The interactive effects of root-zone salinity and sunlight on leaf biochemistry, with special emphasis on antioxidant defences, were analysed in Olea europaea L. cv. Allora, during the summer period. Plants were grown outside under 15% (shade plants) or 100% sunlight (sun plants) and supplied with 0 or 125 mM NaCl. The following measurements were performed: (1) the contribution of ions and soluble carbohydrates to osmotic potentials; (2) the photosystem II (PSII) photochemistry and the photosynthetic pigment concentration; (3) the concentration and the tissue-specific distribution of leaf flavonoids; (4) the activity of antioxidant enzymes; and (5) the leaf oxidative damage. The concentrations of Na+ and Cl- were significantly greater in ...
This study was conducted to evaluate the effects of salt stress on photosynthetic capacity and proli...
Climate change consequences for agriculture involve an increase of saline soils which results in low...
The effect of high levels of natural light on leaf photo-synthesis in olive trees {Olea europaea L. ...
The interactive effects of root-zone salinity and sunlight on leaf biochemistry, with special emphas...
The interactive effects of root-zone salinity and sunlight on leaf biochemistry, with special emphas...
Key message All olive cultivars survived high salinity, yet, the question was how they orchestrated ...
The effects of water recovery on the activities of superoxide dismutase (SOD; EC 1.15.1.1), catalase...
The present study investigated the extent to which physiological and biochemical traits varied becau...
The effects of drought on the activities of superoxide dismutase (SOD), catalase (CAT), ascorbate pe...
In the face of climate change, water deficit and increasing soil salinity pose an even greater chall...
Olive trees (Olea europaea L.) are commonly grown in the Mediterranean basin and are able to resist ...
Background and Aims A major challenge in plant ecophysiology is understanding the effects of multipl...
BACKGROUND AND AIMS: A major challenge in plant ecophysiology is understanding the effects of multi...
Olive tree (Olea europaea L.) is an important crop in the Mediterranean Basin where drought and sali...
This study was conducted to evaluate the effects of salt stress on photosynthetic capacity and proli...
Climate change consequences for agriculture involve an increase of saline soils which results in low...
The effect of high levels of natural light on leaf photo-synthesis in olive trees {Olea europaea L. ...
The interactive effects of root-zone salinity and sunlight on leaf biochemistry, with special emphas...
The interactive effects of root-zone salinity and sunlight on leaf biochemistry, with special emphas...
Key message All olive cultivars survived high salinity, yet, the question was how they orchestrated ...
The effects of water recovery on the activities of superoxide dismutase (SOD; EC 1.15.1.1), catalase...
The present study investigated the extent to which physiological and biochemical traits varied becau...
The effects of drought on the activities of superoxide dismutase (SOD), catalase (CAT), ascorbate pe...
In the face of climate change, water deficit and increasing soil salinity pose an even greater chall...
Olive trees (Olea europaea L.) are commonly grown in the Mediterranean basin and are able to resist ...
Background and Aims A major challenge in plant ecophysiology is understanding the effects of multipl...
BACKGROUND AND AIMS: A major challenge in plant ecophysiology is understanding the effects of multi...
Olive tree (Olea europaea L.) is an important crop in the Mediterranean Basin where drought and sali...
This study was conducted to evaluate the effects of salt stress on photosynthetic capacity and proli...
Climate change consequences for agriculture involve an increase of saline soils which results in low...
The effect of high levels of natural light on leaf photo-synthesis in olive trees {Olea europaea L. ...