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Data from: The scaling of parasite biomass with host biomass in lake ecosystems: are parasites limited by host resources?
负责人:
关键词:
Parasite biomass Freswater ecosystems Fish
DOI:
doi:10.5061/dryad.523t1
摘要:
t parasites may not be making full use of available host resources. Host populations appear capable of supporting a little more parasite biomass, and may be op
Data from: Parasite resource manipulation drives bimodal variation in infection duration
负责人:
关键词:
acute;Parasite;Mus musculus;within-host;resource manipulation;immunity;Trichuris muris;Chronic
DOI:
doi:10.5061/dryad.b2g21j1
摘要:
o results in a threshold biomass required for parasites to establish in the host, giving rise to acute infections when biomass fails to clear
Data from: Phosphorus limitation enhances parasite impact: feedback effects at the population level
负责人:
关键词:
ecological stoichiometry host-parasite interaction nutrient limitation
DOI:
doi:10.5061/dryad.r50k9
摘要:
ty and biomass compared with the populations fed with the P-sufficient algae. In the P-sufficient populations, infection with the parasite reduced
Data from: Multiple choice: hemiparasite performance in multi-species mixtures
负责人:
关键词:
Rhinanthus alectorolophus;host preference;functional diversity
DOI:
doi:10.5061/dryad.61ts3bv
摘要:
may be related to host use in a mixture. Host quality (mean parasite biomass with a host species) in the single-host experiment could explain 64
Data from: The contrasting roles of host species diversity and parasite population genetic diversity in the infection dynamics of a keystone
负责人:
关键词:
yellow-rattle;species diversity;Grasslands;community resistance;hemi-parasite;Plant\u2013plant interactions;within species genetic diversity;host-parasite interactions
DOI:
doi:10.5061/dryad.5161828
摘要:
relative biomass increasing when the parasite was present. There was no direct impact of the presence of the parasite on the relative biomass
Data from: A metabolic and body-size scaling framework for parasite within-host abundance, biomass, and energy flux
负责人:
关键词:
Cylicocyclus nassatus;Setaria equina;Cyathostomum montgomeryi;Trichostrongylus affinis;Cylicocyclus gyalocephaloides;Crenosoma sp.;Dictyocaulus viviparus;Cylicostephanus bidentatus;Cylicostephanus minutus;Oesophagostomum quadrispinulatum;Cyathostomum labratum;Ancylostoma caninum;Cylicocyclus triramosus;Cylicodontophorus reineckei;Capillaria aerophilus;Metastrongylus pudendoctectus;Parascaris equorum;energetics;Toxocara cati;Carolinensis kinsellai;Protostrongylus macrotis;Syphacia peromysci;Litosomoides carinii;Macroecology;Cyathospirura sp.;Ascaris suum;Metathelazia californica;Nematodirus odocoilei;Parabronema pecariae;Cylicocyclus adersi;Skrjabinema parva;Physocephalus sexalatus;Apteragia odocoilei;Capillaria plica;Craterostomum acuticaudatum;Oxyuris equi;Strongyloides sigmodontis;Probstmayria vivipara;Placoconus lotoris;Trichostrongylus colubriformis;Globocephalus urosubulatus;Triodontophorus minor;Triodontophorus brevicaudata;Ecology: community;Oesophagostomum venulosum;Oslerus osleri;Capillaria putorii;Cylicostephanus longiconus;Texicospirura turki;Haemonchus contortus;Cyathostomum catenatum;Skrjabinema sp.;Ascarops strongylina;Poteriostomum ratzii;Poteriostomum imparidentatum;Gongylonema pulchrum;Strongyloides westeri;Aspiculuris tetraptera;Cyathostomum tetracanthum;Interactions: host\/parasite;Toxascaris leonina;Pharyngostomoides procyonis;Trichostrongylus thomasi;Cylicostephanus calicatus;Protospirura numidica;Spirocerca lupi;Lagochilascaris sp.;Hymenolepis diminuta;Physaloptera praeputialis;Ancylostoma tubaeforme;Crossocephalus viviparus;Baylisascaris transfuga;Habronema muscae;Ostertagia mossi;Parabronema skrjabini;Gnathostoma sp.;Nematodirus helvetianus;Sertaria yehi;Pterygodermatites peromysci;Cylicospirura subaequalis;Stephanurus dentatus;Ostertagia ostertagi;Allometry;Monodontus floridanus;Cylicodontophorus schuermanni;Dirofilaria immitis;Physaloptera rara;Molineus barbatus;Triodontophorus nipponicus;Draschia megastoma;Syphacia sigmodontis;Cooperia oncophora;Moniliformis dubius;Trichostrongylus axei;Triodontophorus serratus;Haemonchus mitchelli;Strongyloides sp.;Dracunculus sp.;Cyathostomum alveatum;Vogeloides felis;Cylicocyclus auriculatus;Trichuris vulpis;Metastrongylus apri
DOI:
doi:10.5061/dryad.14nn1
摘要:
metabolic-scaling theory for parasite abundance, energetics, and biomass in individual hosts. In contrast to previous efforts, the theory factors in both host
Data from: Parasites driving host diversity: incidence of disease correlated with Daphnia clonal turnover
负责人:
关键词:
Red Queen;Daphnia;Parasitism;Coevolution;Caullerya
DOI:
doi:10.5061/dryad.733tn
摘要:
ant correlates of turnover were cyanobacterial biomass and (weakly) temperature. Overall, parasitism seems to be a strong driver of host clonal turnover
Data from: Is the continental life of the European eel Anguilla anguilla affected by the parasitic invader Anguillicoloides crassus?
负责人:
关键词:
pathogenicity;fitness cost;Virulence;Anguilla anguilla;life history traits;anguillicolosis;host\u2013parasite interaction;Holocene;Anguillicoloides (Anguillicola) crassus
DOI:
doi:10.5061/dryad.34qf8
摘要:
(i.e. the swimbladder, our internal marker) and parasite abundance and biomass, thus showing that the use of classical epidemiological parameters was not relevant her
Data from: Ecological consequences of parasite host shifts under changing environments: more than a change of partner
负责人:
关键词:
host switching;Parasitism;climate warming;life history traits;species assemblage;biotic interaction;species distribution
DOI:
doi:10.5061/dryad.0k6djh9w3
摘要:

ss="Standard" style="text-align:justify;text-indent:35.4pt;margin-bottom:13px;">(1) Parasitic plants, among many other parasitic organisms, ar

Data from: Warming advances top-down control and reduces producer biomass in a freshwater plankton community
负责人:
关键词:
Global warming;zooplankton phenology;Keratella;Dinobryon;phytoplankton community dynamics;seasonal succession;Bosmina;chytrid dynamics;Synedra
DOI:
doi:10.5061/dryad.6tv0f
摘要:
availabilities, fungal parasite (i.e., chytrid) prevalence, and zooplankton abundance. Warming led to an overall reduction in phytoplankton biomass

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