Les hommes ont oublié cette vérité. Mais tu ne dois pas l'oublier, dit le renard. Tu deviens responsable pour toujours de ce que tu as apprivoisé.
Le Petit Prince, chap. 21
Showing posts with label VIRUS. Show all posts
Showing posts with label VIRUS. Show all posts

Friday, 30 September 2016

Feral cats: Genetic and sanitary risk for wild felids in Iberian Peninsula (in Spanish)

Tobajas, J. (2016). Riesgos genéticos y sanitarios asociados al gato asilvestrado (Felis silvestris catus): el caso de los felinos salvajes de la península ibérica. Chronica naturae, (6), 63-82.

El gato cimarrón o asilvestrado (Felis silvestris catus) se ha distribuido ampliamente
por todo el mundo, colonizando nuevos territorios e interactuando en muchas ocasiones
con las especies domésticas y silvestres. Sanitariamente, la presencia de gatos asilvestrados
trae consigo una serie de inconvenientes para las especies de felinos salvajes, actuando
como reservorios y dispersores de enfermedades. Por ello es de vital importancia conocer
la situación actual de la presencia de estas enfermedades, y conocer bien la epidemiología
asociada a la presencia del gato asilvestrado. Esta revisión recoge los estudios sanitarios
sobre el gato asilvestrado, el gato montés (Felis silvestris) y el lince ibérico (Lynx
pardinus). Estas dos últimas, son las especies silvestres que pueden sufrir las consecuencias
del aumento de la presencia de gatos asilvestrados en la naturaleza de la Península Ibérica.
Los resultados de los estudios sanitarios sobre gatos asilvestrados, muestran una prevalencia
alta de parásitos helmintos (especialmente de nematodos como Toxocara cati) y protozoos
como Toxoplasma gondii. Del mismo modo, se han encontrado altas prevalencias de virus
compartidos entre los felinos salvajes y los gatos asilvestrados, como el virus de la leucemia
felina, coronavirus y el moquillo, convirtiéndose en una amenaza para la conservación del
lince ibérico. También cabe destacar la presencia de bacterias transmitidas por vectores,
como el género Rickettsia y Bartonella. Aparte de las amenazas sanitarias, el aumento
detectado en la presencia de híbridos de gato doméstico y gato montés a lo largo de toda
Europa también es remarcable. Por estas razones, se puede considerar el gato cimarrón
como una de las mayores amenazas para el gato montés y el lince ibérico dentro de su área
de distribución.

Thursday, 4 August 2016

Exposure of Free-Ranging Wild Carnivores and Domestic Dogs to CDV and Parvovirus in Central Brazil

Furtado, M. M., Hayashi, E. M. K., Allendorf, S. D., Coelho, C. J., de Almeida Jácomo, A. T., Megid, J., ... & Neto, J. S. F. Exposure of Free-Ranging Wild Carnivores and Domestic Dogs to Canine Distemper Virus and Parvovirus in the Cerrado of Central Brazil. EcoHealth, 1-9.

Human population growth around protected areas increases the contact between wild and domestic animals, promoting disease transmission between them. This study investigates the exposure of free-ranging wild carnivores and domestic dogs to canine distemper virus (CDV) and parvovirus in Emas National Park (ENP) in the Cerrado savanna of central Brazil. Serum samples were collected from 169 wild carnivores, including the maned wolf (Chrysocyon brachyurus), crab-eating fox (Cerdocyon thous), hoary fox (Pseudalopex vetulus), puma (Puma concolor), ocelot (Leopardus pardalis), pampas cat (Leopardus colocolo), jaguarundi (Herpailurus yagouaroundi), striped hog-nosed skunk (Conepatus semistriatus) and coati (Nasua nasua), and from 35 domestic dogs living on rural properties bordering ENP. Serological tests showed that 10.6% of wild carnivores (maned wolves, crab-eating foxes and ocelots) and 71.4% of domestic dogs were exposed to CDV, and 56.8% of wild carnivores, including all species sampled except coatis, and 57.1% of domestic dogs were exposed to parvovirus. This report is the first to indicate that the free-ranging pampas cat, jaguarundi and striped hog-nosed skunk are exposed to parvovirus. CDV and parvovirus deserve attention in ENP, and it is extremely important to monitor the health of carnivore populations and perform molecular diagnosis of the viruses to determine the possible involvement of the domestic dog in their transmission.

