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The development of Neoechinorhynchus buttnerae (Eoacanthocephala: Neoechinorhynchidae) in its intermediate host Cypridopsis vidua in Brazil

  • Felipe de Sousa Lourenço , Germán Augusto Murrieta Morey EMAIL logo and José Celso de Oliveira Malta
Published/Copyright: April 13, 2018
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Abstract

The family Neoechinorhynchidae includes seven species of Neoechinorhynchus from freshwater fishes of Brazil. Although several Neoechinorhynchus species are cited infecting different fish species in Brazil, there is a lack of information concerning to their life cycle and the identification of the intermediate hosts. Thus, the aim of the present study was to describe the development of Neoechinorhynchus buttnerae in its intermediate host collected in a fish farm located in Rio Preto da Eva, Amazonas, Brazil. To verify the presence of N. buttnerae in the fish pond, twenty Colossoma macropomum were captured and analyzed, being corroborated the presence of this parasite species. Samples of plankton were also collected, finding the ostracod Cypridopsis vidua as the intermediate host. For the description of the larvae development, a laboratory experimental procedure was conducted by feeding the collected ostracods with the eggs of the adult specimens taken from the sampled fish. To observe the stages of development an artificial hatch was performed. Every stage of development was photographed, measured, drawn and described. The time of development of the immature stages of N. buttnerae was 29 days, reporting the stages: acanthor, acanthella (with eight developmental changes) and cystacanth. As high infections by N. buttnerae causes morphological damages to the intestine and may compromise the quality of C. macropomum and in consequence the production of fish farmers in the Brazilian Amazon region, the knowledge of its intermediate host and the understanding of its life cycle represents a useful information to prevent and combat infections by this parasite.

Acknowledgements

The authors are grateful to the National Council for Research and Technological Development (Conselho Nacional de Pesquisa e Desenvolvimento Tecnológico, CNPq, Brazil) for its support through a research fellowship for Felipe Lourenço and Germán Augusto Murrieta Morey.

References

Al-Sady R.S. 2009. The Life Cycle and Larval Development of Neoechinorhynchus iraqensis. Al-Haitham Journal for Pure and Applied Science, 22, 9–14Search in Google Scholar

Amato J.F.R., Boeger W.A., Amato S.B. (Eds) 1991. Protocolos para laboratório coleta e processamento de parasitas do pescado. Imprensa Universitária, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brasil, pp. 81Search in Google Scholar

Chagas E. C. 2015. Infecções por acantocéfalos: um problema para a produção de peixes. In: (Eds: M. Tavares-Dias, W.S. Mariano). Aquicultura no Brasil: novas perspectivas. São Carlos, Editora Pedro e João. (In Portuguese)Search in Google Scholar

Chagas E.C., Maciel P.O., Aquino-Pereira S.L. 2015. Infecções por acantocéfalos: um problema para a produção de peixes. In: (Eds: M. Tavares-Dias, W.S. Mariano). Aquicultura no Brasil: novas perspectivas. Vol. 1. Aspectos Biológicos, Fisiológicos e Sanitários de Organismos Aquáticos. São Carlos: Pedro & João Editores, cap. 16, São Paulo, 305–328. (In Portuguese)Search in Google Scholar

DeMont D.J., Corkum K.C. 1982. The life cycle of Octospiniferoides chandleri Bullock, 1957 (Acanthocephala: Neoechinorhynchidae) with some observations on parasite-induced, photophilic behavior in ostracods. The Journal of Parasitology, 68, 125–13010.2307/3281334Search in Google Scholar

Golvan Y. J. 1956. Acanthocéphales d’Amazonie. Redescription d”Oligacanthorhynchus iheringi Travassos 1916 et description de Neoechinorhynchus buttnerae n. sp. (Neoacanthocephala-Neoechinorhynchidae). Annales de Parasitologie Humaine et Comparée, 31, 500–524. (In French)10.1051/parasite/1956315500Search in Google Scholar

Hopp W.B. 1954. Studies on the morphology and life cycle of Neoechinorhynchus emydis (Leidy), an acanthocephalan parasite of the map turtle, Graptemys geographica (Le Sueur). The Journal of Parasitology, 40, 284–29910.2307/3273740Search in Google Scholar

Horne D.J., Cohen A., Martens K. 2002. Taxonomy, morphology and biology of Quaternary and living Ostracoda. In: (Eds J. Holmes, A. Chivas). The Ostracoda: applications in Quaternary research. Geophysical Monograph 131. American Geophysical Union, Washington D.C, pp. 5–3610.1029/131GM02Search in Google Scholar

Jerônimo G.T., de Pádua S.B., de Andrade Belo M.A., Chagas E.C., Taboga S. R., Maciel P.O., Martins M.L. 2017. Neoechinorhynchus buttnerae (Acanthocephala) infection in farmed Colossoma macropomum: A pathological approach. Aquaculture, 469, 124–12710.1016/j.aquaculture.2016.11.027Search in Google Scholar

Kennedy C.R. 2006. Ecology of the Acanthocephala. Cambridge University Press. New York, USA, pp. 24910.1017/CBO9780511541902Search in Google Scholar

