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Data from: Aircraft sound exposure leads to song frequency decline and elevated aggression in wild chiffchaffs
负责人:
关键词:
Phylloscopus;Phylloscopus collybita;playback;aggression;bird song;aircraft noise
DOI:
doi:10.5061/dryad.3nd978g
摘要:
Phylloscopus collybita songs near two airports and nearby control areas, and we measured sound levels in their territories at Manchester airport. The song
Data from: Time-keeping programme can explain seasonal dynamics of leukocyte profile in a migrant bird
负责人:
Demina, Irina
关键词:
leukocyte profile Phylloscopus collybita seasonal changes annual cycle heterophils to lymphocytes ratio time-keeping programme
DOI:
doi:10.5061/dryad.qk8v9g1
摘要:
and to test its possible endogenous basis we experimentally simulated annual cycle in a migratory passerine bird, chiffchaff (Phylloscopus collybita abi
Data from: Does the niche-breadth or trade-off hypothesis explain the abundance-occupancy relationship in avian haemosporidia?
负责人:
关键词:
Anthus spinoletta;Ficedula parva;host specialization;Luscinia luscinia;Periparus ater;Acrocephalus palustris;Alectoris Chukar;Cettia cetti;Sturnus unicolor;Lanius meridionalis;Anthus trivialis;Passer hispaniolensis;Phylloscopus sindianus;Streptopelia turtur;Strix aluco;Upupa epops;Emberiza hortulana;Emberiza melanocephala;Sylvia crassirostris;Saxicola maurus;Passer domesticus;Poecile lugubris;Sylvia borin;Carduelis cannabina;Picus vaillantii;Sylvia curruca;blood parasites;Sylvia deserticola;Hippolais polyglotta;Holocene;Galerida cristata;Certhia brachydactyla;Certhia familiaris;Phoenicurus moussieri;Otus scops;Host Parasite Interactions;Cyanistes caeruleus;Ficedula semitorquata;Motacilla cinerea;Sitta krueperi;Cyanopica cooki;Cyanistes teneriffae;Emberiza calandra;Lanius senator;Serinus serinus;Athene noctua;Lanius collurio;Sylvia hortensis;Birds;Sylvia communis;Corvus corone;Hirundo rustica;Eremophila alpestris;Erithacus rubecula;Irania gutturalis;Pyrrhula pyrrhula;Motacilla flava;Prunella ocularis;Turdus viscivorus;Luscinia megarhynchos;Oenanthe deserti;Sylvia atricapilla;Muscicapa striata;Plasmodium;Sylvia cantillans;Oenanthe leucura;Haemosporidia;Turdus philomelos;Phoenicurus phoenicurus;Sitta europaea;Aegithalos caudatus;Troglodytes troglodytes;Petronia petronia;Turdus merula;abundance-occupancy relationship;Rhodopechys sanguineus;Carduelis flavirostris;Falco naumanni;Fringilla coelebs;Phylloscopus sibilatrix;Phoenicurus ochruros;Oenanthe oenanthe;Lophophanes cristatus;Pycnonotus barbatus;Carduelis carduelis;Carpodacus erythrinus;Phylloscopus collybita;Sylvia melanocephala;Monticola saxatilis;Coccothraustes coccothraustes;Cercotrichas galactotes;Prunella modularis;Sylvia nisoria;Falco tinnunculus;Parus major;Haemoproteus;Alectoris rufa;Hippolais languida;Ficedula speculigera;Dendrocopos minor;Dendrocopos major;Emberiza cia;Saxicola rubetra;Sylvia undata;Garrulus glandarius;Leucocytozoon;Columba palumbus;Picus viridis;Phylloscopus nitidus;Iduna opaca;Riparia riparia;Chloris chloris;Emberiza cirlus
DOI:
doi:10.5061/dryad.r8bj6
摘要:
Two hypotheses have been proposed to explain the abundance-occupancy relationship (AOR) in parasites. The niche-breadth hypothesis suggests tha

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