Wednesday, 6 July 2016

Cross-species transmission of CDV

Beineke, A., Baumgärtner, W. & Wohlsein, P. 2015. Cross-species transmission of canine distemper virus-an update. One Health 1, 49–59.

Canine distemper virus (CDV) is a pantropic morbillivirus with a worldwide distribution, which causes fatal disease in dogs. Affected animals develop dyspnea, diarrhea, neurological signs and profound immunosuppression. Systemic CDV infection, resembling distemper in domestic dogs, can be found also in wild canids (e.g. wolves, foxes), procyonids (e.g. raccoons, kinkajous), ailurids (e.g. red pandas), ursids (e.g. black bears, giant pandas), mustelids (e.g. ferrets, minks), viverrids (e.g. civets, genets), hyaenids (e.g. spotted hyenas), and large felids (e.g. lions, tigers). Furthermore, besides infection with the closely related phocine distemper virus, seals can become infected by CDV. In some CDV outbreaks including the mass mortalities among Baikal and Caspian seals and large felids in the Serengeti Park, terrestrial carnivores including dogs and wolves have been suspected as vectors for the infectious agent. In addition, lethal infections have been described in non-carnivore species such as peccaries and non-human primates demonstrating the remarkable ability of the pathogen to cross species barriers. Mutations affecting the CDV H protein required for virus attachment to host-cell receptors are associated with virulence and disease emergence in novel host species. The broad and expanding host range of CDV and its maintenance within wildlife reservoir hosts considerably hampers disease eradication.

Sunday, 3 July 2016

Potential transmision of dog pathogens to wild carnivores in India

Chaudhary, V. (2016). Threats of Disease Spillover from Domestic Dogs to Wild Carnivores in the Kanha Tiger Reserve, India. MSc disertation  Graduate School of Clemson University.

Many mammalian carnivore species persist in small, isolated populations as a result of habitat destruction, fragmentation, poaching, and human conflict. Their small numbers, limited genetic variability, and increased exposure to domestic animals such as dogs place them at risk of further losses due to infectious diseases. In India, dogs ranging from domestic to feral are associated with villages in and around protected areas, and may serve as reservoirs and vectors of pathogens to the carnivores within. India’s Kanha Tiger Reserve (KTR) is home to a number of threatened and endangered mammalian carnivores including tigers (Panthera tigris), leopards (Panthera pardus), wolves (Canis lupus), and dhole (Cuon alpinus). It also contains hundreds of small villages with associated dog populations, and my goal was to determine whether these dogs pose a disease threat to KTR’s wild carnivores. In the summer of 2014 and again in the winter of 2015 I estimated the density of dogs in villages of varying sizes and distances from KTR’s core zone, and the exposure of these dogs to four pathogens that could threaten wild carnivores: rabies, canine parvovirus (CPV), canine distemper (CDV), and canine adenovirus (CAV). Dog population densities ranged from 3.7 to 23.7/km2(14 to 45 dogs/village), and showed no systematic variation with village area or human population size. These dog populations grew in all villages between the summer of 2014 and winter of 2015, primarily through reproduction. No dog tested positive for rabies but I found high levels of seroprevalence to the other three pathogens: CPV (83.6% in summer 2014,
68.4% in winter 2015), CDV (50.7% in summer 2014, 30.4% in winter 2015) and CAV (41.8% in summer 2014, 30.9% in winter 2015). The declines in seroprevalence between summer and winter were primarily due to births in the population, of animals not exposed to the viruses. I opportunistically documented interactions between the dogs and wild carnivores that might allow disease transmission. I measured these interactions as the presence of wild carnivores in surveyed villages. In this study I document the existence of a large population of unvaccinated dogs in and around KTR, with high levels of seroprevalence to pathogens with broad host ranges. These dogs also have frequent contact with wild carnivores. I conclude that these dogs pose a high risk of disease spillover to wild carnivores in the region.
I also tested for CPV and CDV in wild carnivore samples obtained from the KTR Forest Department from 2010 to 2015. While one tiger blood sample was seropositive for CPV antibodies, the reverse transcriptase polymerase chain reaction found no evidence of CPV in tissue samples from five tigers, one leopard and one palm civet (Paradoxurus hermaphroditus), and no CPV or CDV in the three blood samples of tigers. Despite these results, I argue for continued surveillance in KTR, given the ubiquity of village dogs in the area with high seroprevalence of CDV and CPV and the contact between dogs and endangered carnivores in KTR. 

