Two deciduous forest ecosystems, one dominated by Fagus sylvatica and a mixed one with Quercus cerris and Quercus frainetto, were monitored from an ecophysiological perspective during a five-year period, in order to assess seasonal fluctuations, establish links between phenology and ecophysiology, and reveal climatic controls. Field measurements of leaf area index (LAI), chlorophyll content, leaf specific mass (LSM), water potential (Ψ) and leaf photosynthesis (Aleaf) were performed approximately on a monthly basis. LAI, chlorophylls and LSM fluctuations followed a recurrent pattern yearly, with increasing values during spring leaf burst and expansion, relatively stable values during summer and decreasing values during autumn senescence. Ho...
The timing of leaf phenophases greatly influences the functioning of trees. Phenological traits are ...
Aim Species with deciduous and evergreen leaf habits typically differ in leaf life span (LLS). Yet q...
Aim: Species with deciduous and evergreen leaf habits typically differ in leaf life span (LLS). Yet ...
Two deciduous forest ecosystems, one dominated by Fagus sylvatica and a mixed one with Ouercus cerri...
Understanding the environmental and biotic drivers of respiration at the ecosystem level is a prereq...
Shifts in plant phenology can have direct impacts on community and ecosystem-level processes as well...
Monitoring the phenological responses of deciduous forests to climate is important, due to the incre...
Determination of the ecophysiological characteristics of deciduous trees in the recreational areas a...
While changes in spring phenological events due to global warming have been widely documented, chang...
Monitoring the phenological responses of deciduous forests to climate is important, due to the incre...
Air temperature is effective meteorological parameter in overall leaf phenology of deciduous tempera...
International audienceTree phenology is a major driver of forest–atmosphere mass and energy exchange...
Summary: 1. Leaf respiratory temperature responses and general leaf properties of Quercus rubra were...
While commonplace in other parts of the world, long-term and ongoing observations of the phenology o...
The timing of leaf phenophases greatly influences the functioning of trees. Phenological traits are ...
Aim Species with deciduous and evergreen leaf habits typically differ in leaf life span (LLS). Yet q...
Aim: Species with deciduous and evergreen leaf habits typically differ in leaf life span (LLS). Yet ...
Two deciduous forest ecosystems, one dominated by Fagus sylvatica and a mixed one with Ouercus cerri...
Understanding the environmental and biotic drivers of respiration at the ecosystem level is a prereq...
Shifts in plant phenology can have direct impacts on community and ecosystem-level processes as well...
Monitoring the phenological responses of deciduous forests to climate is important, due to the incre...
Determination of the ecophysiological characteristics of deciduous trees in the recreational areas a...
While changes in spring phenological events due to global warming have been widely documented, chang...
Monitoring the phenological responses of deciduous forests to climate is important, due to the incre...
Air temperature is effective meteorological parameter in overall leaf phenology of deciduous tempera...
International audienceTree phenology is a major driver of forest–atmosphere mass and energy exchange...
Summary: 1. Leaf respiratory temperature responses and general leaf properties of Quercus rubra were...
While commonplace in other parts of the world, long-term and ongoing observations of the phenology o...
The timing of leaf phenophases greatly influences the functioning of trees. Phenological traits are ...
Aim Species with deciduous and evergreen leaf habits typically differ in leaf life span (LLS). Yet q...
Aim: Species with deciduous and evergreen leaf habits typically differ in leaf life span (LLS). Yet ...