Agriculture Reference
In-Depth Information
Cona, A., Rea, G., Angelini, R., Federico, R., and Tavladoraki, P. 2006. Functions of amine oxidases in plant
development and defence. Trends Plant Sci., 11: 80-88.
Cookson, P.J., Kiano, J.W., Shipton, C.A., Fraser, P.D., Romer, S., Schuch, W., Bramley, P.M., and Pyke, K.A. 2003.
Increases in cell elongation, plastid compartment size and phytoene synthase activity underlie the phenotype
of the high pigment-1 mutant of tomato. Planta, 217: 896-903.
Datta, N., Schell, M.B., and Roux, S.J. 1987. Spermine stimulation of a nuclear NII kinase from pea plumules and
its role in the phosphorylation of a nuclear polypeptide. Plant Physiol., 84: 1397-1401.
Del-Duca, S., Beninati, S., and Serafini-Fracassini, D. 1995. Polyamines in chloroplasts: identification of their
glutamyl and acetyl derivatives. Biochem. J., 305: 233-237.
Dibble, A.R.G., Davies, P.J., and Mutschler, M.A. 1988. Polyamine content of long-keeping alcobaca tomato fruit.
Plant Physiol., 86: 338-340.
Dios, P., de Matilla, A.J., and Gallardo, M. 2006. Flower fertilization and fruit development prompt changes in
free polyamine s and ethylene in damson plum ( Prunus insititia L.). J. Plant Physiol., 163: 86-97.
Drolet, G., Dumbroff, E.B., Legge, R.L., and Thompson, J.E. 1986. Radical scavenging properties of polyamines.
Phytochemistry, 25: 367-371.
Egea-Cortines, M., Cohen, E., Arad (Malis), S., Bagni, N., and Mizrahi, Y. 1993. Polyamine levels in pollinated
and auxin-induced fruit of the tomato ( Lycopersicon esculentum ) during development. Physiol. Plant., 87:
14-20.
Egea-Cortines, M. and Mizrahi, Y. 1991. Polyamines in cell division, fruit set and development and seed germi-
nation. In: Biochemistry and Physiology of Polyamines in Plants (eds, R.D. Slocum and H.E. Flores), CRC
Press, Boca Raton, FL.
Escribano, M.I. and Merodio, C. 1994. Relevance of polyamine levels in cherimoya ( Annona cherimola Mill.)
fruit ripening, Physiol. Plant., 73: 201-205.
Evans, P.T. and Malmberg, R.L. 1989. Do polyamines have roles in plant development? Annu. Rev. Plant Physiol.
Plant Mol. Biol., 40: 235-269.
Even-Chen, Z., Mattoo, A.K., and Goren, R. 1982. Inhibition of ethylene biosynthesis by aminoethoxyvinylglycine
and bypolyamines shunts label from 3,4-[14C] [carbon isotope] methionine into spermidine in aged orange
peel discs [Citrus sinensis]. Plant Physiol., 69: 385-388.
Fluhr, R. and Mattoo, A.K. 1996. Ethylene-biosynthesis and perception. Crit. Rev. Plant Sci., 15: 479-523.
Fos, M., Proano, K., Alabadı, D., Nuez, F., Carbonell, J., and Garcıa-Martınez, J.L. 2003. Polyamine metabolism
is altered in unpollinated parthenocarpic pat-2 tomato ovaries. Plant Physiol., 131: 359-366.
Galston, A.W. and Kaur-Sawhney, R. 1987. Polyamines and senescence in plants. In: Plant Senescence: Its
Biochemistry and Physiology (eds, W.W. Thomson, E.A. Nothnagel, and R.C. Huffaker), American Society
of Plant Physiologists, Rockville, MD, pp. 167-181.
Galston, A.W. and Kaur-Sawhney, R. 1990. Polyamines in plant physiology. Plant Physiol., 94: 406-410.
Galston, A.W. and Kaur-Sawhney, R. 1995. Polyamines as endogenous growth regulators. In: Plant Hormones:
Physiology, Biochemistry, and Molecular Biology (ed., P.J. Davies), Kluwer Academic Publishers, Norwell,
MA, pp. 158-178.
Gemperlova, L., Novakova, M., Vakova, R., Eder, J., and Cvikrova, M. 2006. Diurnal changes in polyamine
content, arginine and ornithine decarboxylase, and diamine oxidase in tobacco leaves. J. Exp. Bot., 57: 1413-
1421.
Giovannoni, J. 2004. Genetic regulation of fruit development and ripening. Plant Cell, 16: S170-S180.
Groppa, M.D., Tomaro, M.L., and Benavides, M.P. 2001. Polyamines as protectors against cadmium or copper-
induced oxidative damage in sunflower leaf discs. Plant Sci., 161: 481-488.
Hanfrey, C., Sommer, S., Mayer, M.J., Burtin, D., and Michael, A.J. 2001. Arabidopsis polyamine biosynthesis:
absence of ornithine decarboxylase and the mechanism of arginine decarboxylase activity. Plant J., 27: 551-
560.
Hibi, N., Higashiguchi, S., Hashimoto, T., and Yamada, Y. 1994. Gene-expression in tobacco low-nicotine mutants.
Plant Cell, 6: 723-735.
Hong, S.J. and Lee, S.K. 1996. Changes in endogenous putrescine and the relationship to the ripening of tomato
fruits. J. Korean Soc. Hort. Sci., 37: 369-373.
Hummel, I., Gouesbet, G., Amrani, A.E., Aınouche, A., and Couee, I. 2004. Characterization of the two arginine
decarboxylase (polyamine biosynthesis) paralogues of the endemic subantarctic cruciferous species Pringlea
antiscorbutica and analysis of their differential expression during development and response to environmental
stress. Gene, 342: 199-209.
Igarashi, K. and Kashiwagi, K. 2000. Polyamines: mysterious modulators of cellular functions (review). Biochem.
Biophys. Res. Commun., 271: 559-564.
Search WWH ::




Custom Search