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Data from: The relationship between variable host grouping and functional responses among parasitoids of Antispila nysaefoliella (Lepidoptera
负责人:
关键词:
DNA Barcoding;life history strategies;functional response;mtDNA COI;field survey;dilution effect
DOI:
doi:10.5061/dryad.68v7r
摘要:
detectable parasitism, respectively. Our resulting sequences were then calibrated with sequences from identified adult parasitoids that had been either rear
Data from: Poor resource quality lowers transmission potential by changing foraging behaviour
负责人:
关键词:
Metschnikowia bicuspidata;Microcystis aeruginosa;Daphnia dentifera;food quality;feeding rate;Ankistrodesmus falcatus;parasite production;transmission rate
DOI:
doi:10.5061/dryad.p7507
摘要:
of food quality on ‘transmission potential’ – a key component of parasite fitness that combines transmission rate and parasite production – using a zooplankton host
Data from: The evolution of bacterial mutation rates under simultaneous selection by inter-specific and social parasitism
负责人:
关键词:
Public good cooperation;Evolution;mutation rate;Pseudomonas fluorescens;Parasites;Pseudomonas
DOI:
doi:10.5061/dryad.tq34k
摘要:
d. Interspecific and intraspecific parasitism are therefore likely to impose conflicting selection pressure on mutation rate. Here, we combine theory and experiments
Data from: Evolutionary origins and diversification of proteobacterial mutualists
负责人:
关键词:
Proteobacteria;Parasitism;symbiont;evolutionary transition;mutualism
DOI:
doi:10.5061/dryad.6v06v
摘要:
a paucity of reversals to parasitism or to free-living status. This evolutionary conservatism of mutualism is contrary to long-standing theory, which predicts
Data from: Wolbachia infection in a natural parasitoid wasp population
负责人:
关键词:
Hyposoter horticola;Mitochondrial DNA;Fitness;Melitaea cinxia;pathogen protection;endosymbiont;mesochorus cf. stigmaticus
DOI:
doi:10.5061/dryad.34sv3
摘要:
and parasitism of H. horticola by its hyperparasitoid, Mesochorus cf. stigmaticus. We discuss the possibility that Wolbachia infection protects H. horticola ag
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:
partition resources. Hence, applying MTE to parasites can lend mechanistic, quantitative, predictive insight into the nature of parasitism and can inform genera
Data from: Symbiotic polydnavirus of a parasite manipulates caterpillar and plant immunity
负责人:
关键词:
parasitoid;plant defense;Helicoverpa zea;Solanum lycopersicum;Microplitis croceipes;herbivore;host immunity
DOI:
doi:10.5061/dryad.5tg4sv6
摘要:
Obligate symbioses occur when organisms require symbiotic relationships to survive. Some parasitic wasps of caterpillars possess obligate mutualisti
Data from: The effect of parasitism and interpopulation hybridization on Aedes albopictus (Diptera: Culicidae) fitness
负责人:
关键词:
Culicidae;Population Ecology;invasive species;Aedes;evolutionary ecology
DOI:
doi:10.5061/dryad.378bk
摘要:
protozoan parasite Ascogregarina taiwanensis (Lien and Levine). Overall, there were significant differences in development time, wing length, and survival bet
Data from: Parasite infection alters nitrogen cycling at the ecosystem scale
负责人:
关键词:
metabolism stoichiometry trematode metacercaria nutrients biogeochemistry
DOI:
doi:10.5061/dryad.mt240
摘要:
on, (2) ecosystem nutrient limitation, (3) effects of parasite abundance, host density, host functional role, and host excretion rate on nutrient flow

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