947 resultados para Aves selvagens


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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Pós-graduação em Medicina Veterinária - FCAV

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Tese de dout., Ecologia, Faculdade de Ciências do Mar e do Ambiente, Universidade do Algarve, 2008

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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O setor de reabilitação de aves selvagens do Parque Mangual das Garças, localizado em Belém, Pará, recebeu um espécime de Marreca-cabocla (Dendrocygna autumnalis). O animal apresentava lesões nodulares em regiões desprovidas de penas na asa, que consistiam de dois grandes nódulos cutâneos de aspecto tumoral, que mediram 4,2 x 3,8 cm e 2,8 x 2,2 cm de comprimento e largura, respectivamente. Os nódulos foram removidos cirurgicamente, fixados em formol a 10%, e as amostras foram processadas para histopatologia, coradas pela hematoxilina-eosina. Na análise histopatológica, observaram-se acantose e expressiva hiperceratose; várias células mostraram espongiose. O diagnóstico da bouba foi estabelecido pelo sinal patognomônico da presença de grandes corpúsculos de inclusão eosinofílicos intracitoplasmáticos (corpúsculos de Bollinger) nas células epiteliais da lesão tumoral. Este é o primeiro relato de infecção por poxvírus em ave selvagen no Estado do Pará, Brasil.

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Psittaciformes are one of the most endangered groups of birds, and several Brazilian species are classified between vulnerable and critically endangered. It is thus necessary to identify agents that cause infections in captive wild animals and to assess the risks posed thereof and to design interventions to minimize the possibility of disease outbreaks, leading to the conservation of endangered species. The purpose of this study was to identify enteropathogenic Escherichia coli (EPEC) cloacal isolates from asymptomatic psittacines in captivity and evaluate the distribution of the EPEC pathotype. Cloacal swabs were obtained from 46 asymptomatic birds, and resulting isolates were tested by polymerase chain reaction (PCR) for the presence of the attaching and effacing gene (eae) and bundle-forming pilus structural gene (bfpA) of EPEC. Samples from several species were tested, and three samples were found to be positive for the eae and bfpA genes and characterized as typical EPEC. This is the first report of this pathotype in asymptomatic psittacines. Although certain E. coli strains are more pathogenic than others, various factors should be considered when determining the potential of E. coli isolates to cause disease in captive psittacines. Birds that are positive for the EPEC (typical) strain could be zoonotic sources of infection, and may have acquired these strains through contact with humans or domestic animals. These findings may also be valuable for the long-term management of endangered species ex situ as one EPEC sample was isolated from a Red-tailed Amazon (Amazona brasiliensis).

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Leptospirosis may affect all domestic and wild animals as well as human beings. Some serological studies have shown the involvement of wild species in the epidemiology of the disease. Once captive wild animals are not much studied, especially in Brazil, the present study aimed to detect anti- Leptospira spp. antibodies in animals from Ribeirão Preto city zoo, in São Paulo state, Brazil. Blood samples were collected from captive birds, fish, reptiles and mammals, sinanthropics and free-living animals and also from employees between March and October, 2006. Four hundred and three blood samples were obtained, 388 animals' samples (110 reptiles, 143 birds, 110 mammals and 25 fish) and 15 humans'. The sera were analysed by Microscopic Agglutination Test using 22 serovars from pathological leptospiras and two from non-pathological serovars. Among the animal samples, 339 were from captive animals, and 49 from free-living ones, captured with traps inside the zoo. One hundred and three (103/388 = 26.5%) samples reacted to leptospirosis, ninety-two (92/339 = 27.1%) samples were from captive animals and eleven (11/49 = 22.4%) from free-living ones. All humans' samples were negative. Serological titles varied from 40 to 5.120, with predominance of titles between 40 and 80 and the most frequent serovars were Patoc, Andamana, Canicola, Icterohaemorrhagiae and Panama.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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O Curió Oryzoborus angolensis (Aves, Passeriformes, Oscines, Emberizinae) é uma espécie Neotropical muito conhecida e apreciada entre os criadores de pássaros no Brasil, por possuir canto melodioso e variado. O canto tem como função biológica o reconhecimento específico. A presença de repertórios vocais longos, variações populacionais e individuais pode ser um indicativo de aprendizagem vocal, que é o caso do Oryzoborus angolensis. O repertório representa os diferentes tipos de unidades que constituem o canto, as notas, emitidas durante a vocalização. No caso do canto do Curió a frase pode ser caracterizada como uma sequência de notas que se repetem. Analisamos as amostras de gravações de 26 indivíduos, sendo dezesseis de cativeiro e dez selvagens provenientes de diversas localidades do país. Identificamos e denominamos cada uma das 2414 notas gravadas com uma letra do alfabeto. As medidas dos parâmetros físicos das notas (duração, intervalo entre as notas, ritmo, frequência máxima e frequência mínima) apresentaram diferenças globais significativas, podendo ser um dos caracteres responsáveis pela função de reconhecimento específico. Observamos que as notas são constituídas principalmente por sons puros e amplamente moduladas, distribuídas de forma homogênea na amostra. Descrevemos a estrutura do canto, com a análise do repertório dos indivíduos de cativeiro e selvagem, apresentado diferenças estatisticamente significativas entre si. Considerando a distribuição dos diferentes tipos de notas emitidas por indivíduos,calculamos a entropia informacional, que forneceu um índice que correspondente à previsibilidade do canto individual.

