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1.
J Wildl Dis ; 55(1): 3-43, 2019 01.
Article in English | MEDLINE | ID: mdl-30284963

ABSTRACT

Many infectious diseases originating from, or carried by, wildlife affect wildlife conservation and biodiversity, livestock health, or human health. We provide an update on changes in the epidemiology of 25 selected infectious, wildlife-related diseases in Europe (from 2010-16) that had an impact, or may have a future impact, on the health of wildlife, livestock, and humans. These pathogens were selected based on their: 1) identification in recent Europe-wide projects as important surveillance targets, 2) inclusion in European Union legislation as pathogens requiring obligatory surveillance, 3) presence in recent literature on wildlife-related diseases in Europe since 2010, 4) inclusion in key pathogen lists released by the Office International des Epizooties, 5) identification in conference presentations and informal discussions on a group email list by a European network of wildlife disease scientists from the European Wildlife Disease Association, or 6) identification as pathogens with changes in their epidemiology during 2010-16. The wildlife pathogens or diseases included in this review are: avian influenza virus, seal influenza virus, lagoviruses, rabies virus, bat lyssaviruses, filoviruses, canine distemper virus, morbilliviruses in aquatic mammals, bluetongue virus, West Nile virus, hantaviruses, Schmallenberg virus, Crimean-Congo hemorrhagic fever virus, African swine fever virus, amphibian ranavirus, hepatitis E virus, bovine tuberculosis ( Mycobacterium bovis), tularemia ( Francisella tularensis), brucellosis ( Brucella spp.), salmonellosis ( Salmonella spp.), Coxiella burnetii, chytridiomycosis, Echinococcus multilocularis, Leishmania infantum, and chronic wasting disease. Further work is needed to identify all of the key drivers of disease change and emergence, as they appear to be influencing the incidence and spread of these pathogens in Europe. We present a summary of these recent changes during 2010-16 to discuss possible commonalities and drivers of disease change and to identify directions for future work on wildlife-related diseases in Europe. Many of the pathogens are entering Europe from other continents while others are expanding their ranges inside and beyond Europe. Surveillance for these wildlife-related diseases at a continental scale is therefore important for planet-wide assessment, awareness of, and preparedness for the risks they may pose to wildlife, domestic animal, and human health.


Subject(s)
Animals, Wild , Communicable Diseases/veterinary , Animals , Communicable Diseases/epidemiology , Europe/epidemiology , Humans , Population Surveillance , Zoonoses
2.
Acta Vet Scand ; 60(1): 26, 2018 May 02.
Article in English | MEDLINE | ID: mdl-29716621

ABSTRACT

BACKGROUND: Tularemia is a zoonosis caused by the bacterium Francisella tularensis. It has a wide host range, which includes mammals, birds and invertebrates. F. tularensis has often been isolated from various species of small rodents, but the pathology in naturally infected wild rodent species has rarely been reported. CASE PRESENTATION: Herein, we describe the pathology of tularemia in two naturally infected wild yellow-necked mice (Apodemus flavicollis). To visualize F. tularensis subsp. holarctica, indirect immunofluorescence and immunohistochemistry were applied on tissue sections. Real time polymerase chain reaction detected the bacterium in samples from liver and spleen in both mice. The only finding at necropsy was splenomegaly in one of the mice. Histological examination revealed necrotic foci in the liver associated with mild inflammation in both mice. Immunohistochemistry and indirect immunofluorescence showed bacteria disseminated in many organs, in the cytoplasm of macrophages, and intravascularly. CONCLUSIONS: The two yellow-necked mice died of an acute disease caused by tularemic infection disseminated to many organs. Further investigations of naturally infected small rodents are important to better understand the variability in pathological presentation caused by infection by F. tularensis subsp. holarctica, as well to elucidate the importance of small rodents as transmitters and/or reservoirs.


Subject(s)
Francisella tularensis/isolation & purification , Murinae , Rodent Diseases/pathology , Tularemia/veterinary , Animals , Liver/microbiology , Male , Rodent Diseases/microbiology , Spleen/microbiology , Sweden , Tularemia/microbiology , Tularemia/pathology
3.
Parasitol Res ; 113(7): 2603-27, 2014 Jul.
Article in English | MEDLINE | ID: mdl-24820039

