Regulation of photosynthesis and stomatal and mesophyll conductance under water stress and recovery in olive trees: correlation with gene expression of carbonic anhydrase and aquaporins - INRAE - Institut national de recherche pour l’agriculture, l’alimentation et l’environnement
Article Dans Une Revue Journal of Experimental Botany Année : 2014

Regulation of photosynthesis and stomatal and mesophyll conductance under water stress and recovery in olive trees: correlation with gene expression of carbonic anhydrase and aquaporins

Résumé

The hypothesis that aquaporins and carbonic anhydrase (CA) are involved in the regulation of stomatal (g(s)) and mesophyll (g(m)) conductance to CO2 was tested in a short-term water-stress and recovery experiment in 5-year-old olive plants (Olea europaea) growing outdoors. The evolution of leaf gas exchange, chlorophyll fluorescence, and plant water status, and a quantitative analysis of photosynthesis limitations, were followed during water stress and recovery. These variables were correlated with gene expression of the aquaporins OePIP1.1 and OePIP2.1, and stromal CA. At mild stress and at the beginning of the recovery period, stomatal limitations prevailed, while the decline in g(m) accounted for up to 60% of photosynthesis limitations under severe water stress. However, g(m) was restored to control values shortly after rewatering, facilitating the recovery of the photosynthetic rate. CA was downregulated during water stress and upregulated after recovery. The use of structural equation modelling allowed us to conclude that both OePIP1.1 and OePIP2.1 expression could explain most of the variations observed for g(s) and g(m). CA expression also had a small but significant effect on g(m) in olive under water-stress conditions.

Dates et versions

hal-02632656 , version 1 (27-05-2020)

Identifiants

Citer

Alfonso Perez-Martin, Chiara Michelazzo, Jose Manuel Torres Ruiz, Jaume Flexas, Jose E. Fernandez, et al.. Regulation of photosynthesis and stomatal and mesophyll conductance under water stress and recovery in olive trees: correlation with gene expression of carbonic anhydrase and aquaporins. Journal of Experimental Botany, 2014, 65 (12), pp.3143-3156. ⟨10.1093/jxb/eru160⟩. ⟨hal-02632656⟩

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