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A theory of plant function helps to explain leaf‐trait and productivity responses to elevation
- Source :
- New Phytologist
- Publication Year :
- 2020
- Publisher :
- Wiley, 2020.
-
Abstract
- Several publications have examined leaf-trait and carbon-cycling shifts along an Amazon-Andes transect spanning 3.5 km in elevation and 16°C in mean annual temperature. Photosynthetic capacity was previously shown to increase as temperature declines with increasing elevation, counteracting enzyme-kinetic effects. Primary production declines, nonetheless, due to decreasing light availability. We aimed to predict leaf-trait and production gradients from first principles, using published data to test an emerging theory whereby photosynthetic traits and primary production depend on optimal acclimation and/or adaptation to environment. We re-analysed published data for 210 species at 25 sites, fitting linear relationships to elevation for both predicted and observed photosynthetic traits and primary production. Declining leaf-internal/ambient CO2 ratio (χ) and increasing carboxylation (Vcmax ) and electron-transport (Jmax ) capacities with increasing elevation were predicted. Increases in leaf nitrogen content with elevation were explained by increasing Vcmax and leaf mass-per-area. Leaf and soil phosphorus covaried, but after controlling for elevation, no nutrient metric accounted for any additional variance in photosynthetic traits. Primary production was predicted to decline with elevation. This analysis unifies leaf and ecosystem observations in a common theoretical framework. The insensitivity of primary production to temperature is shown to emerge as a consequence of the optimisation of photosynthetic traits.
- Subjects :
- 0106 biological sciences
0301 basic medicine
REPRESENTATION
Physiology
Acclimatization
adaptation
Plant Science
acclimation
01 natural sciences
Nutrient
FORESTS
Photosynthesis
2. Zero hunger
TEMPERATURE RESPONSE
Phosphorus
VARIABILITY
RESPIRATION
Productivity (ecology)
Life Sciences & Biomedicine
PHOTOSYNTHETIC CAPACITY
primary production
Nitrogen
MODELS
Plant Biology & Botany
Biology
CARBON-ISOTOPE DISCRIMINATION
PARAMETERS
03 medical and health sciences
THERMAL-ACCLIMATION
07 Agricultural and Veterinary Sciences
Ecosystem
elevation transect
Science & Technology
plant functional traits
Plant Sciences
Elevation
temperature
06 Biological Sciences
Carbon Dioxide
15. Life on land
Photosynthetic capacity
Plant Leaves
optimality
030104 developmental biology
Agronomy
Adaptation
010606 plant biology & botany
Subjects
Details
- ISSN :
- 14698137 and 0028646X
- Volume :
- 226
- Database :
- OpenAIRE
- Journal :
- New Phytologist
- Accession number :
- edsair.doi.dedup.....8e153f1f16234a74b3e50da82ca388e9