Thursday, 23 June 2016

Domestic dogs are the only population essential for persistence of rabies in Serengeti

Lembo, T., Hampson, K., Haydon, D. T., Craft, M., Dobson, A., Dushoff, J., ... & Mentzel, C. (2008). Exploring reservoir dynamics: a case study of rabies in the Serengeti ecosystem. Journal of Applied Ecology, 45(4), 1246-1257.

  1. Knowledge of infection reservoir dynamics is critical for effective disease control, but identifying reservoirs of multi-host pathogens is challenging. Here, we synthesize several lines of evidence to investigate rabies reservoirs in complex carnivore communities of the Serengeti ecological region in northwest Tanzania, where the disease has been confirmed in 12 carnivore species.
  2. Long-term monitoring data suggest that rabies persists in high-density domestic dog Canis familiaris populations (> 11 dogs/km2) and occurs less frequently in lower-density (< 5 dogs /km2) populations and only sporadically in wild carnivores.
  3. Genetic data show that a single rabies virus variant belonging to the group of southern Africa canid-associated viruses (Africa 1b) circulates among a range of species, with no evidence of species-specific virus–host associations.
  4. Within-species transmission was more frequently inferred from high-resolution epidemiological data than between-species transmission. Incidence patterns indicate that spill-over of rabies from domestic dog populations sometimes initiates short-lived chains of transmission in other carnivores.
  5. Synthesis and applications. The balance of evidence suggests that the reservoir of rabies in the Serengeti ecosystem is a complex multi-host community where domestic dogs are the only population essential for persistence, although other carnivores contribute to the reservoir as non-maintenance populations. Control programmes that target domestic dog populations should therefore have the greatest impact on reducing the risk of infection in all other species including humans, livestock and endangered wildlife populations, but transmission in other species may increase the level of vaccination coverage in domestic dog populations necessary to eliminate rabies.

Tuesday, 21 June 2016

Fatal canine distemper virus infection of giant pandas in China

Feng, N., Yu, Y., Wang, T., Wilker, P., Wang, J., Li, Y., ... & Xia, X. (2016). Fatal canine distemper virus infection of giant pandas in China. Scientific Reports, 6, 27518.

We report an outbreak of canine distemper virus (CDV) infection among endangered giant pandas (Ailuropoda melanoleuca). Five of six CDV infected giant pandas died. The surviving giant panda was previously vaccinated against CDV. Genomic sequencing of CDV isolated from one of the infected pandas (giant panda/SX/2014) suggests it belongs to the Asia-1 cluster. The hemagglutinin protein of the isolated virus and virus sequenced from lung samples originating from deceased giant pandas all possessed the substitutions V26M, T213A, K281R, S300N, P340Q, and Y549H. The presence of the Y549H substitution is notable as it is found at the signaling lymphocytic activation molecule (SLAM) receptor-binding site and has been implicated in the emergence of highly pathogenic CDV and host switching. These findings demonstrate that giant pandas are susceptible to CDV and suggest that surveillance and vaccination among all captive giant pandas are warranted to support conservation efforts for this endangered species.

Thursday, 16 June 2016

First evidence of canine distemper in Brazilian free-ranging felids

Nava, A. F. D., Cullen Jr, L., Sana, D. A., Nardi, M. S., Ramos Filho, J. D., Lima, T. F., ... & Ferreira, F. (2008). First evidence of canine distemper in Brazilian free-ranging felids. Ecohealth, 5(4), 513-518.

Serum samples from 19 jaguars (Panthera onca), nine pumas (Puma concolor), and two ocelots (Leopardus pardalis) were collected between January 1999 and March of 2005 and tested for presence of canine distemper virus (CDV). All cats were free-ranging animals living in two protected areas in the Brazilian Atlantic Forest. In addition, 111 domestic dogs from nearby areas were sampled for CDV. Our results show the first evidence of CDV exposure in Brazilian free-ranging felids. From the 30 samples analyzed, six jaguars and one puma were tested seropositive for CDV. All seropositive large felids were from Ivinhema State Park, resulting in 31.5% of the sampled jaguars or 60% of the total jaguar population in Ivinhema State Park, and 11.28% of the sampled pumas. From the total 111 domestic dogs sampled, 45 were tested seropositive for CDV. At Morro do Diabo State Park, 34.6% of the dogs sampled were positive for CDV, and 100% at Ivinhema State Park. Canine distemper virus in wild felids seems to be related with home range use and in close association with domestic dogs living in nearby areas.

