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Data from: Habitat heterogeneity, host population structure and parasite local adaptation
负责人:
关键词:
Red Queen dynamics;local adaptation;Red Queen dynamics Subject area: Population structure and phylogeography;Conservation genetics and biodiversity;population structure;Coevolution
DOI:
doi:10.5061/dryad.r726b
摘要:
-mediated selection lead to oscillatory host dynamics, and weak local adaption by parasites. Across all levels of virulence, the strength of parasite LA closely
Data from: Overcompensation and phase effects in a cyclic common vole population: between first and second-order cycles
负责人:
关键词:
density-dependence nonlinear carrying capacity overshoots oscillatory dynamics rodents
DOI:
doi:10.5061/dryad.2hk46
摘要:
rotus arvalis) population from western France, that exhibits 3-year cycles. Several overcompensating nonlinear models for populations dynamics are fitted to the data, notably
Data from: A dynamic state model of migratory behavior and physiology to assess the consequences of environmental variation
负责人:
Pirotta, Enrico
关键词:
Ecology: behavioral Ecology: spatial Energetics Environmental variability Foraging: ecology Human impact Methods: computer simulations Modeling: ecological Reproduction: costs marine
DOI:
doi:10.5061/dryad.md416
摘要:
, we developed a dynamic state variable model that captures the interplay among behavioral decisions, energy, reproductive needs and the environment. We applied
Data from: Birds invest wingbeats to keep a steady head and reap the ultimate benefits of flying together
负责人:
关键词:
Pigeon;wingbeat frequency;Columba livia;accelerometer;flocking;Biologging;energy;stabilisation
DOI:
doi:10.5061/dryad.m7253n8
摘要:
Flapping flight is the most energetically demanding form of sustained forwards locomotion that vertebrates perform. Flock dynamics therefore have sig
Data from: ENSO and frost co-determine decade-long temporal variation in flower and seed production in a subtropical rain forest
负责人:
关键词:
Hoya carnosa;Melastoma candidum;Pileostegia viburnoide;Aeschynanthus acuminatus;Cinnamomum micranthum;Clematis crassifolia;Smilax spp.;Castanopsis spp.;Limlia uraiana;extreme weather events;Mussaenda pubescens;Helicia formosana;Lasianthus spp.;frost;Pothos chinensis;Pachycentria formosana;Prunus phaeosticta;Tricalysia dubia;Elaeocarpus japonicus;reproductive ecology;Elatostema lineolatum var. majus;Dischidia formosana Elaeocarpus japonicus;Cyclobalanopsis gilva;Glochidion acuminatum;Myrsine seguinii;Diospyros morrisiana;Miscanthus floridulus;Schefflera octophylla;Meliosma squamulata;Blastus cochinchinensis;Pyrenaria shinkoensis;Lagerstroemia subcostata;phylogenetic signal;Machilus zuihoensis;Engelhardtia roxburghiana;Cryptocarya chinensis;Pericampylus formosanus;Machilus thunbergii;Eurya loquaiana;Dischidia formosana;Vaccinium emarginatum;Fushan Forest Dynamics Plot;Symplocos glauca;Rubus pyrifolius;Ardisia quinquegona;Psychotria serpens;El Ni?o Southern Oscillation;Maesa japonica;phenology;Litsea acuminata;Ampelopsis cantoniensis;Maesa perlaria var. formosana;Cyclobalanopsis longinux;Randia cochinchinensis;Michelia compressa;Cleyera japonica;Symplocos theophrastifolia
DOI:
doi:10.5061/dryad.75v7c
摘要:
r, owing to the rarity of long-term monitoring studies conducted at a sufficient temporal scale to capture climatic oscillations and the unpredic

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