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Rapid Leaf Deployment Strategies in a Deciduous Savanna
by
February, Edmund Carl
, Higgins, Steven Ian
in
Abscission
/ Biodiversity
/ Biology and Life Sciences
/ Branches
/ Business competition
/ Canopies
/ Carbon
/ Carbon - metabolism
/ Carbon Cycle - physiology
/ Carbon Isotopes
/ Combretum apiculatum
/ Construction
/ Construction costs
/ Deciduous trees
/ Earth Sciences
/ Ecology
/ Ecology and Environmental Sciences
/ Energy Metabolism - physiology
/ Grassland
/ Growing season
/ Isotope ratios
/ Leaf phenology
/ Leaves
/ Mineralization
/ Moisture availability
/ National parks
/ Nitrogen
/ Nitrogen - metabolism
/ Nitrogen content
/ Nitrogen Cycle - physiology
/ Phenology
/ Photosynthesis - physiology
/ Physiology
/ Plant Leaves - physiology
/ Rain
/ Rain - chemistry
/ Reserves
/ Savannahs
/ Sclerocarya birrea
/ Seasonal variations
/ Seasons
/ Soil - chemistry
/ Soil moisture
/ Soil moisture availability
/ Soil sciences
/ Trees
/ Trees - physiology
/ Tropical Climate
/ Vegetation
/ Water - metabolism
/ Water shortages
2016
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Rapid Leaf Deployment Strategies in a Deciduous Savanna
by
February, Edmund Carl
, Higgins, Steven Ian
in
Abscission
/ Biodiversity
/ Biology and Life Sciences
/ Branches
/ Business competition
/ Canopies
/ Carbon
/ Carbon - metabolism
/ Carbon Cycle - physiology
/ Carbon Isotopes
/ Combretum apiculatum
/ Construction
/ Construction costs
/ Deciduous trees
/ Earth Sciences
/ Ecology
/ Ecology and Environmental Sciences
/ Energy Metabolism - physiology
/ Grassland
/ Growing season
/ Isotope ratios
/ Leaf phenology
/ Leaves
/ Mineralization
/ Moisture availability
/ National parks
/ Nitrogen
/ Nitrogen - metabolism
/ Nitrogen content
/ Nitrogen Cycle - physiology
/ Phenology
/ Photosynthesis - physiology
/ Physiology
/ Plant Leaves - physiology
/ Rain
/ Rain - chemistry
/ Reserves
/ Savannahs
/ Sclerocarya birrea
/ Seasonal variations
/ Seasons
/ Soil - chemistry
/ Soil moisture
/ Soil moisture availability
/ Soil sciences
/ Trees
/ Trees - physiology
/ Tropical Climate
/ Vegetation
/ Water - metabolism
/ Water shortages
2016
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Do you wish to request the book?
Rapid Leaf Deployment Strategies in a Deciduous Savanna
by
February, Edmund Carl
, Higgins, Steven Ian
in
Abscission
/ Biodiversity
/ Biology and Life Sciences
/ Branches
/ Business competition
/ Canopies
/ Carbon
/ Carbon - metabolism
/ Carbon Cycle - physiology
/ Carbon Isotopes
/ Combretum apiculatum
/ Construction
/ Construction costs
/ Deciduous trees
/ Earth Sciences
/ Ecology
/ Ecology and Environmental Sciences
/ Energy Metabolism - physiology
/ Grassland
/ Growing season
/ Isotope ratios
/ Leaf phenology
/ Leaves
/ Mineralization
/ Moisture availability
/ National parks
/ Nitrogen
/ Nitrogen - metabolism
/ Nitrogen content
/ Nitrogen Cycle - physiology
/ Phenology
/ Photosynthesis - physiology
/ Physiology
/ Plant Leaves - physiology
/ Rain
/ Rain - chemistry
/ Reserves
/ Savannahs
/ Sclerocarya birrea
/ Seasonal variations
/ Seasons
/ Soil - chemistry
/ Soil moisture
/ Soil moisture availability
/ Soil sciences
/ Trees
/ Trees - physiology
/ Tropical Climate
/ Vegetation
/ Water - metabolism
/ Water shortages
2016
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Journal Article
Rapid Leaf Deployment Strategies in a Deciduous Savanna
2016
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Overview
Deciduous plants avoid the costs of maintaining leaves in the unfavourable season, but carry the costs of constructing new leaves every year. Deciduousness is therefore expected in ecological situations with pronounced seasonality and low costs of leaf construction. In our study system, a seasonally dry tropical savanna, many trees are deciduous, suggesting that leaf construction costs must be low. Previous studies have, however, shown that nitrogen is limiting in this system, suggesting that leaf construction costs are high. Here we examine this conundrum using a time series of soil moisture availability, leaf phenology and nitrogen distribution in the tree canopy to illustrate how trees resorb nitrogen before leaf abscission and use stored reserves of nitrogen and carbon to construct new leaves at the onset of the growing season. Our results show that trees deployed leaves shortly before and in anticipation of the first rains with its associated pulse of nitrogen mineralisation. Our results also show that trees rapidly constructed a full canopy of leaves within two weeks of the first rains. We detected an increase in leaf nitrogen content that corresponded with the first rains and with the movement of nitrogen to more distal branches, suggesting that stored nitrogen reserves are used to construct leaves. Furthermore the stable carbon isotope ratios (δ13C) of these leaves suggest the use of stored carbon for leaf construction. Our findings suggest that the early deployment of leaves using stored nitrogen and carbon reserves is a strategy that is integrally linked with the onset of the first rains. This strategy may confer a competitive advantage over species that deploy leaves at or after the onset of the rains.
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