Monday, 13 June 2016

Distemper outbreak and its effect on African wild dog conservation

Fatal canine distemper infection in a pack of African wild dogs in the Serengeti

Goller, K. V., Fyumagwa, R. D., Nikolin, V., East, M. L., Kilewo, M., Speck, S., ... & Wibbelt, G. (2010). Fatal canine distemper infection in a pack of African wild dogs in the Serengeti ecosystem, Tanzania. Veterinary microbiology, 146(3), 245-252.

In 2007, disease related mortality occurred in one African wild dog (Lycaon pictus) pack close to the north-eastern boundary of the Serengeti National Park, Tanzania. Histopathological examination of tissues from six animals revealed that the main pathologic changes comprised interstitial pneumonia and suppurative to necrotizing bronchopneumonia. Respiratory epithelial cells contained numerous eosinophilic intracytoplasmic inclusion bodies and multiple syncytial cells were found throughout the parenchymal tissue, both reacting clearly positive with antibodies against canine distemper virus (CDV) antigen. Phylogenetic analysis based on a 388 nucleotide (nt) fragment of the CDV phosphoprotein (P) gene revealed that the pack was infected with a CDV variant most closely related to Tanzanian variants, including those obtained in 1994 during a CDV epidemic in the Serengeti National Park and from captive African wild dogs in the Mkomazi Game Reserve in 2000. Phylogenetic analysis of a 335-nt fragment of the fusion (F) gene confirmed that the pack in 2007 was infected with a variant most closely related to one variant from 1994 during the epidemic in the Serengeti National Park from which a comparable fragment is available. Screening of tissue samples for concurrent infections revealed evidence of canine parvovirus, Streptococcus equi subsp. ruminatorum and Hepatozoon sp. No evidence of infection with Babesia sp. or rabies virus was found. Possible implications of concurrent infections are discussed. This is the first molecular characterisation of CDV in free-ranging African wild dogs and only the third confirmed case of fatal CDV infection in a free-ranging pack.

Sunday, 12 June 2016

Epidemiology, pathology, and genetic analysis of a canine distemper epidemic in Namibia

Gowtage-Sequeira, S., Banyard, A. C., Barrett, T., Buczkowski, H., Funk, S. M., & Cleaveland, S. (2009). Epidemiology, pathology, and genetic analysis of a canine distemper epidemic in Namibia. Journal of wildlife diseases, 45(4), 1008-1020.


Severe population declines have resulted from the spillover of canine distemper virus (CDV) into susceptible wildlife, with both domestic and wild canids being involved in the maintenance and transmission of the virus. This study (March 2001 to October 2003) collated case data, serologic, pathologic, and molecular data to describe the spillover of CDV from domestic dogs (Canis familiaris) to black-backed jackals (Canis mesomelas) during an epidemic on the Namibian coast. Antibody prevalence in jackals peaked at 74.1%, and the clinical signs and histopathologic observations closely resembled those observed in domestic dog cases. Viral RNA was isolated from the brain of a domestic dog from the outbreak area. Sequence data from the phosphoprotein (P) gene and the hemagglutinin (H) genes were used for phylogenetic analyses. The P gene sequence from the domestic dog shared 98% identity with the sequence data available for other CDV isolates of African carnivores. For the H gene, the two sequences available from the outbreak that decimated the lion population in Tanzania in 1994 were the closest match with the Namibian sample, being 94% identical across 1,122 base pairs (bp). Phylogenetic analyses based on this region clustered the Namibian sample with the CDV that is within the morbilliviruses. This is the first description of an epidemic involving black-backed jackals in Namibia, demonstrating that this species has the capacity for rapid and large-scale dissemination of CDV. This work highlights the threat posed to endangered wildlife in Namibia by the spillover of CDV from domestic dog populations. Very few sequence data are currently available for CDV isolates from African carnivores, and this work provides the first sequence data from a Namibian CDV isolate.

Saturday, 11 June 2016

Occurrence of pathogens in Brazilian wild carnivores and its implications for conservation and public health

Jorge, R. S., Rocha, F. L., May-Júnior, A. J., & Morato, R. G. (2010). Ocorrência de patógenos em carnívoros selvagens brasileiros e suas implicações para a conservação e saúde pública. Oecologia Australis, 14(3), 686-710.

