Xu Z, Chang J, Zhou J, Shi Y, Chen H, Han L
Foods. 2023; 12(12).
PMID: 37372558
PMC: 10297285.
DOI: 10.3390/foods12122347.
Hummel I, Bourdais G, Gouesbet G, Couee I, Malmberg R, El Amrani A
New Phytol. 2021; 163(3):519-531.
PMID: 33873735
DOI: 10.1111/j.1469-8137.2004.01128.x.
Cohen E, Kende H
Planta. 2013; 169(4):498-504.
PMID: 24232756
DOI: 10.1007/BF00392098.
Maki H, Ando S, Kodama H, Komamine A
Plant Physiol. 1991; 96(4):1008-13.
PMID: 16668290
PMC: 1080885.
DOI: 10.1104/pp.96.4.1008.
Fallon K, Phillips R
Plant Physiol. 1988; 88(1):224-7.
PMID: 16666271
PMC: 1055553.
DOI: 10.1104/pp.88.1.224.
Interrelationship of Polyamine and Ethylene Biosynthesis during Avocado Fruit Development and Ripening.
Kushad M, Yelenosky G, Knight R
Plant Physiol. 1988; 87(2):463-7.
PMID: 16666165
PMC: 1054775.
DOI: 10.1104/pp.87.2.463.
Polyamine content of long-keeping alcobaca tomato fruit.
Dibble A, Davies P, Mutschler M
Plant Physiol. 1988; 86(2):338-40.
PMID: 16665907
PMC: 1054483.
DOI: 10.1104/pp.86.2.338.
Changes in Amines and Biosynthetic Enzyme Activities in p-Fluorophenylalanine Resistant and Wild Type Tobacco Cell Cultures.
Walker M, Ellis B, Dumbroff E, Downer R, Martin R
Plant Physiol. 1986; 80(4):825-8.
PMID: 16664725
PMC: 1075213.
DOI: 10.1104/pp.80.4.825.
Effect of photoperiod on polyamine metabolism in apical buds of g2 peas in relation to the induction of apical senescence.
Smith M, Davies P
Plant Physiol. 1985; 79(2):400-5.
PMID: 16664421
PMC: 1074896.
DOI: 10.1104/pp.79.2.400.
Partial purification and characterization of arginine decarboxylase from avocado fruit, a thermostable enzyme.
Winer L, Vinkler C, Apelbaum A
Plant Physiol. 1984; 76(1):233-7.
PMID: 16663805
PMC: 1064262.
DOI: 10.1104/pp.76.1.233.
Polyamine Biosynthetic Enzymes in the Cell Cycle of Chlorella: Correlation between Ornithine Decarboxylase and DNA Synthesis at Different Light Intensities.
Cohen E, Arad S, Heimer Y, Mizrahi Y
Plant Physiol. 1984; 74(2):385-8.
PMID: 16663427
PMC: 1066687.
DOI: 10.1104/pp.74.2.385.
Inhibition by polyamines of macromolecular synthesis and its implication for ethylene production and senescence processes.
Apelbaum A, Icekson I, Burgoon A, Lieberman M
Plant Physiol. 1982; 70(4):1221-3.
PMID: 16662642
PMC: 1065854.
DOI: 10.1104/pp.70.4.1221.
Polyamines and root formation in mung bean hypocotyl cuttings : I. Effects of exogenous compounds and changes in endogenous polyamine content.
Friedman R, Altman A, Bachrach U
Plant Physiol. 1982; 70(3):844-8.
PMID: 16662586
PMC: 1065781.
DOI: 10.1104/pp.70.3.844.
Ornithine decarboxylase and arginine decarboxylase activities in meristematic tissues of tomato and potato plants.
Cohen E, Heimer Y, Mizrahi Y
Plant Physiol. 1982; 70(2):544-6.
PMID: 16662531
PMC: 1067185.
DOI: 10.1104/pp.70.2.544.
Participation of ornithine decarboxylase in early stages of tomato fruit development.
Cohen E, Arad S, Heimer Y, Mizrahi Y
Plant Physiol. 1982; 70(2):540-3.
PMID: 16662530
PMC: 1067184.
DOI: 10.1104/pp.70.2.540.
Arginine and ornithine decarboxylases, the polyamine biosynthetic enzymes of mung bean seedlings.
Altman A, Friedman R, Levin N
Plant Physiol. 1982; 69(4):876-9.
PMID: 16662312
PMC: 426321.
DOI: 10.1104/pp.69.4.876.
Relation of polyamine biosynthesis to the initiation of sprouting in potato tubers.
Kaur-Sawhney R, Shih L, Galston A
Plant Physiol. 1982; 69(2):411-5.
PMID: 16662219
PMC: 426220.
DOI: 10.1104/pp.69.2.411.
Relation of polyamine synthesis and titer to aging and senescence in oat leaves.
Kaur-Sawhney R, Shih L, Flores H, Galston A
Plant Physiol. 1982; 69(2):405-10.
PMID: 16662218
PMC: 426219.
DOI: 10.1104/pp.69.2.405.
Polyamine metabolism is altered in unpollinated parthenocarpic pat-2 tomato ovaries.
Fos M, Proano K, Alabadi D, Nuez F, Carbonell J, Garcia-Martinez J
Plant Physiol. 2003; 131(1):359-66.
PMID: 12529543
PMC: 166815.
DOI: 10.1104/pp.013037.
Changes in polyamine biosynthesis associated with postfertilization growth and development in tobacco ovary tissues.
Slocum R, Galston A
Plant Physiol. 1985; 79:336-43.
PMID: 11540835
PMC: 1074885.
DOI: 10.1104/pp.79.2.336.