Apicomplexa parasites in the brains of road-killed wild animals in the State of Paraná, Brazil
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Published:2022-03-25
Issue:3
Volume:43
Page:1365-1372
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ISSN:1679-0359
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Container-title:Semina: Ciências Agrárias
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language:
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Short-container-title:Semina: Ciênc. Agrár.
Author:
Balbino Letícia SantosORCID, , Bernardes Juliana CorreaORCID, Paschoal Aline Ticiani PereiraORCID, Santomauro Rafael AlvesORCID, Caldart Eloiza TelesORCID, Pasquali Aline Kuhn SbruzziORCID, Matos Andressa Maria Rorato Nascimento deORCID, Baptista Ana Angelita SampaioORCID, Mitsuka-Breganó ReginaORCID, Navarro Italmar TeodoricoORCID, Pinto-Ferreira FernandaORCID, , , , , , , , , ,
Abstract
The use of run-over wild animals is an efficient strategy for scientific research of pathogens. The aim of this study was to detect DNA from phylum Apicomplexa in the brain of road-killed wild animals from the NorthCentral and North Pioneer mesoregions of Paraná, Brazil. Pre-established transects were run weekly; when found, animals were packed into individual packages and sent for autopsy. The brain fragments were collected and kept at -20 ° C until processing. The DNA extracted from the samples was amplified by nested-PCR for the 18S rDNA gene from the phylum Apicomplexa. All positive samples were submitted to DNA sequencing to define the species. A total of 90 animals were collected, however, only 68 animals (75.6%) that had integrity of the brain were included in the study. It was possible to identify the species by DNA sequencing in four samples: Sarcocystis spp. was identified in one Colaptes melanochloros (Greenbarred woodpecker) and one Mazama gouazoubira (Gray brocket). Neospora caninum was observed in a Leopardus pardalis (Ocelot) and T. gondii was present in Didelphis albiventris (white-eared opossum). The results indicated that parasites with economic and public health relevance were present in wild animals, which may favor infection of humans and animals.
Publisher
Universidade Estadual de Londrina
Subject
General Agricultural and Biological Sciences
Reference17 articles.
1. Cavalcante, G. T., Monteiro, R. M., Soares, R. M., Nishi, S. M., Alves, A. F., Neto, Esmerini, P. de O., & Gennari, S. M. (2011). Shedding of Neospora caninum oocysts by dogs fed different tissues from naturally infected cattle. Veterinary Parasitology, 179(1-3), 220-223. doi: 10.1016/J.VETPAR.2011.02.026 2. Centro Brasileiro de Ecologia de Estradas (2020). Banco de atropelamento de fauna selvagem. Lavras: CBEE. 3. Dubey, J. P., Calero-Bernal, R., Rosenthal, B. M., Speer, C. A., & Fayer, R. (2016). Sarcocystosis of Animals and Humans (2nd ed.). Boca Raton: CRC Press. Retrieved from https://www.routledge.com/ Sarcocystosis-of-Animals-and-Humans/Dubey-Calero-Bernal-Rosenthal-Speer-Fayer/p/book/97803675 75458 4. Dubey, J. P., Johnson, G. C., Bermudez, A., Suedmeyer, K. W., & Fritz, D. L. (2001). Neural sarcocystosis in a straw-necked ibis (carphibis spinicollis) associated with a sarcocystis neurona like organism and description of muscular sarcocysts of an unidentified sarcocystis species. Journal of Parasitology, 87(6), 1317-1322. doi: 10.1645/0022-3395(2001)087[1317:NSIASN]2.0.CO;2 5. Ebaii, V. V., Nardoni, S., Maestrini, M., Perrucci, S., & Mancianti, F. (2021). Serological Survey on the Ocurrence of Rickettisia spp., Neospora caninum, Bartonella henselae and Toxoplasma gondii in Cats from Tuscany (Central Italy). Animals : Na Open Access Jorunal from MDPI, 11(6). 1-8. doi: 10.3390/ ANI11061842
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