Several outbreaks caused by pathogens caused declines in wild carnivore populations in the last decades. In addition to the negative impact to wild populations, there is a concern about the transmission of some of these agents to humans and domestic animals. In fact, environmental alterations have resulted in changes in the pathogen-host relation. Therefore, monitoring health of wild animals is considered an important component in programs for control or eradication of diseases and in the public and animal health politics and for the management and conservation of wild species. Considering the role of mammals of the order Carnivora in the trophic chain, they might be used as “sentinels”, working as strategic targets in programs of surveillance of important pathogens for public and animal health. We review in this paper case-studies of the main pathogens that occur in wild carnivores, emphasizing species of the Brazilian fauna. We also discuss laboratorial methods used in studies of exposure of Brazilian wild carnivores to pathogens, as well as strategies to minimize the impacts in these populations caused by that exposure, and methods for controlling the occurrence of zoonotic pathogens in wild carnivores.


Diversos surtos epidêmicos causados por agentes patogênicos provocaram severo declínio em populações de carnívoros selvagens nas últimas décadas. Além deste impacto às populações silvestres, há a preocupação da transmissão de alguns destes agentes à população humana e de animais domésticos. De fato, as alterações ambientais têm provocado mudanças na relação patógeno-hospedeiro. Desta forma, o monitoramento da saúde de animais silvestres é importante componente no estabelecimento de programas de controle e erradicação de doenças e na elaboração de políticas de saúde pública e animal e de manejo e conservação de espécies selvagens. Considerando o papel dos mamíferos da ordem Carnivora na cadeia trófica, estes podem ser usados como “sentinelas”, sendo alvos estratégicos em programas de vigilância para detecção de patógenos. Neste artigo serão revisados estudos de caso dos principais patógenos que acometem carnívoros selvagens, com ênfase nas espécies da fauna brasileira. Os métodos laboratoriais utilizados nos estudos de exposição dos carnívoros brasileiros a patógenos serão discutidos e considerações sobre estratégias para minimizar seus impactos sobre a fauna silvestre, bem como os possíveis métodos para controle de patógenos causadores de zoonoses em carnívoros.

Thursday, 9 June 2016

Contact between wild and domestic canids and virus transmision

Courtenay, O., Quinnell, R. J., & Chalmers, W. S. K. (2001). Contact rates between wild and domestic canids: no evidence of parvovirus or canine distemper virus in crab-eating foxes. Veterinary Microbiology, 81(1), 9-19.


Evaluating the risk of disease spill-over from domestic dogs to wildlife depends on knowledge of inter-specific contact rates and/or exposure to aetiological agents in dog environments. Here, contact rates of crab-eating foxes (Cerdocyon thous) with sympatric domestic dog populations were measured over 25 months in Amazon Brazil. Foxes and dogs were serologically and clinically monitored for exposure to canine parvovirus (CPV-2) and canine distemper virus (CDV), pathogens known to have caused wildlife population declines elsewhere. Twenty-two of 24 (92%) tagged foxes visited one or more houses in a median 2 (range 1–3) villages per night where dog densities ranged from 7.2 to 15.4 per km2 (mean 9.5 per km2). Foxes spent an average 6.4% (0–40.3%) of their 10 h nocturnal activity period in villages, the equivalent of 38 m (range 0–242) per night. The rate of potential exposure to disease agents was thus high, though varied by 3 orders of magnitude for individual foxes. Overall, 46% of the fox population was responsible for 80% of all contacts. None of the 37 monitored foxes however showed serological or clinical evidence of infection with CPV-2 or CDV. Seroprevalences for CPV-2 and CDV antibodies in the local domestic dog population were 13% (3/23) and 9% (2/23), respectively, and 89% of 97 monitored pups born during the study presented clinical signs consistent with active CPV-2 infection (haemorrhagic diarrhoea, vomiting, rapid morbidity and emaciation). Although there was no evidence for infection with either virus in foxes, the high level of contact of foxes with peridomestic habitats suggests that the probability of potential spill-over infections from dogs to foxes is high.

Genetics of CDV in East African carnivores

Carpenter, M. A., Appel, M. J., Roelke-Parker, M. E., Munson, L., Hofer, H., East, M., & O'Brien, S. J. (1998). Genetic characterization of canine distemper virus in Serengeti carnivores. Veterinary immunology and immunopathology, 65(2), 259-266.

