Polyamines Inhibit Biosynthesis of Ethylene in Higher Plant Tissue and Fruit Protoplasts
Akiva Apelbaum, Alan C. Burgoon, James D. Anderson, Morris Lieberman, Ruth Ben‐Arie, Autar K. Mattoo
Abstract
Akiva Apelbaum, Alan C. Burgoon, James D. Anderson, Morris Lieberman, Ruth Ben‐Arie, Autar K. Mattoo
Abstract
Ethylene production in apple fruit and protoplasts and in leaf tissue was inhibited by spermidine or spermine. These polyamines, as well as putrescine, inhibited auxin-induced ethylene production and the conversion of methionine and 1-aminocyclopropane-1-carboxylic acid to ethylene. Polyamines were more effective as inhibitors of ethylene synthesis at the early, rather than at the late, stages of fruit ripening. Ca(2+) in the incubation medium reduced the inhibitory effect caused by the amines. A possible mode of action by which polyamines inhibit ethylene production is discussed.
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Ethylene production in apple fruit and protoplasts and in leaf tissue was inhibited by spermidine or spermine. These polyamines, as well as putrescine, inhibited auxin-induced ethylene production and the conversion of methionine and 1-aminocyclopropane-1-carboxylic acid to ethylene. Polyamines were more effective as inhibitors of ethylene synthesis at the early, rather than at the late, stages of fruit ripening. Ca(2+) in the incubation medium reduced the inhibitory effect caused by the amines. A possible mode of action by which polyamines inhibit ethylene production is discussed.
Key concepts: Putrescine, Ethylene, Spermine, Spermidine, Ripening, Auxin, Polyamine, 1-Aminocyclopropane-1-carboxylic acid