DEFORESTATION and logging transform more forest in eastern and southern Amazonia than in any other region of the world1-3. This forest alteration affects regional hydrology4-11 and the global carbon cycle12-14, but current analyses of these effects neglect an important deep-soil link between the water and carbon cycles. Using rainfall data, satellite imagery and field studies, we estimate here that half of the closed forests of Brazilian Amazonia depend on deep root systems to maintain green canopies during the dry season. Evergreen forests in northeastern Pará state maintain evapotranspiration during five-month dry periods by absorbing water from the soil to depths of more than 8m. In contrast, although the degraded pastures of this region...
Predicting the interactions between climate change and ecosystems remains a core problem in global c...
Water availability is the major driver of tropical forest structure and dynamics. Most research has ...
Large areas of Amazonian evergreen forest experience seasonal droughts extending for three or more m...
DEFORESTATION and logging transform more forest in eastern and southern Amazonia than in any other r...
DEFORESTATIONS and logging transform more forest in eastern and southern Amazonia than in any other ...
Rooting depth affects soil profiles of water uptake and carbon inputs. Here we explore the importanc...
Rooting depth affects soil profiles of water uptake and carbon inputs. Here we explore the importanc...
The Amazon rainforest evapotranspiration (ET) flux provides climate-regulating and moisture-provisio...
The depth of the root system controls the maximum amount of soil water that can be transpired by the...
Abstract. Forests in seasonally dry areas of eastern Amazonia near Paragominas, Patti, Brazil, maint...
Forests in seasonally dry areas of eastern Amazonia near Paragominas, Pará, Brazil, maintain an ever...
Aim Water availability is the major driver of tropical forest structure and dynamics. Most research...
Predicting the interactions between climate change and ecosystems remains a core problem in global c...
Water availability is the major driver of tropical forest structure and dynamics. Most research has ...
Large areas of Amazonian evergreen forest experience seasonal droughts extending for three or more m...
DEFORESTATION and logging transform more forest in eastern and southern Amazonia than in any other r...
DEFORESTATIONS and logging transform more forest in eastern and southern Amazonia than in any other ...
Rooting depth affects soil profiles of water uptake and carbon inputs. Here we explore the importanc...
Rooting depth affects soil profiles of water uptake and carbon inputs. Here we explore the importanc...
The Amazon rainforest evapotranspiration (ET) flux provides climate-regulating and moisture-provisio...
The depth of the root system controls the maximum amount of soil water that can be transpired by the...
Abstract. Forests in seasonally dry areas of eastern Amazonia near Paragominas, Patti, Brazil, maint...
Forests in seasonally dry areas of eastern Amazonia near Paragominas, Pará, Brazil, maintain an ever...
Aim Water availability is the major driver of tropical forest structure and dynamics. Most research...
Predicting the interactions between climate change and ecosystems remains a core problem in global c...
Water availability is the major driver of tropical forest structure and dynamics. Most research has ...
Large areas of Amazonian evergreen forest experience seasonal droughts extending for three or more m...