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PMID: 22121247 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Phospholipases C and D modulate proline accumulation in Thellungiella halophila/salsuginea differently according to the severity of salt or hyperosmotic stress.

Plant & cell physiology ·Vol. 53 ·No. 1 ·2012-01-00 ·Pages 183-92

Ghars MA, Richard L, Lefebvre-De Vos D, Leprince AS, Parre E, Bordenave M, Abdelly C, Savouré A

Abstract

Proline accumulation is one of the most common responses of plants to environmental constraints. Thellungiella halophila/salsuginea, a model halophyte, accumulates high levels of proline in response to abiotic stress and in the absence of stress. Recently, lipid signaling pathways have been shown to be involved in the regulation of proline metabolism in Arabidopsis thaliana. Here we investigated the relationship between lipid signaling enzymes and the level of proline in T. salsuginea. Inhibition of phospholipase C (PLC) enzymes by the specific inhibitor U73122 demonstrated that proline accumulation is negatively controlled by PLCs in the absence of stress and under moderate salt stress (200 mM NaCl). The use of 1-butanol to divert some of the phospholipase D (PLD)-derived phosphatidic acid by transphosphatidylation revealed that PLDs exert a positive control on proline accumulation under severe stress (400 mM NaCl or 400 mM mannitol) but have no effect on its accumulation in non-stress conditions. This experimental evidence shows that positive and negative lipid regulatory components are involved in the fine regulation of proline metabolism. These signaling pathways in T. salsuginea are regulated in the opposite sense to those previously described in A. thaliana, revealing that common signaling components affect the physiology of closely related glycophyte and salt-tolerant plants differently.

MeSH Terms
1-Butanol/pharmacology Brassicaceae/drug effects,enzymology Estrenes/pharmacology Extracellular Space/drug effects,metabolism Lipid Metabolism/drug effects Mannitol/pharmacology Models, Biological Osmosis/drug effects Phospholipase D/metabolism Proline/metabolism Pyrrolidinones/pharmacology Signal Transduction/drug effects Sodium Chloride/pharmacology Stress, Physiological/drug effects Type C Phospholipases/metabolism
Chemicals
Estrenes Pyrrolidinones 1-(6-((3-methoxyestra-1,3,5(10)-trien-17-yl)amino)hexyl)-1H-pyrrole-2,5-dione Mannitol Sodium Chloride 1-Butanol Proline Type C Phospholipases Phospholipase D
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Ghars Mohamed Ali
UPMC Université Paris 06, UR5 EAC7180 CNRS, Physiologie Cellulaire et Moléculaire des Plantes, Paris, France.
Richard Luc
Lefebvre-De Vos Delphine
Leprince Anne-Sophie
Parre Elodie
Bordenave Marianne
Abdelly Chedly
Savouré Arnould
Article Info
Journal
Plant & cell physiology
Abbr.
Plant Cell Physiol
ISSN
1471-9053
Published
2012-01-00
Epub
2011-00-24
Pages
183-92
Language
English
Region
Japan
NLM ID
9430925
Subset
IM
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