The lion (Panthera leo) population in the Serengeti ecosystem was recently afflicted by a fatal epidemic involving neurological disease, encephalitis and pneumonia. The cause was identified as canine distemper virus (CDV). Several other species in the Serengeti were also affected. This report presents CDV H and P gene sequences isolated from Serengeti lions (Panthera leo), spotted hyenas (Crocuta crocuta), bat-eared fox (Otocyon megalotis) and domestic dog (Canis familiaris). Sequence analyses demonstrated that the four Serengeti species carry closely related CDV isolates which are genetically distinct from other CDV isolates from various species and locations. The results are consistent with the conclusions that: (1) a particularly virulent strain of CDV emerged among Serengeti carnivores within the last few years; (2) that strain has recognizable shared-derived (synapomorphic) genetic differences in both H and P genes when compared to CDV from other parts of the world; and (3) that the CDV strain has frequently crossed host species among Serengeti carnivores.

Wednesday, 25 May 2016

Canine pathogens among wolves from the Alaska peninsula

Watts, D. E., & Benson, A. M. (2016). Prevalence of antibodies for selected canine pathogens among wolves from the Alaska peninsula, USA. Journal of Wildlife Diseases.

We collected blood samples from wolves (Canis lupus) on the Alaska Peninsula, southwest Alaska, USA, 2006–2011 and tested sera for antibodies to canine adenovirus (CAV), canine coronavirus (CCV), canine distemper virus (CDV), canine herpesvirus (CHV), canine parainfluenza (CPI), canine parvovirus (CPV), Neospora caninum, and Toxoplasma gondii. Detected antibody prevalence was 90% for CAV, 28% for CCV, 12% for CDV, 93% for CHV, 0% for CPI, 20% for CPV, and 86% for T. gondii. Prevalence of CCV antibodies suggested a seasonal pattern with higher prevalence during spring (43%) than in fall (11%). Prevalence of CCV antibodies also declined during the 6-yr study with high prevalence during Spring 2006–2008 (80%, n=24) and low prevalence during Spring 2009–2011 (4%, n=24). Prevalence of N. caninum and T. gondii antibodies were highly variable in the study area during 2006–2011. Results suggested that some pathogens might be enzootic on the Alaska Peninsula (e.g., CAV and CHV) while others may be epizootic (e.g., CCV, N. caninum, T. gondii).

Sunday, 1 May 2016

FeLV and FIV in free-roeaming cats

Lee, I.T., Levy, J.K., Gorman, S.P., Crawford, P.C. and Slater, M.R.2002. Prevalence of feline leukemia virus infection and serum antibodies against feline immunodeficiency virus in un-owned free-roaming cats. Journal of the American Veterinary Medical Association, 220: 620–622.

Objective—To determine prevalence of FeLV infection and serum antibodies against feline immunodeficiency virus (FIV) in unowned free-roaming cats.
Design—Cross-sectional serologic survey.
Animals—733 unowned free-roaming cats in Raleigh, NC, and 1,143 unowned free-roaming cats in
Gainesville, Fla.
Results—In Raleigh, overall prevalence of FeLV infection was 5.3%, and overall seroprevalence for FIV was 2.3%. In Gainesville, overall prevalence of FeLV infection was 3.7%, and overall seroprevalence for FIV was 4.3%. Overall, FeLV prevalence was 4.3%, and seroprevalence for FIV was 3.5%. Prevalence of FeLV infection was not significantly different between males (4.9%) and females (3.8%), although seroprevalence for FIV was significantly higher in male cats (6.3%) than in female cats (1.5%).
Conclusions and Clinical Relevance—Prevalence of FeLV infection and seroprevalence for FIV in unowned free-roaming cats in Raleigh and Gainesville are similar to prevalence rates reported for owned cats in the United States. Male cats are at increased risk for exposure to FIV, compared with female cats.

Sunday, 6 March 2016

Prevalence of selected infectious disease agents in stray cats in Catalonia

Ravicini, S., Castro-López, J., Hawley, J., Brewer, M., Castro, J., Beall, M., & Lappin, M. R. (2016). Prevalence of selected infectious disease agents in stray cats in Catalonia, Spain. Journal of Feline Medicine and Surgery Open Reports, 2(1), 2055116916634109.

