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Effect of water stress on growth, Na+ and K+ accumulation and water use efficiency in relation to osmotic adjustment in two populations of Atriplex halimus L.
Authors:JP Martìnez  JF Ledent  M Bajji  JM Kinet  S Lutts
Institution:(1) Unité de Biologie végétale, Institut des Sciences de la Vie, Université catholique de Louvain, 5 (Bte 13) Place Croix du Sud, B-1348 Louvain-la-Neuve, Belgium;(2) Present address: Laboratorio de Bioquímica, Departamento de Producción Agrícola Facultad de Ciencias Agronomicas, Casilla, 1004, Chili
Abstract:The effect of water stress on growth, Na+ and K+ accumulation and water utilization was investigated in plants of two populations of Atriplex halimus L. originating from Kairouan (Tunisia) and Tensift (Morocco). Water deficit was applied by withholding water for 22 days. All plants remained alive until the end of the treatment although growth was strongly reduced in both populations. Water stress decreased CO2 assimilation in saturating conditions, mainly in the population obtained from Kairouan, suggesting an impact of drought on the dark phase of photosynthesis, beside a decrease in stomatal conductance which was recorded mainly in the population obtained from Tensift. The two studied populations did not differ in their water consumption, as indicated by similar soil gravimetric water content and plant transpiration. However, water use efficiency increased under stress conditions in the population from Tensift but not in the population from Kairouan. Thelatter population displayed a larger capacity for osmotic adjustment. A drought-induced specific increase in Na+ concentration was also reported in both populations. It is concluded that in A. halimus, water stress resistance estimated in terms of biomass production, could be associated with higher WUE rather than with with a greater osmotic adjustment and that sodium may assume a specific physiological function in this xerohalophytic C4 species.
Keywords:Atriplex halimus  Drought  Osmotic adjustment  Sodium  Water use efficiency  Water stress
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