Summary: Relationships among productivity, leaf phenology, and seasonal variation in moisture and light availability are poorly understood for evergreen broadleaved tropical/subtropical forests, which contribute 25% of terrestrial productivity. On the one hand, as moisture availability declines, trees shed leaves to reduce transpiration and the risk of hydraulic failure. On the other hand, increases in light availability promote the replacement of senescent leaves to increase productivity. Here, we provide a comprehensive framework that relates the seasonality of climate, leaf abscission, and leaf productivity across the evergreen broadleaved tropical/subtropical forest biome. The seasonal correlation between rainfall and light availability...
Phenological modeling for tropical forests remains poorly developed and many global ecosystem models...
The seasonal climate drivers of the carbon cycle in tropical forests remain poorly known, although t...
International audienceLeaf phenology in the humid tropics largely regulates the seasonality of fores...
Three climate-phenology regimes are identified across tropical and subtropical forest biomes-Where l...
The seasonal climate drivers of the carbon cycle in tropical forests remain poorly known, although t...
The climatic drivers of leaf phenology and water stress regulation strategies in tropical/subtropica...
Phenological modeling for tropical forests remains poorly developed and many global ecosystem models...
The seasonal climate drivers of the carbon cycle in tropical forests remain poorly known, although t...
International audienceLeaf phenology in the humid tropics largely regulates the seasonality of fores...
Three climate-phenology regimes are identified across tropical and subtropical forest biomes-Where l...
The seasonal climate drivers of the carbon cycle in tropical forests remain poorly known, although t...
The climatic drivers of leaf phenology and water stress regulation strategies in tropical/subtropica...
Phenological modeling for tropical forests remains poorly developed and many global ecosystem models...
The seasonal climate drivers of the carbon cycle in tropical forests remain poorly known, although t...
International audienceLeaf phenology in the humid tropics largely regulates the seasonality of fores...