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Postharvest Biology and Technology of Fruits, Vegetables, and Flowers

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338 POSTHARVEST BIOLOGY & TECHNOLOGY OF FRUITS, VEGETABLES, & FLOWERS<br />

Mirdehghan, S.H., Rahemi, M., Serrano, M., Guillén, F., Martínez-Romero, D., <strong>and</strong> Valero, D. 2007b. The application<br />

<strong>of</strong> polymines by pressure or Immersion as a tool to maintain functional properties in stored pomegranate<br />

arils. Agric Food Chem., 55: 755–760.<br />

Miyazaki, J.H. <strong>and</strong> Yang, S.F. 1987. The methionine salvage pathway in relation to ethylene <strong>and</strong> polyamine<br />

biosynthesis. Physiol. Plant., 69: 366–370.<br />

Mizrahi, Y., Applewhite, P.B., <strong>and</strong> Galston, A.W. 1989. Polyamine binding to proteins in oat <strong>and</strong> Petunia protoplasts.<br />

Plant Physiol., 91: 738–743.<br />

Mora, O.F., Tanabe, K., Itai, A., Tamura, F., <strong>and</strong> Itamura, H. 2005. Relationship between endogenous free polyamine<br />

content <strong>and</strong> ethylene evolution during fruit growth <strong>and</strong> ripening <strong>of</strong> Japanese pear (Pyrus pyrifolia Nakai). J.<br />

Jpn. Soc. Hort. Sci., 74: 221–227.<br />

Morgan, D.M. 1987. Oxidized polyamines <strong>and</strong> the growth <strong>of</strong> human vascular endothelial cells. Prevention <strong>of</strong><br />

cytotoxic effects by selective acetylation. Biochem. J., 242: 347–352.<br />

Morilla, A., García, J.M., <strong>and</strong> Albi, M.A. 1996. Free polyamine contents <strong>and</strong> the decarboxylase activities during<br />

development <strong>and</strong> ripening. J. Agric. Food Chem., 44: 2608–2611.<br />

Oeller, P.W., Wong, L.M., Taylor, L.P., Pike, D.A., <strong>and</strong> Theologis, A. 1991. Reversible inhibition <strong>of</strong> tomato fruit<br />

senescence by antisense 1-aminocyclopropane-1-carboxylate synthase. Science, 254: 427–439.<br />

P<strong>and</strong>ey, S., Ranade, S.A., Nagar, P.K., <strong>and</strong> Kumar, N. 2000 Role <strong>of</strong> polyamines <strong>and</strong> ethylene as modulators <strong>of</strong><br />

plant senescence. J. Biosci., 25: 291–299.<br />

Perezamador, M.A., Carbonell, J., Navarro, J.L., Moritz, T., Beale, M.H., Lewis, M.J., <strong>and</strong> Hedden, P. 1996. N-4-<br />

hexanoylspermidine, a new polyamine-related compound that accumulates during ovary <strong>and</strong> petal senescence<br />

in pea. Plant Physiol., 110: 1177–1186.<br />

Perez-Amador, M.A., Leon, J., Green, P.J., <strong>and</strong> Carbonell, J. 2002 Induction <strong>of</strong> the arginine decarboxylase ADC2<br />

gene provides evidence for the involvement <strong>of</strong> polyamines in the wound response in Arabidopsis. Plant Physiol.,<br />

130: 1454–1463.<br />

Perez-Vicente, A., Martínez-Romero, D., Carbonell, A., Serrano, M., Riquelme, F., Guillen, F., <strong>and</strong> Valero, D.<br />

2002. Role <strong>of</strong> polyamines in extending shelf life <strong>and</strong> the reduction <strong>of</strong> mechanical damage during plum (Prunus<br />

salicina Lindl.) storage. <strong>Postharvest</strong> Biol. Technol., 25: 25–32.<br />

Petkou, I.T., Pritsa, T.S., <strong>and</strong> Sfakiotakis, E.M. 2004. Effects <strong>of</strong> polyamines on ethylene production, respiration<br />