Objectives. The objective of the current study was to investigate the prevalence rates of the following infectious agents in 116 stray cats in the Barcelona area of Spain: Anaplasma phagocytophilum, Bartonella species, Borrelia burgdorferi, Chlamydia felis, Dirofilaria immitis, Ehrlichia species, feline calicivirus (FCV), feline herpesvirus-1 (FHV-1), feline leukaemia virus (FeLV), feline immunodeficiency virus (FIV), haemoplasmas, Mycoplasma species and Rickettsia species.
Methods. Serum antibodies were used to estimate the prevalence of exposure to A phagocytophilum, Bartonella species, B. burgdorferi, Ehrlichia species and FIV; serum antigens were used to assess for infection by D. immitis and FeLV; and molecular assays were used to amplify nucleic acids of Anaplasma species, Bartonella species, C. felis, D. immitis, Ehrlichia species, FCV, FHV-1, haemoplasmas, Mycoplasma species and Rickettsia species from blood and nasal or oral swabs.
Results. Of the 116 cats, 63 (54.3%) had evidence of infection by Bartonella species, FeLV, FIV or a haemoplasma. Anaplasma species, Ehrlichia species or Rickettsia species DNA was not amplified from these cats. A total of 18/116 cats (15.5%) were positive for FCV RNA (six cats), Mycoplasma species DNA (six cats), FHV-1 DNA (three cats) or C. felis DNA (three cats).
Conclusions and relevance. This study documents that shelter cats in Catalonia are exposed to many infectious agents with clinical and zoonotic significance, and that flea control is indicated for cats in the region.

Wednesday, 30 December 2015

Dog diet and interaction with wildlife in Colombia

Manjarrés Rodríguez, T. S. (2015). Dieta del perro (Canis familiaris) y sus interacciones con la fauna silvestre de la cuenca alta del Río Otún-Risaralda (Colombia). Trabajo de grado presentado para optar al titulo de: Magister en Conservación y Uso de la Biodiversidad (Modalidad de investigación) 

The dog (Canis familiaris) interact with the wild life mainly through depredation, competition and disease transmission. However, it is not known very clearly how these interactions occur. To answer this question, this work identified the dog's diet and the presence of disease Parvovirus (CPV). From this information, contrasted with the knowledge of the residents of the study area, the possible interactions with the dog can keep wildlife in the study area were determined. The diet analysis showed that dog consumed waste, followed by the rest of medium and small mammals, and finally to a lesser extent vegetation and insects. The community also identified the consumption of birds and reptiles in a low percentage. Neither dog feces showed the presence of CPV, possibly in part because community mentioned that all domestic dogs were vaccinated. However the perception of the community on predation dog does not resemble reality obtained in this study, so it is recommended to do session about esterilizaton and vaccination, and to awareness the workers and community about dog control and prohibit the entry of those coming with tourists in the study area.

Sunday, 15 November 2015

Patterns of seroprevalence of feline viruses among domestic cats and Pallas’ cats

Pavlova, E. V., Kirilyuk, V. E., & Naidenko, S. V. (2015). Patterns of seroprevalence of feline viruses among domestic cats (Felis catus) and Pallas’ cats (Otocolobus manul) in Daursky Reserve, Russia. Canadian Journal of Zoology, 93(11), 849-855.

Few data are available on the prevalence of feline viruses in the wild and little is known about natural sources of infections. The aim of this study was to estimate patterns of seroprevalence to feline viruses (feline immunodeficiency virus (FIV), feline calicivirus (FCV), feline panleukopenia virus (FPV), feline herpesvirus (FHV), and feline leukemia virus (FeLV)) in two cat species, domestic cats (Felis catus L., 1758) (n = 61) and Pallas’ cats (Otocolobus manul (Pallas, 1776)) (n = 24), living in the same area, in Daursky Reserve, Russia. Our results indicate that four of five viruses are circulating in the study area, with the exception of FHV. The pattern of FCV and FPV prevalence differed from FIV and FeLV. FCV and FPV seroprevalence did not depend on the sex and predominated in the group of cats living in the village (76% and 55%, respectively). No Pallas’ cats were seropositive to these viruses. The prevalence of FIV and FeLV were similar in areas with different cat densities (at the stations (16% for both viruses) and in the village (16% for both viruses)). The patterns of seroprevalence between species testify to the low rate of interspecific contacts. In Pallas’ cats, we found the presence of antibodies to FIV to be 5% and antigens of FeLV to be 5%, pathogens for which transmission demand close direct contacts between animals (mainly aggressive and (or) sexual contact), which is typical in the breeding season. Arid climate may also reduce patterns of viral prevalence in the study area, decreasing the risk of infection for both cat species.

