4. Lund, B.M., Bacterial spoilage, in Post-Harvest Pathology of Fruits and Vegetables,
    Denis, C., Ed., Academic Press, London, 1983, p. 219.

  5. Torriani, S., Orsi, C., and Vescovo, M., Potential of Lactobacillus casei, culture
    permeate, and lactic acid to control microorganisms in ready-to-use vegetables, J.
    Food Prot., 60,1564, 1997.

  6. Sands, D.C., Hankin, L., and Zucker, M., Ecology and physiology of fluorescent
    pectolytic pseudomonads, Phytopathology, 65, 921, 1975.

  7. Cuppels, D. and Kelman, A., Evaluation of selective media for isolation of soft-rot
    bacteria from soil and plant tissue, Phytopathology, 64, 468, 1974.

  8. Van Renterghem, B., Huysman, F., Rygole, R., and Verstarte, W., Detection and
    prevalence of Listeria monocytogenes in the agricultural ecosystem, J. Appl. Bacte-
    riol., 71, 211, 1991.

  9. Al-ghazali, M.R. and Al-azawi, S.K., Listeria monocytogenes contamination of crops
    grown on soil treated with sewage sludge cake, J. Appl. Bacteriol., 69, 642, 1990.

  10. Dunlop, S.G. and Wang, W.-L.L., Studies on the use of sewage effluent for irrigation
    of truck crops, J. Milk Food Technol., 24, 44, 1961.

  11. Grigoreva, L.V., Garodetsky, A.S., Omel’Yanets, T.G., and Bogdanenko, L.A., Sur-
    vival of bacteria and viruses on vegetables crops irrigated with infected water, Hyg.
    Sanit., 30, 357, 1965.

  12. Nichols, A.A., Davis, P.A., and King, K.P., Contamination of lettuce irrigated with
    sewage effluent, J. Hortic. Sci., 46, 425, 1971.

  13. Rudolfs, W., Falk, L.L., and Ragotskie, R.A., Contamination of vegetables grown in
    polluted soil, Sew. Ind. Wastes, 23, 253, 1951.

  14. Kott, H. and Fishelson, L., Survival of enteroviruses on vegetables irrigated with
    chlorinated oxidation pond effluents, Isr. J. Technol., 12, 290, 1974.

  15. Samish, Z., Etinger-Tulczynsky, R., and Bick, M., The microflora within the tissue
    of fruits and vegetables, J. Food Sci., 28, 259, 1963.

  16. Romantschuk, M., Roine, E., Bjorklof, K., Ojanen, T., Nurmiaho-Lassila, E.-L., and
    Haahtela, K., Microbial attachment to plant aerial surfaces, in Aerial Plant Surface
    Microbiology, Morris, C.E., Nicot, P.C., and Nguyen-The, C., Eds., Plenum Press,
    New York, 1996, p. 43.

  17. National Advisory Committee on Microbiological Criteria for Foods (NACMCF),
    Microbiological safety evaluations and recommendations on fresh produce, Food
    Control, 10, 117, 1999.

  18. Solomon, E.B., Yaron, S., and Matthews, K.R., Transmission of Escherichia coli
    O157:H7 from contaminated manure and irrigation water to lettuce plant tissue and
    its subsequent internalization, Appl. Environ. Microbiol., 68, 397, 2002.

  19. Wachtel, M.R., Whitehand, L.C., and Mandrell, R.E., Association of Escherichia coli
    O157:H7 with preharvest leaf lettuce upon exposure to contaminated irrigation water,
    J. Food Prot., 65, 8, 2002.

  20. Guo, X., van Iersel, M.W., Chen, J., Brackett, R.E., and Beuchat, L.R., Evidence of
    association of salmonellae with tomato plants grown hydroponically in inoculated
    nutrient solution, Appl. Environ. Microbiol., 68, 3639, 2002.

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