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Data from: Are ecophysiological adaptive traits decoupled from leaf economics traits in wetlands?
- 负责人:
- DOI:
- doi:10.5061/dryad.4v1s6b5
- 摘要:
- by e.g. a low redox potential and a lack of electron acceptors. These ecophysiological traits are critical for the survival and physiological
Data from: Evolution of the leaf economics spectrum in herbs: evidence from environmental divergences in leaf physiology across Helianthus
- 负责人:
- DOI:
- doi:10.5061/dryad.110s9
- 摘要:
- igned with resource-acquisitive to resource-conservative ecological strategies. The LES has been interpreted to arise from leaf-level trade-offs among ecophysiological tra
Data from: Shifts in plant functional strategies over the course of wheat domestication
- 负责人:
- Violle, Cyrille
- 关键词:
- agroecology crop ecophysiological trade-off functional coordination human selection phenotypic integration phenotypic space plant breeding plant economics spectrum plant functional trait
- DOI:
- doi:10.5061/dryad.3d00d
- 摘要:
- tion. The characterization of the crop domestication syndrome lies mostly on reproductive characters. However, biophysical and ecophysiological constraints duri
Data from: Integrated metabolic strategy: a framework for predicting the evolution of carbon-water tradeoffs within plant clades
- 负责人:
- DOI:
- doi:10.5061/dryad.203pf67
- 摘要:
- variation among and within species may shed light on unresolved questions relating to evolution and ecology of plant ecophysiological strategies.
Data from: Influence of leaf trichomes on boundary layer conductance and gas-exchange characteristics in Metrosideros polymorpha (Myrtaceae)
- 负责人:
- DOI:
- doi:10.5061/dryad.6p676
- 摘要:
- ecophysiological measurements on M. polymorpha in three populations in habitats that varied in aridity. We found a large allocation of leaf mass to tric
Data from: Altered leaf elemental composition with climate change is linked to reductions in photosynthesis, growth and survival in a semiarid
- 负责人:
- DOI:
- doi:10.5061/dryad.66j8343
- 摘要:
- inout shelters to assess the impacts of warming (~2oC, W), rainfall reduction (~30%, RR) and their combination (W+RR) on the nutrient status and ecophysiological
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