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Data from: Effects of variation in resource acquisition during different stages of the life cycle on life-history traits and trade-offs
负责人:
关键词:
Life History Evolution;insects;trade-offs;Nicrophorus vespilloides
DOI:
doi:10.5061/dryad.897qf4r
摘要:
Individual variation in resource acquisition should have consequences for life-history traits and trade-offs between them because such variati
Data from: Fine root tradeoffs between nitrogen concentration and xylem vessel traits preclude unified whole-plant resource strategies in Helianthus
负责人:
关键词:
Helianthus;trait evolution;specific root length;resource use;root tissue density;root anatomy
DOI:
doi:10.5061/dryad.4vc2n
摘要:
pid resource acquisition strategy to a resource-conservative strategy. While evidence for this tradeoff has been found in leaves, knowledge of root trait strategies
Data from: Trait-matching and mass effect determine the functional response of herbivore communities to land use intensification
负责人:
Provost, Ga?tane Le
关键词:
agricultural intensification body size functional trait diversity grasshoppers grassland metacommunity plant-insect interactions resource-acquisition trait
DOI:
doi:10.5061/dryad.ns143
摘要:
: incisor strength and body size of grasshopper species. Incisor strength, a resource-acquisition trait, strongly matches grasshopper feeding niche. Body si
Data from: The evolutionary genetics of acquisition and allocation in the wing dimorphic cricket, Gryllus firmus.
负责人:
King, Elizabeth Griep
关键词:
Quantitative Genetics Trade-Offs Physiology Phenotypic Plasticity Life-History Evolution
DOI:
doi:10.5061/dryad.8727
摘要:
and subsequent allocation of resources. In this study, we focused directly on acquisition and allocation as traits and estimated their geneti
Data from: Interspecific competition alters leaf stoichiometry in 20 grassland species
负责人:
关键词:
plant competition;Ecological stoichiometry;functional diversity
DOI:
doi:10.5061/dryad.mn652
摘要:
-specific stoichiometry remains poorly studied. Here, we analyze how spatial and temporal diversity in resource-acquisition traits affects leaf elemental
Data from: Variation in species light acquisition traits under fluctuating light regimes: implications for non?equilibrium coexistence
负责人:
关键词:
Non-equilibrium coexistence;Phytoplankton photoacclimation;Niche partitioning
DOI:
doi:10.5061/dryad.2rh61qk
摘要:
light acquisition traits capture important aspects of the ecophysiology of phytoplankton and characterize species growth at either limiting or saturati
Data from: Mating opportunities and energetic constraints drive variation in age-dependent sexual signalling
负责人:
关键词:
Life history;sexual selection;Trade offs;Phenotypic Plasticity;Condition dependence;Gryllodes sigillatus
DOI:
doi:10.5061/dryad.tj693
摘要:
rly investment options). Testing this hypothesis is challenging because resource acquisition and allocation are difficult to measure, and energetic reserves bot
Data from: Root community traits along a land use gradient: evidence of a community-level economics spectrum
负责人:
关键词:
shallow roots;Plant\u2013soil (below-ground) interactions;Functional traits;trade-off;coarse roots;deep roots;fine roots;root economics spectrum
DOI:
doi:10.5061/dryad.q5bj6
摘要:
1. There is a fundamental trade-off between leaf traits associated with either resource acquisition or resource conservation. This gra
Data from: Variation in the condition-dependence of individual sexual traits in male eastern mosquitofish, Gambusia holbrooki
负责人:
关键词:
Mating effort;condition-dependence;sexual selection;mate acquisition;sexual traits;Mate choice
DOI:
doi:10.5061/dryad.b698s18
摘要:
females did not vary significantly with male condition. Our results highlight the importance of incorporating variation in resource acquisition, hence
Data from: Early- and late-flowering guilds respond differently to landscape spatial structure
负责人:
关键词:
plant diversity;Habitat connectivity;biodiversity;Functional traits;multi-level models;Dispersal;persistence;patch quality;resource acquisition strategies;fragmentation
DOI:
doi:10.5061/dryad.7fq07
摘要:
e patches, using as predictors both environmental variables (landscape structure, soil resources) and plant traits related to dispersal, longevity, and resource acquisition

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