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Chlamydophila psittaci is a bacterium that causes respiratory or systemic disease in birds and humans. Owing to the risk of transmission from asymptomatic birds to humans, the objective of this study was to detect the presence of Chlamydophila spp. in asymptomatic birds. Four hundred and three fecal samples or cloacal swabs were collected from domestic, wild or exotic birds. The 403 samples were examined by real time PCR specific for the 16S subunit of rRNA gene using SsoFastEvaGreen®SupermixTM (Bio-Rad) and melting curve analysis. Hemi-nested PCR specific for the OMP-A gene, accomplished in real-time PCR positive samples, was followed by sequencing of the amplified fragments to determine the genotype of C. psittaci. Real-time PCR was positive in 17 (4.21%) samples. Hemi-nested PCR revealed positivity in two samples previously positive by real-time PCR. Sequencing of the fragment amplified by hemi-nested PCR allowed for the identification of genotype A of C. psittaci in one sample. The results of this experiment show that the real-time PCR targeting the 16S rRNA gene followed by melting curve analysis can be used for diagnosis of Chlamydophila sp. in fecal samples of asymptomatic birds. The classification of the Chlamydophila species and the genotype of C. psittaci must be accomplished by PCR targeting the ompA gene and sequencing of the amplified fragments.

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Cockatoos are the distinctive family Cacatuidae, a major lineage of the order of parrots (Psittaciformes) and distributed throughout the Australasian region of the world. However, the evolutionary history of cockatoos is not well understood. We investigated the phylogeny of cockatoos based on three mitochondrial and three nuclear DNA genes obtained from 16 of 21 species of Cacatuidae. In addition, five novel mitochondrial genomes were used to estimate time of divergence and our estimates indicate Cacatuidae diverged from Psittacidae approximately 40.7 million years ago (95% CI 51.6–30.3 Ma) during the Eocene. Our data shows Cacatuidae began to diversify approximately 27.9 Ma (95% CI 38.1–18.3 Ma) during the Oligocene. The early to middle Miocene (20–10 Ma) was a significant period in the evolution of modern Australian environments and vegetation, in which a transformation from mainly mesic to xeric habitats (e.g., fire-adapted sclerophyll vegetation and grasslands) occurred. We hypothesize that this environmental transformation was a driving force behind the diversification of cockatoos. A detailed multi-locus molecular phylogeny enabled us to resolve the phylogenetic placements of the Palm Cockatoo (Probosciger aterrimus), Galah (Eolophus roseicapillus), Gang-gang Cockatoo (Callocephalon fimbriatum) and Cockatiel (Nymphicus hollandicus), which have historically been difficult to place within Cacatuidae. When the molecular evidence is analysed in concert with morphology, it is clear that many of the cockatoo species’ diagnostic phenotypic traits such as plumage colour, body size, wing shape and bill morphology have evolved in parallel or convergently across lineages.