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Ethylene biosynthesis


, : Ethylene biosynthesis. Briggs, W R [Editor] Annual Review of Plant Physiology and Plant Molecular Biology : 283-307


Accession: 002373744

DOI: 10.1146/annurev.pp.44.060193.001435

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Related references

Hogsett W.E.; Raba R.M.; Tingey D.T., 1981: Biosynthesis of stress ethylene in soybean glycine max cultivar dare seedlings similarities to endogenous ethylene biosynthesis. The similarity of stress ethylene biosynthesis in whole plants to endogenous ethylene biosynthesis was investigated using 2 inhibitors of ethylene biosynthesis, aminoethoxyvinylglycine (AVG) and cobalt chloride (Co2+); and the intermediates, methi...

Hogsett, W.E.; Raba, R.M.; Tingey, D.T., 1981: Biosynthesis of stress ethylene in soybean seedlings: similarities to endogenous ethylene biosynthesis. The similarity of stress ethylene biosynthesis in whole plants to endogenous ethylene biosynthesis was investigated using 2 inhibitors of ethylene biosynthesis, aminoethoxyvinylglycine (AVG) and cobalt chloride, and the intermediates, methionine,...

Cardinale, F.C.; Jennings, J.C.; Anderson, J.D., 1995: Use of the ethylene-action inhibitor, 1-methylcyclopropene, to study the role of ethylene in elicitor-induced ethylene biosynthesis in tomato leaves. Plant Physiology (Rockville) 108(2 SUPPL ): 140

Rikin A.; Anderson J.D., 1986: Rhythmicity in ethylene action circadian stimulation of ethylene biosynthesis by ethylene in phaseolus vulgaris. Plant Physiology (Rockville) 80(4 SUPPL): 27

Zhang, Z.; Zhang, H.; Quan, R.; Wang, X-Chen.; Huang, R., 2009: Transcriptional regulation of the ethylene response factor LeERF2 in the expression of ethylene biosynthesis genes controls ethylene production in tomato and tobacco. Fine-tuning of ethylene production plays an important role in developmental processes and in plant responses to stress, but very little is known about the regulation of ethylene response factor (ERF) proteins in ethylene biosynthesis genes and eth...

Mapson, L.W.; Self, R.; Wardale, D.A., 1969: Biosynthesis of ethylene methanesulfinic acid as cofactor in the enzymic formation of ethylene from methional. Biochemical Journal 111(4): 413-418

Mapson, L.W.; Self, R.; Wardale, D.A., 1969: Biosynthesis of ethylene. Methanesulphinic acid as cofactor in the enzymic formation of ethylene from methional. The second cofactor in the peroxidase-catalysed formation of ethylene from methional in cauliflower extracts was identified as methanesulphinic acid. The progress of the reaction is described and the activities of related sulphinic acids were dete...

Watanabe, T.; Kondo, N., 1976: Ethylene evolution in marine algae and a proteinaceous inhibitor of ethylene biosynthesis from red alga. Fronds of marine algae, especially green alga Codium latum and red alga Porphyra tenera evolved a quantity of ethylene when IAA was exogenously applied, while brown alga Padina arborescens evolved only a little. Propionic acid, when added together...

Woeste, K.; Kieber, J., 1995: Temporal and spatial regulation of ethylene biosynthesis in Arabidopsis ethylene overproducing mutants. Journal of Cellular Biochemistry Supplement 0(21A): 484

Gupta K.; Anderson J.D., 1989: Influence of temperature on potentiation of cellulysin induced ethylene biosynthesis by ethylene. The role temperature plays during ethylene pretreatment on subsequent induction of ethylene biosyntheses by Cellulysin or by a partially purifed ethylene inducing factor (EIF) from Cellulysin in tobacco (Nicotiana tabacum L., cv. Xanthi) leadf dis...