International audienceThis article provides a comprehensive view on the existing knowledge related to adaptation to soil water deficit in maritime pine, a conifer species widely planted in the southwestern Europe. It synthesizes discoveries made in ecophysiology, quantitative and population genetics as well as in genomics, combining several layers of information at the genotypic, phenotypic and environmental levels. Particular focus is given to two major traits: water-use efficiency (WUE) and cavitation resistance (CR). The former is related the maintenance of productivity during periods of lower soil water availability, whereas the latter is tightly linked to survival during severe drought. The development of high throughput phenotypic tec...
[Background and Aims] It is widely accepted that hydraulic failure due to xylem embolism is a key fa...
Key Message : Needle anatomic plasticity enables fast-growing maritime pine trees to cope with water...
Key Message : Needle anatomic plasticity enables fast-growing maritime pine trees to cope with water...
International audienceThis article provides a comprehensive view on the existing knowledge related t...
This article provides a comprehensive view on the existing knowledge related to adaptation to soil w...
This article provides a comprehensive view on the existing knowledge related to adaptation to soil w...
This article provides a comprehensive view on the existing knowledge related to adaptation to soil w...
International audienceTo meet the increasing demand of wood biomass worldwide in the context of clim...
To meet the increasing demand of wood biomass worldwide in the context of climate change, developing...
Article n° e23476Background : Cavitation resistance to water stress-induced embolism determines plan...
Article n° e23476Background : Cavitation resistance to water stress-induced embolism determines plan...
- Resistance to cavitation is a major determinant of plant survival under severe drought and can be ...
- Resistance to cavitation is a major determinant of plant survival under severe drought and can be ...
- Resistance to cavitation is a major determinant of plant survival under severe drought and can be ...
- Resistance to cavitation is a major determinant of plant survival under severe drought and can be ...
[Background and Aims] It is widely accepted that hydraulic failure due to xylem embolism is a key fa...
Key Message : Needle anatomic plasticity enables fast-growing maritime pine trees to cope with water...
Key Message : Needle anatomic plasticity enables fast-growing maritime pine trees to cope with water...
International audienceThis article provides a comprehensive view on the existing knowledge related t...
This article provides a comprehensive view on the existing knowledge related to adaptation to soil w...
This article provides a comprehensive view on the existing knowledge related to adaptation to soil w...
This article provides a comprehensive view on the existing knowledge related to adaptation to soil w...
International audienceTo meet the increasing demand of wood biomass worldwide in the context of clim...
To meet the increasing demand of wood biomass worldwide in the context of climate change, developing...
Article n° e23476Background : Cavitation resistance to water stress-induced embolism determines plan...
Article n° e23476Background : Cavitation resistance to water stress-induced embolism determines plan...
- Resistance to cavitation is a major determinant of plant survival under severe drought and can be ...
- Resistance to cavitation is a major determinant of plant survival under severe drought and can be ...
- Resistance to cavitation is a major determinant of plant survival under severe drought and can be ...
- Resistance to cavitation is a major determinant of plant survival under severe drought and can be ...
[Background and Aims] It is widely accepted that hydraulic failure due to xylem embolism is a key fa...
Key Message : Needle anatomic plasticity enables fast-growing maritime pine trees to cope with water...
Key Message : Needle anatomic plasticity enables fast-growing maritime pine trees to cope with water...