Differential effects of two phospholipase D inhibitors, 1-butanol and N-acylethanolamine, on in vivo cytoskeletal organization and Arabidopsis seedling growth
- 12 December 2005
- journal article
- Published by Springer Nature in Protoplasma
- Vol. 226 (3-4), 109-123
- https://doi.org/10.1007/s00709-005-0124-4
Abstract
Plant development is regulated by numerous chemicals derived from a multitude of metabolic pathways. However, we know very little about the biological effects and functions of many of these metabolites in the cell. N-Acylethanolamines (NAEs) are a group of lipid mediators that play important roles in mammalian physiology. Despite the intriguing similarities between animals and plants in NAE metabolism and perception, not much is known about the precise function of these metabolites in plant physiology. In plants, NAEs have been shown to inhibit phospholipase Dα (PLDα) activity, interfere with abscisic acid-induced stomatal closure, and retard Arabidopsis seedling development. 1-Butanol, an antagonist of PLD-dependent phosphatidic acid production, was reported to induce defects in Arabidopsis seedling development that were somewhat similar to effects induced by elevated levels of NAE. This raised the possibility that the impact of NAE on seedling growth could be mediated in part via its influence on PLD activity. To begin to address this possibility, we conducted a detailed, comparative analysis of the effects of 1-butanol and N-lauroylethanolamine (NAE 12:0) on Arabidopsis root cell division, in vivo cytoskeletal organization, seed germination, and seedling growth. Although both NAE 12:0 and 1-butanol induced profound cytoskeletal and morphological alterations in seedlings, there were distinct differences in their overall effects. 1-Butanol induced more pronounced modifications in cytoskeletal organization, seedling growth, and cell division at concentrations severalfold higher than NAE 12:0. We propose that these compounds mediate their differential effects on cellular organization and seedling growth, in part through the differential modulation of specific PLD isoforms.Keywords
This publication has 57 references indexed in Scilit:
- Crosstalk between protein kinase A and C regulates phospholipase D and F-actin formation during sperm capacitationDevelopmental Biology, 2003
- Modulation of Phospholipid Signaling by GLABRA2 in Root-Hair Pattern FormationScience, 2003
- Different modulation of phospholipase A2 activity by saturated and monounsaturated N-acylethanolaminesJournal of Lipid Research, 2003
- N-Acylethanolamine Signaling in Tobacco Is Mediated by a Membrane-Associated, High-Affinity Binding ProteinPlant Physiology, 2003
- Plant-derived, synthetic and endogenous cannabinoids as neuroprotective agentsBrain Research Reviews, 2003
- Inhibition of Phospholipase Dα byN-AcylethanolaminesPlant Physiology, 2002
- Reduced expression of α‐tubulin genes in Arabidopsis thaliana specifically affects root growth and morphology, root hair development and root gravitropismThe Plant Journal, 2001
- Abscisic Acid-Induced Actin Reorganization in Guard Cells of Dayflower Is Mediated by Cytosolic Calcium Levels and by Protein Kinase and Protein Phosphatase ActivitiesPlant Physiology, 2001
- SIGNALING TO THE ACTIN CYTOSKELETON IN PLANTSAnnual Review of Plant Physiology and Plant Molecular Biology, 2000
- Visualization of microtubules in living cells of transgenicArabidopsis thalianaProtoplasma, 1999