ABSTRACT

The external morphology of adult and immature stages of mange mites of the genus Chorioptes was investigated with the aid of light and scanning electron microscopy. A molecular phylogeny of this genus was inferred based on six genes (18S, 28S rDNA, EF1-α, SRP54, HSP70, and CO1). The validity of four species (Ch. bovis, Ch. panda, Ch. texanus, and Ch. sweatmani sp. nov. described from the moose from Sweden, Finland, and Russia) was confirmed based on morphology and a Bayesian species delimitation analysis incorporating both gene tree uncertainties and incomplete lineage sorting via the coalescent process model in BPP. Sequence data for Ch. crewei and Ch. mydaus was not available but their morphology strongly suggests their validity. The six valid Chorioptes species are diagnosed using type and non-type specimens, and a key to species is provided. Ch. sweatmani differs from closely related Ch. texanus by the following features: in males, the body length, including the gnathosoma, is 380-405 µm (vs. 220-295 in Ch. texanus), the idiosoma is 3-4 times longer than setae cp (vs. 1.3-1.6 times longer), legs III are approximately three times longer than setae sRIII (vs. 1.8-2 times longer), the apical spur of tarsus III is curved (vs. straight), a spur near seta fIII base is not developed (vs. small but distinct); in females, setae h2 are 1.4-1.5 times shorter than legs IV (vs. about two times longer). Hosts and distribution records of Chorioptes species are summarized.


Subject(s)
Arthropod Proteins/classification , Mite Infestations/veterinary , Phylogeny , Psoroptidae/classification , Sensilla/ultrastructure , Animals , Arthropod Proteins/genetics , Bayes Theorem , Deer/parasitology , Europe , Female , Male , Mite Infestations/enzymology , Mite Infestations/parasitology , Phylogeography , Psoroptidae/genetics , Psoroptidae/ultrastructure , United States
4.
Acta Vet Scand ; 49: 21, 2007 Sep 10.
Article in English | MEDLINE | ID: mdl-17825115

ABSTRACT

BACKGROUND: During the past decade, Chorioptes mites occupying the outer ear canals have been a common finding at routine necropsies of moose (Alces alces) in Sweden, but neither the taxonomy of the mites nor lesions from the infestation have been investigated. In this study, the mites are characterized by morphological and molecular techniques, and the histopathology of the skin of the outer ear canal is described. METHODS: External auditory meatuses from 53 necropsied moose were examined for the presence of Chorioptes, and samples from outer ear canals were taken for histopathological and microbiological examination. A proportion of the mites from each moose was identified to species. The DNA was extracted from mites from three moose, and their ITS-2 sequences were determined; these sequences were compared phylogenetically to sequences from other Chorioptes taxa. RESULTS: Chorioptes mites were found in 43 (81%) of the 53 moose. The mites had morphological and genetic characteristics distinct from those of C. texanus and C. bovis, the two species generally accepted within the genus. Morphology also did not argue for a diagnosis as C. crewei, C. mydaus or C. panda. On histopathology, lesions were characterized by a hyperplastic perivascular to interstitial dermatitis with epidermal hyperkeratosis and crust formation. Dermal inflammatory infiltrates were composed of mixed T- and B-lymphocytes, plasma cells and macrophages, whereas eosinophils were notably uncommon. Staphylococcus aureus was grown from the infested epidermis of five of 14 examined moose. CONCLUSION: Chorioptes mite infestation was frequently detected in the outer ear canals of moose in Sweden. The mites were evidently pathogenic, being associated with inflammatory lesions of the external auditory meatus. Our studies indicate infestations with a previously undescribed Chorioptes species.


Subject(s)
Deer , Mite Infestations/veterinary , Mites/classification , Otitis Externa/veterinary , Animals , DNA/analysis , Ear Canal/parasitology , Mite Infestations/epidemiology , Mite Infestations/parasitology , Mite Infestations/pathology , Mites/genetics , Mites/ultrastructure , Otitis Externa/parasitology , Otitis Externa/pathology , Phylogeny , Polymerase Chain Reaction , Sweden/epidemiology
5.
J Vet Diagn Invest ; 18(3): 307-10, 2006 May.
Article in English | MEDLINE | ID: mdl-16789725

ABSTRACT

A novel case where onchocercosis was identified as a cause of cervical myelopathy in the horse is described. A 15-year-old Connemara mare was euthanized due to progressive locomotion disturbance. Postmortem examination revealed soft-tissue swelling in the intervertebral joint capsule of C6-7 with narrowing of the vertebral canal. On light microscopy, axonopathy was pronounced in the corresponding segment of the spinal cord. Fibrous tissue and eosinophilic granulomas were found in the joint capsule, together with parasites identified histologically as Onchocerca sp.


Subject(s)
Horse Diseases/parasitology , Onchocerca/growth & development , Onchocerciasis/veterinary , Spinal Cord Compression/veterinary , Spinal Stenosis/veterinary , Animals , Cervical Vertebrae/parasitology , Cervical Vertebrae/pathology , Fatal Outcome , Female , Histocytochemistry/veterinary , Horse Diseases/pathology , Horses , Onchocerciasis/parasitology , Onchocerciasis/pathology , Spinal Cord Compression/parasitology , Spinal Cord Compression/pathology , Spinal Stenosis/parasitology , Spinal Stenosis/pathology
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