<strong>and</strong> ripening <strong>of</strong> kiwifruit. J. Hort. Sci. Biotechnol., 79: 977–980.<br />

Picton, S., Barton, S.L., Bouzayen, M., Hamilton, A.J., <strong>and</strong> Grierson, D. 1993. Altered fruit ripening <strong>and</strong> leaf<br />

senescence in tomatoes expressing an antisense ethylene-forming enzyme transgene. Plant J., 3: 469–481.<br />

Ponappa, T. <strong>and</strong> Miller, A.R. 1996. Polyamines in normal <strong>and</strong> auxin-induced strawberry fruit development. Physiol.<br />

Plant., 98: 447–454.<br />

Ponappa, T., Scheerens, J.C., <strong>and</strong> Miller, A.R. 1993. Vacuum infiltration <strong>of</strong> polyamines increases firmness <strong>of</strong><br />

strawberries slices under various storage conditions. J. Food Sci., 58: 361–364.<br />

Popovic, R.B., Kyle, D.J., Cohen, A.S., <strong>and</strong> Zalik, S. 1989. Stabilization <strong>of</strong> thylakoid membranes by spermine<br />

during stress induced senescence <strong>of</strong> barley leaf discs. Plant Physiol., 64: 721–724.<br />

Pritsa, T.S. <strong>and</strong> Voyiatzis, D.G. 2004. Seasonal changes in polyamine content <strong>of</strong> vegetative <strong>and</strong> reproductive<br />

olive organs in relation to. oral initiation, anthesis, <strong>and</strong> fruit development. Aust. J. Agric. Res., 55: 1039–<br />

1046.<br />

Raspaud, E., Chaperon, I., Leforestier, A., <strong>and</strong> Livolant, F. 1999. Spermine-induced aggregation <strong>of</strong> DNA, nucleosome,<br />

<strong>and</strong> chromatin. Biophys. J., 77: 1547–1555.<br />

Rastogi, R. <strong>and</strong> Davies, P.J. 1991. Polyamine metabolism in ripening tomato fruit. II. Polyamine metabolism <strong>and</strong><br />

synthesis in relation to enhanced putrescine content <strong>and</strong> storage life <strong>of</strong> alc tomato fruit. Plant Physiol., 95:<br />

41–45.<br />

Rea, G., de Pinto, M.C., Tavazza, R., Biondi, S., Gobbi, V., Ferrante, P., De Gara, L., Federico, R., Angelini, R.,<br />

<strong>and</strong> Tavladoraki, P. 2004. Ectopic expression <strong>of</strong> maize polyamine oxidase <strong>and</strong> pea copper amine oxidase in<br />

the cell wall <strong>of</strong> tobacco plants. Plant Physiol., 134: 1414–1426.<br />

Rifai, L.A., Koussa, T., Fassouane, A., Broquedis, M., <strong>and</strong> Dubos, B. 2004. Effects <strong>of</strong> eutypiosis on free <strong>and</strong><br />

conjugated polyamines content in internodes <strong>of</strong> grapevine (Vitis vinifera L. cv. Cabernet Sauvignon) during<br />

their active phase <strong>of</strong> growth. J. Int. des Sci. de la Vigne et du Vin, 38: 155–162.<br />

Roberts, D.R., Walker, M.A., Thompson, J.E., <strong>and</strong> Dumbr<strong>of</strong>f, E.B. 1984. The effects <strong>of</strong> inhibitors <strong>of</strong> polyamine<br />

<strong>and</strong> ethylene biosynthesis on senescence, ethylene production <strong>and</strong> polyamine levels in cut carnation flowers<br />

(Dianthus caryophyllus). Plant Cell Physiol., 25: 315–322.<br />

Rodríguez, S.C., López, B., <strong>and</strong> Chaves, A.R. 1999. Changes in polyamines <strong>and</strong> ethylene during the development<br />

<strong>and</strong> ripening <strong>of</strong> eggplant fruits (Solanum melongena). J. Agric. Food Chem., 47: 1431–1434.

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