114 Produce Degradation: Reaction Pathways and their Prevention
- Vick, B.A. and Zimmerman, D.C., Oxidative systems for modification of fatty acids:
The lipoxygenase pathway, in The Biochemistry of Plants, Stumpf, P.K. and Conn,
E.E., Eds., Academic Press, New York, 1980, pp. 53–90. - Sanz, L.C., Perez, A.G., Rios, J.J., and Olias, J.M., Positional specificity of ketones
from linoleic acid aerobically formed by lipoxygenase isozymes from kidney bean
pea, J. Agric. Food Chem., 41, 696–699, 1993. - Moretti, C.L., Baldwin, E.A., Sargent, S.A., and Huber, D.J., Internal bruising alters
aroma volatile profiles in tomato fruit tissues, HortScience, 37, 378–382, 2002. - Hayashi, Y., Yamada, K., Shimada, T., Matsushima, R., Nishizawa, N.K., Nishimura,
M., and Hara-Nishimura, I., The ER body, a novel endoplasmic reticulum-derived
structure in Arabidopsis, Plant Cell Physiol., 42, 894–899, 2001. - Matsushima, R., Hayashi, Y., Kondo, M., Shimada, T., Nishimura, M., and Hara-
Nishimura, I., An endoplasmic reticulum-derived structure that is induced under stress
conditions in Arabidopsis, Plant Physiol., 130, 1807–1814, 2002. - Law, D.M., Davies, P.J., and Mutschler, M.A., Polyamine-induced prolongation of
storage in tomato fruits, Plant Growth Regul., 10, 283–290, 1991. - Martínez-Romero, D., Valero, D., Serrano, M., Burló, F., Carbonell, A., Burgos, L.,
and Riquelme, F., Exogenous polyamines and gibberellic acid effects on peach (Pru-
nus persica L.) storability improvement, J. Food Sci. 65, 288–294, 2000. - Kakkar, R.K. and Rai, V.K., Plant polyamines in flowering and fruit ripening, Phy-
tochemistry, 33, 1281–1288, 1933. - Fedorov, N.I., Starukhin, F.N., Migranova, I.G., Isangulova, A.A., and Nikitina, V.S.,
Influence of mechanical damage of plants of Aconitum septentrionale Koelle on their
contents of lappaconitin, Rastit. Resur., 33, 62–67, 1997. - Stange, R.R, Jr. and McDonald, R.E., A simple and rapid method for determination
of lignin in plant tissues — Its usefulness in elicitor screening and comparison to the
thioglycolic acid method, Postharv. Biol. Technol., 15, 185–193, 1999. - Schroeder, C.A., Proc. 2nd World Avocado Congr., 1992, pp. 485–488.
- Skene, D.S., Wound healing in apple fruits: The anatomical response of ‘Cox’s Orange
Pippin’ at different stages of development, J. Hortic. Sci., 56, 145–153, 1981. - Bostock, R.M. and Stermer, B.A., Perspectives on wound healing in resistance to
pathogens, Annu. Rev. Phytopathol., 27, 343–371, 1989. - Spotts, R.A., Sanderson, P.G., Lennox, C.L., Sugar, D., and Cervantes, L.A., Wound-
ing, wound healing and staining of mature pear fruit, Postharv. Biol. Tech., 13, 27–36,
- Baudoin, A.B.A.M. and Eckert, J.W., Development of resistance against Geotrichum
candidum in lemon peel injuries, Phytopathology, 75, 174–179, 1985. - Knight, T.G., Klieber, A., and Sedgley, M., Structural basis of the rind disorder
oleocellosis in Washington navel orange (Citrus sinensis L. Osbeck), Ann. Bot., 90,
765–773, 2002. - Baritelle, A.L. and Hyde, G.M., Commodity conditioning to reduce impact bruising,
Postharv. Biol. Technol., 21, 331–339, 2001. - Patten, K.D. and Patterson, M.E., Fruit temperature effects on mechanical damage
of sweet cherries, J. Am. Soc. Hortic. Sci., 110, 215–219, 1985. - Crisoto, C.H., Garner, D., Doyle, J., and Day, K.R., Relationship between fruit
respiration, bruising susceptibility, and temperature in sweet cherries, HortScience,
28, 132–135, 1993. - Sanford, K.A., Lidster, P.D., McRae, K.B., Jackson, E.D., Lawrence, R., Stark, R.,
and Pragne, R.K., Lowbush blueberry quality in response to mechanical damage and
storage temperature, J. Am. Soc. Hortic. Sci., 116, 47–51, 1991.