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Data from: Drivers and patterns of microbial community assembly in a Lyme disease vector
负责人:
关键词:
Lyme disease;NexGen sequencing;tick;16S rRNA;Ixodes pacificus;Rickettsia;microbiome;community assembly
DOI:
doi:10.5061/dryad.2nv32qh
摘要:
s demonstrated that the vector microbiome can impact pathogen dynamics, making the microbiome a focal point in vector-borne disease ecology. However, efforts
Data from: Sympatry and interference of divergent Microbotryum pathogen species.
负责人:
关键词:
Microbotryum;disease ecology;Holocene
DOI:
doi:10.5061/dryad.5g8h6f6
摘要:
The impact of infectious diseases in natural ecosystems is strongly influenced by the degree of pathogen specialization and by the local asse
Data from: Population structure of the Chagas disease vector, Triatoma infestans, at the urban-rural interface
负责人:
关键词:
Triatoma infestans;insects;Landscape Genetics;Disease Biology;Ecological Genetics;Population Genetics - Empirical
DOI:
doi:10.5061/dryad.25gn8
摘要:
of Chagas disease. Here we show that populations of Tria. infestans in geographically distinct districts within and around this urban center share a common recent
Data from: Experimental feeding regime influences urban bird disease dynamics
负责人:
关键词:
supplementary feeding;Zosterops lateralis;garden birds;disease ecology;Passer domesticus;Turdus merula
DOI:
doi:10.5061/dryad.6rq0c
摘要:
ny zoonotic diseases, and although a number of avian disease outbreaks have been linked to bird feeders, urban bird-feeding and its role in disease systems remains po
Data from: Pathogens manipulate the preference of vectors, slowing disease spread in a multi-host system
负责人:
关键词:
Avena sativa;vector manipulation hypothesis;behavioral ecology;Rhopalosiphum padi;disease ecology;vecctor-borne disease
DOI:
doi:10.5061/dryad.1nv0351
摘要:
ng host species, and how changes in vector behaviour alter the ecological dynamics of disease spread. Here, we couple multi?host preference experiments with a nove
Data from: Detailed monitoring of a small but recovering population reveals sublethal effects of disease and unexpected interactions
负责人:
关键词:
disease ecology ecological immunology generalised linear mixed models psittacine beak and feather disease reproductive success supplementary feeding.
DOI:
doi:10.5061/dryad.83r6m
摘要:
1. Infectious diseases are widely recognized to have substantial impact on wildlife populations. These impacts are sometimes exacerbated in sma
Data from: Phylogenetic structure and host abundance drive disease pressure in communities
负责人:
关键词:
Monarda fistulosa;Pseudognaphalium californicum;Nassella leucotricha;Baccharis pilularis;Lolium multiflorum;Brickellia eupatorioides;Euphorbia corollata;Gaura lindheimeri;Cirsium muticum;Rumex altissimus;Cirsium vulgare;Fungi;Briza maxima;Yucca glauca;Anagallis arvensis;Erodium botrys;Vicia sativa;Cirsium discolor;Geranium dissectum;Andropogon gerardii;Phylogenetic ecology;Oxalis corniculata;Buchloe dactyloides;Vicia benghalensis;Hypochaeris radicata;Bromus hordeaceus;Spartina pectinata;Foeniculum vulgare;Polypogon monspeliensis;Rudbeckia maxima;Pycnanthemum tenuifolium;Chasmanthium latifolium;Conium maculatum;Lupinus perennis;Ruellia humilis;Taraxacum campylodes;Callirhoe leiocarpa;Brachypodium distachyon;Potentilla arguta;Erodium cicutarium;Galium concinnum;Lactuca virosa;Rumex salicifolius;Rare species advantage;pathogen;Brassica nigra;Nassella pulchra;Elymus villosus;Eryngium yuccifolium;Trifolium angustifolium;Plantago lanceolata;Erigeron canadensis;Campanula americana;Nicotiana rustica;Echinacea purpurea;plant disease;Medicago polymorpha;Sorghastrum nutans;Galium aparine;Convolvulus arvensis;Trifolium subterraneum;Bromus kalmii;Phacelia congesta;Ipomopsis rubra;Bromus diandrus;Carduus pycnocephalus;Thermopsis villosa;Trifolium dubium;Desmodium canadense;Density Dependence;Penstemon cobaea;Scirpus atrovirens;Vulpia bromoides;Vernonia fasciculata;Briza minor;Avena barbata;Lobelia siphilitica;Rubus ursinus;Bromus pubescens;Pseudognaphalium sp.;Community Ecology;Pseudognaphalium obtusifolium;Rumex acetosella;Eschscholzia californica;Panicum virgatum;Chlorogalum pomeridianum;Corydalis curvisiliqua;Dalea purpurea;Elymus riparius;Carex lurida;Sonchus asper;Liatris spicata;Glyceria canadensis;Raphanus raphanistrum
DOI:
doi:10.5061/dryad.kf401
摘要:
. A shared goal of ecology and epidemiology is to predict when a species is most vulnerable to disease. A leading hypothesis asserts that the impact of disease
Data from: Interacting effects of wildlife loss and climate on ticks and tick-borne disease
负责人:
关键词:
defaunation;tick-borne disease;ticks;Rickettsia spp.;Rhipicephalus praetextatus;climate;exclosure;Rhipicephalus pravus;Rickettsia;Rhipicephalus pulchellus;Coxiella burnetii
DOI:
doi:10.5061/dryad.sf33k
摘要:
ty that increase disease risk, and they highlight the need to incorporate ecological context when predicting effects of wildlife loss on zoonotic disease dynamics.
Data from: Disease swamps molecular signatures of genetic-environmental associations to abiotic factors in Tasmanian devil (Sarcophilus harrisii
负责人:
关键词:
landscape genomics;genetic-environmental associations;Tasmanian devils;Devil facial tumor disease;population genetics;local adaptation
DOI:
doi:10.5061/dryad.2v6wwpzjj
摘要:
tened with extinction by a nearly 100% fatal, transmissible cancer, devil facial tumor disease (DFTD). Devils persist in regions of long-term infection des

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