Tuesday, 14 July 2015

Pathogen exposure varies widely among sympatric populations of wild and domestic felids

Carver, S., Bevins, S. N., Lappin, M. R., Boydston, E. E., Lyren, L. M., Alldredge, M. W., Logan K.A., Sweanor, L.L., Riley, S.P.D., Klein Serieys, L.E., Fisher, R.N., Vickers,T.W., Boyce, W.M., McBride, R., Cunningham, M.C., Jennings, M., Lewis, J.S., Lunn, T. Crooks, K.R. & VandeWoude, S. (2015). Pathogen exposure varies widely among sympatric populations of wild and domestic felids across the United States. Ecological Applications.
Understanding how landscape, host, and pathogen traits contribute to disease exposure requires systematic evaluations of pathogens within and among host species and geographic regions. The relative importance of these attributes is critical for management of wildlife and mitigating domestic animal and human disease, particularly given rapid ecological changes, such as urbanization. We screened >1,000 samples from sympatric populations of puma (Puma concolor), bobcat (Lynx rufus) and domestic cat (Felis catus) across urban gradients in six sites, representing three regions, in North America for exposure to a representative suite of bacterial, protozoal and viral pathogens (Bartonella sp., Toxoplasma gondii, feline herpesvirus-1, feline panleukopenea virus, feline calicivirus, feline immunodeficiency virus). We evaluated prevalence within each species, and examined host trait and land cover determinants of exposure-providing an unprecedented analysis of factors relating to potential for infections in domesticated and wild felids. Prevalence differed among host species (highest for puma and lowest for domestic cat) and was greater for indirectly transmitted pathogens. Sex was inconsistently predictive of exposure to directly transmitted pathogens only, and age infrequently predictive of both direct and indirectly transmitted pathogens. Determinants of pathogen exposure were widely divergent between the wild felid species. For puma, suburban landuse predicted increased exposure to Bartonella sp. in southern California, and FHV-1 exposure increased near urban edges in Florida. This may suggest inter-specific transmission with domestic cats via flea vectors (California) and direct contact (Florida) around urban boundaries. Bobcats captured near urban areas had increased exposure to T. gondii in Florida, suggesting an urban source of prey. Bobcats captured near urban areas in Colorado and Florida had higher FIV exposure, possibly suggesting increased intra-specific interactions through pile-up of home ranges. Beyond these regional and pathogen specific relationships, proximity to the wildland urban interface did not generally increase the probability of disease exposure in wild or domestic felids, emphasizing the importance of local ecological determinants. Indeed, pathogen exposure was often negatively associated with the wildland urban interface for all felids. Our analyses suggest cross-species pathogen transmission events around this interface may be infrequent, but followed by self-sustaining propagation within the new host species.


Sunday, 14 June 2015

Ecological Restoration of sub-Antarctic Macquarie Island

Springer, K. Ecological Restoration of sub-Antarctic Macquarie Island.

Invasive vertebrate species have had devastating impacts on the flora, fauna and landforms of Macquarie Island over a period of 200 years. Following the successful eradication of weka (Gallirallus australis) by 1989 and feral cats (Felis catus) by 2001, planning for the eradication of ship rats (Rattus rattus), house mice (Mus musculus) and European rabbits (Oryctolagus cuniculus) began in 2004. Funding of AUD$24.7M was secured in 2007 for a multi-year project based on aerial baiting targeting rabbits and rodents followed by ground hunting targeting surviving rabbits. The first aerial baiting attempt in 2010 was abandoned due to unfavourable weather and shipping delays. The degree of non-target seabird species mortality from limited baiting in 2010 lead to a renewed examination of non-target mitigation options. Rabbit Haemorrhagic Disease Virus (RHDV) was introduced in February 2011, to reduce the pre-baiting rabbit population and thus minimise non-target mortality amongst scavenging seabirds. Aerial baiting resumed in May 2011 using four AS350 helicopters and a team of 27 people, and was completed by July 2011. No rodents have been detected post-baiting and the estimated rabbit population of 150,000 has been reduced to fewer than 30 at the conclusion of baiting The rabbit hunting phase commenced in July 2011 using a team of 15 hunters and 12 dogs and is ongoing, with thirteen rabbits accounted for. Hunting and monitoring is expected to take a total of five years post-baiting and will be based on annual progress reviews. A minimum of two years monitoring will be conducted. Rodent detection dogs will deploy in 2013 to assist in determining rodent eradication success.
Six months after baiting, vegetation recovery was already evident and increased burrownesting seabird activity has also been observed in the first breeding season post-baiting.

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