A conceptual model was tested for explaining environmental and physiological effects on leaf gas exchange in the deciduous dry tropical woodland tree Boswellia papyrifera (Del.) Hochst. For this species we aimed at (i) understanding diurnal patterns in leaf gas exchange, (ii) exploring cause–effect relationships among external environment, internal physiology and leaf gas exchange, and (iii) exploring site differences in leaf gas exchange in response to environmental variables. Diurnal courses in gas exchange, underlying physiological traits and environmental variables were measured for 90 trees on consecutive days at two contrasting areas, one at high and the other at low altitude. Assimilation was highest in the morning and slightly decre...
Seasonal and diurnal trends in carbon assimilation, stomatal conductance and leaf water potential we...
Photoassimilate distribution inside leaves is less studied than photosynthesis, and yet the topic is...
Seasonal variations in environmental conditions influence the functioning of the whole ecosystem of ...
Gas exchange (CO$\sb2$ and water vapor) is one of the most useful approaches to study environmental ...
Changes in net carbon assimilation and water status were studied during leaf development in the deci...
Seasonal trends in pre-dawn leaf water potential and morning and afternoon rates of light-saturated ...
Seasonal trends in pre-dawn leaf water potential and morning and afternoon rates of light-saturated ...
In order to determine how environmental and physiological factors affect leaf gas exchange in a 9-ye...
Diurnal and seasonal patterns of leaf gas exchange and water relations were examined in tree species...
Diurnal and seasonal patterns of leaf gas exchange and water relations were examined in tree species...
AbstractLeaf gas exchange characteristics play a key role in carbon sequestration and water balance ...
Summary To identify environmental and biological drivers of nocturnal vapour exchange, we quantified...
Seasonal and diurnal trends in carbon assimilation, stomatal conductance and leaf water potential we...
Field studies of gas exchange of Populus deltoides, Prosopis juliflora and Acacia auriculiformis sho...
Seasonal variations in environmental conditions influence the functioning of the whole ecosystem of ...
Seasonal and diurnal trends in carbon assimilation, stomatal conductance and leaf water potential we...
Photoassimilate distribution inside leaves is less studied than photosynthesis, and yet the topic is...
Seasonal variations in environmental conditions influence the functioning of the whole ecosystem of ...
Gas exchange (CO$\sb2$ and water vapor) is one of the most useful approaches to study environmental ...
Changes in net carbon assimilation and water status were studied during leaf development in the deci...
Seasonal trends in pre-dawn leaf water potential and morning and afternoon rates of light-saturated ...
Seasonal trends in pre-dawn leaf water potential and morning and afternoon rates of light-saturated ...
In order to determine how environmental and physiological factors affect leaf gas exchange in a 9-ye...
Diurnal and seasonal patterns of leaf gas exchange and water relations were examined in tree species...
Diurnal and seasonal patterns of leaf gas exchange and water relations were examined in tree species...
AbstractLeaf gas exchange characteristics play a key role in carbon sequestration and water balance ...
Summary To identify environmental and biological drivers of nocturnal vapour exchange, we quantified...
Seasonal and diurnal trends in carbon assimilation, stomatal conductance and leaf water potential we...
Field studies of gas exchange of Populus deltoides, Prosopis juliflora and Acacia auriculiformis sho...
Seasonal variations in environmental conditions influence the functioning of the whole ecosystem of ...
Seasonal and diurnal trends in carbon assimilation, stomatal conductance and leaf water potential we...
Photoassimilate distribution inside leaves is less studied than photosynthesis, and yet the topic is...
Seasonal variations in environmental conditions influence the functioning of the whole ecosystem of ...