Malta J.D.O., Gomes A.L.S., de Andrade S.M.S., Varella A.M.B. 2001. Massive infestation by Neoechinorhynchus buttnerae Golvan, 1956 (Eoacanthocephala: Neochinorhynchidae) in young “tambaquis” Colossoma macropomum (Cuvier, 1818) cultured in the Central Amazon. Acta Amazonica, 31, 133–14310.1590/1809-43922001311143Search in Google Scholar

Matos L. V., de Oliveira M. I. B., Gomes A. L. S., da Silva G. S. 2017. Morphological and histochemical changes associated with massive infection by Neoechinorhynchus buttnerae (Acanthocephala: Neoechinorhynchidae) in the farmed freshwater fish Colossoma macropomum Cuvier, 1818 from the Amazon State, Brazil. Parasitology Research, 116, 1029–1037. 10.1007/s00436-017-5384-3Search in Google Scholar PubMed

Merritt S.V., Pratt I. 1964. The life history of Neoechinorhynchus rutili and its development in the intermediate host (Acanthocephala: Neoechinorhynchidae). The Journal of Parasitology, 50, 394–40010.2307/3275843Search in Google Scholar PubMed

Noga E.J. (Ed.) 2010. Fish Disease: Diagnosis and Treatment. 2nd Edition. Iowa State University: Library of Congress Catalogin, pp. 53610.1002/9781118786758Search in Google Scholar

Oliveira S.R.K.S., Bezerra M.V.P., Belo M.A.A. 2015. Estudo da endofauna parasitária do tambaqui Colossoma macropomum, em pisciculturas do Vale do Jamari, Estado de Rondônia. Enciclopédia Biosfera 11, 1026–1041. (In Portuguese)Search in Google Scholar

Ostrensky A., Boeger W. A. (Eds) 1998. Piscicultura: fundamentos e técnicas de manejo. Guaíba: Agropecuária, pp. 211 (In Portuguese)Search in Google Scholar

Ostrenky, A., Boeger, W. A., Chammas, M. A. 2008. Potencial para o desenvolvimento da aquicultura no Brasil. In: (Eds A. Ostrensky, J.R. Borghetti, D. Soto) Aquicultura no Brasil: O desafio é crescer. Brasília, pp. 276. (In Portuguese)Search in Google Scholar

Ribeiro-Neto T.F., da Silva A.H.G., Guimarães I.M., Gomes M.V.T. 2016. Piscicultura familiar extensiva no baixo São Francisco no estado de Sergipe. Acta of Fisheries and Aquatic Resources, 4, 62–69Search in Google Scholar

Santos C.P., Gibson D.I., Tavares L.E., Luque J.L. 2008. Checklist of Acanthocephala associated with the fishes of Brazil. Zootaxa, 1938, 1–2210.11646/zootaxa.1938.1.1Search in Google Scholar

Santos E. F., Tavares-Dias M., Pinheiro D. A., Neves L. R., Marinho R. G. B., Dias M. K. R. 2013. Fauna parasitária de tambaqui Colossoma macropomum (Characidae) cultivado em tanquerede no Estado do Amapá, Amazônia Oriental. Acta Amazônica, 43, 106–112. 10.1590/1809-4392201400974Search in Google Scholar

Silva-Gomes A. L., Gomes Coelho-Filho J., Viana-Silva W., Braga- Oliveira M. I., Bernardino G., Costa J. I. 2017. The impact of Neoechinorhynchus buttnerae (Golvan, 1956) (Eoacanthocephala: Neochinorhynchidae) outbreaks on productive and economic performance of the tambaqui Colossoma macropomum (Cuvier, 1818), reared in ponds. Latin American Journal of Aquatic Research, 45, 496–500. 10.3856/vol45issue2-fulltext-25Search in Google Scholar

Tavares-Dias M., Moraes F. R., Martins M. L., Kronka S. N. 2001. Fauna parasitária de peixes oriundos de pesque-pagues do município de Franca, São Paulo Brasil. II. Metazoários. Revista Brasileira de Zoologia, 18, 81–95. (In Portuguese)10.1590/S0101-81752001000500006Search in Google Scholar

Uglem G.L. 1972. The life cycle of Neoechinorhynchus cristatus Lynch, 1936 (Acanthocephala) with notes on the hatching of eggs. The Journal of Parasitology, 58, 1071–107410.2307/3278138Search in Google Scholar PubMed

Uglem G.L., Larson O.R. 1969. The life history and larval development of Neoechinorhynchus saginatus Van Cleave and Bangham, 1949 (Acanthocephala: Neoechinorhynchidae). The Journal of Parasitology, 55, 1212–121710.2307/3277260Search in Google Scholar

Ward H.L. 1940. Studies on the life history of Neoechinorhynchus cylindratus (Van Cleave, 1913) (Acanthocephala). Transactions of the American Microscopical Society, 59, 327–34710.2307/3222550Search in Google Scholar

Received: 2017-11-23
Revised: 2018-2-5
Accepted: 2018-2-13
Published Online: 2018-4-13
Published in Print: 2018-6-26

© 2018 W. Stefański Institute of Parasitology, PAS

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