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PMID: 11446994 Published · ppublish English Journal Article

Changes in polyamines, auxins and peroxidase activity during in vitro rooting of Fraxinus angustifolia shoots: an auxin-independent rooting model.

Tree physiology ·Vol. 21 ·No. 10 ·2001-07-00 ·Pages 655-63

Tonon G, Kevers C, Gaspar T

Abstract

Among shoots of Fraxinus angustifolia Vahl raised in vitro, 76% rooted after culture on root induction medium for 5 days in darkness followed by culture on root expression medium for 15 days in light. The addition of 20.7 microM indole-butyric acid (IBA) to the root induction medium did not significantly increase the rooting percentage (88%). Putrescine, spermidine, cyclohexylamine (CHA) and aminoguanidine (AG) enhanced rooting up to 100% (98.66% for AG), when applied during root induction in the absence of IBA, otherwise these compounds inhibited rooting, as did spermine and difluoromethylornithine (DFMO) + difluoromethylarginine (DFMA). The root induction phase was characterized by a temporary increase in endogenous free indole-acetic acid (IAA) and putrescine concentrations during root induction, whereas the root expression phase was characterized by increased peroxidase activity and low concentrations of polyamines. These changes were specifically associated with the rooting process and did not depend on the presence of exogenous IBA, because application of exogenous IBA enhanced the amount of IAA in the cuttings but did not affect rooting or the pattern of changes in polyamines and peroxidase. The effects of CHA, AG and DFMO + DFMA on endogenous concentrations of auxins and polyamines highlight the close relationship between the effects of IAA and putrescine in root induction and suggest that polyamine catabolism has an important role in root formation and elongation.

MeSH Terms
Biogenic Polyamines/physiology Cyclohexylamines/metabolism Eflornithine/metabolism Guanidines/metabolism In Vitro Techniques Indoleacetic Acids/metabolism,physiology Indoles/metabolism Models, Biological Oleaceae/physiology Peroxidase/physiology Plant Roots/growth & development,physiology Putrescine/physiology Spermidine/physiology Trees/physiology
Chemicals
Biogenic Polyamines Cyclohexylamines Guanidines Indoleacetic Acids Indoles indolebutyric acid indoleacetic acid Peroxidase pimagedine Spermidine Putrescine Eflornithine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Tonon G
Univ. di Bologna, Dipartimento di Colture Arboree, Via F. Re 6, IT 40126 Bologna, Italy.
Kevers C
Gaspar T
Article Info
Journal
Tree physiology
Abbr.
Tree Physiol
ISSN
0829-318X
Published
2001-07-00
Pages
655-63
Language
English
Region
Canada
NLM ID
100955338
Subset
IM
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