Are ABA, ethylene or their interaction involved in the response of leaf growth to soil water deficit? An analysis using naturally occurring variation or genetic transformation of ABA production in maize
Anne-Sophie Voisin(Laboratoire d'Ecophysiologie des Plantes sous Stress environnementaux), Bertrand Muller(Centre de Coopération Internationale en Recherche Agronomique pour le Développement), François Tardieu(Laboratoire d'Ecophysiologie des Plantes sous Stress environnementaux), Elise Redondo(Biogemma (France)), Gaëlle Rolland(Université de Montpellier), Beat Reidy(Département Santé des Plantes et Environnement), Denise Gerentes(Biogemma (France))
Cited by 73
Related Papers
PHENOPSIS, an automated platform for reproducible phenotyping of plant responses to soil water deficit in <i>Arabidopsis thaliana</i> permitted the identification of an accession with low sensitivity to soil water deficit
|New Phytologist|2005|537
Arabidopsis Plants Acclimate to Water Deficit at Low Cost through Changes of Carbon Usage: An Integrated Perspective Using Growth, Metabolite, Enzyme, and Gene Expression Analysis
|PLANT PHYSIOLOGY|2010|447
Non-structural carbohydrates in woody plants compared among laboratories
|Tree Physiology|2015|244
Control of Leaf Expansion: A Developmental Switch from Metabolics to Hydraulics
|PLANT PHYSIOLOGY|2011|183