56 resultados para Gymnotiformes


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Chilodonelids are small ciliated protozoans found worldwide and can be dangerous in culture conditions. This study presents morphometric data on the ciliate Chilodonella that is found in cultured Nile tilapia (Oreochromis niloticus), native bait fish tuvira (Gymnotus aff. inaequilabiatus) and native pacu (Piaractus mesopotamicus) and includes a histopathological assessment of the changes that occur in the pacu. For parasitic diagnosis, skin and gill samples were scraped onto slides, dried at room temperature, stained with Giemsa or impregnated with silver nitrate, and the measurements were obtained from photomicrographs. In the diseased pacu, the first gill arch was collected and fixed in a 10% buffered formalin solution for histopathological analysis. Parasite specimens from the different collection sites were identified morphologically as C. hexasticha Kiernik (1909). Diseased fish exhibited depigmentation, skin ulceration, scale loss, excessive mucus production and gill lesions. Histopathological analysis of pacu gills displayed epithelial proliferation with mononuclear inflammatory infiltrate, hemorrhages, and scattering necrosis. In Brazilian-farmed fish this is the first record of C. hexasticha, which has great pathogenic potential in cultured freshwater species. In addition, two new hosts are presented. © 2012 Elsevier B.V.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Este trabalho teve como principal objetivo estudar a riqueza e a composição da ictiofauna de igarapés de cabeceiras da região do interflúvio Madeira-Purus, e investigar se as variações encontradas podem ser relacionadas às características ambientais e/ou as bacias de drenagem. Foram empreendidas duas campanhas de coletas com duração de aproximadamente 20 dias cada, entre os meses de abril a julho de 2007, totalizando 22 igarapés amostrados, pertencentes a cinco bacias diferentes. Os peixes foram capturados com puçás e pequena rede de arrasto. Nos mesmos locais e períodos de amostragem foram obtidos dados sobre as características estruturais dos igarapés e físico-químicas da água. Foram capturados 5509 exemplares de peixes, pertencentes a 86 espécies, 22 famílias e seis ordens. Characiformes foi o grupo taxonômico mais diversificado seguido de Gymnotiformes e Siluriformes. A composição de espécies foi influenciada principalmente pela largura e profundidade do canal, vazão e tipo de substratos. A presença de ambientes distintos no entorno dos igarapés amostrados também contribuiu para as diferenças ictiofaunísticas encontradas. As bacias de drenagem tiveram forte efeito sobre as comunidades de peixes. Entretanto, os resultados obtidos não permitem afirmar, com segurança, se as diferenças na composição de espécies de peixes entre as bacias estão refletindo as condições históricas ou as diferenças nas condições ambientais.

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A survey was carried out on the fish species in the Sorocaba. River basin, the main tributary of the left margin of the Tiete River, located in the State of Sao Paulo, Brazil. The species were collected with gill nets. After identification of the specimens, their relative abundance, weight and standard length were determined. Up to the present moment there are not any studies that focus this subject in this hydrographic basin. Fifty-three species, distributed in eighteen families and six orders were collected. Characiformes were represented by twenty-eight species, Siluriformes by seventeen species, the Gymnotiformes by three species, Perciformes and Cyprinodontiformes by two species, and the Synbranchiformes by one species. Among the collected species there were two exotic. The most abundant species were Astyanax fasciatus and Hypostomus ancistroides. In relation to total weight the most representative species were Hoplias malabaricus and Hypostomus ancistroides. Cyprinus carpio, Prochilodus lineatus, Schizodon nasutus and Hoplias malabaricus were the most representative species in relation to average weight. Largest standard length were recorded for Sternopygus macrurus, Steindachnerina insculpta, Eigenmannia aff. virescens and Cyprinus carpio.

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Nos peixes, durante a vida reprodutiva o desenvolvimento gonadal é cíclico e anual. As alterações estruturais das gônadas de machos e fêmeas provêm parâmetros úteis para a sua classificação macroscópica e microscópica. Porém, o desenvolvimento das células germinativas, nem sempre é consoante com os diferentes tipos de classificação e, machos e fêmeas nem sempre parecem concatenados. Neste estudo, aplicando-se propostas recentes, utilizadas primariamente para peixes derivados, notadamente os Perciformes marinhos, e tomando como modelo experimental representantes da série Otophysi, Hoplias malabaricus (Characiformes), Tanichthys albonubes (Cypriniformes), Sorubim lima (Siluriformes) e Gymnotus sp. (Gymnotiformes), e dos Perciformes Neotropicais, Cichla temensis, foram descritos, comparativamente, os eventos iniciais da oogênese e da espermatogênese, assim como o desenvolvimento oocitário a fim de traçar um paralelo entre grupos basais e derivados. A partir dos resultados, verificou-se que a maioria dos eventos morfológicos durante o desenvolvimento oocitário é similar entre grupos basais e derivados. Os Perciformes de água doce divergem dos grupos basais por duas características: a presença de inclusões lipídicas, que surgem no citoplasma perinuclear após o início da formação dos alvéolos corticais e deposição de vitelo e por uma tênue proteólise do vitelo durante a maturação final. A foliculogênese e espermatogênese não apresentam divergências e parecem ser processos conservados entre os Teleostei. Durante a fase de Regeneração, os eventos iniciais desses processos em fêmeas e machos, respectivamente, são responsáveis por altos índices de proliferação das células germinativas, quando comparado às demais fases. Além disso, analisou-se ...(Resumo completo, clicar acesso eletrônico abaixo)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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

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

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Communication signals are shaped by the opposing selection pressures imposed by predators and mates. A dynamic signal might serve as an adaptive compromise between an inconspicuous signal that evades predators and an extravagant signal preferred by females. Such a signal has been described in the gymnotiform electric fish, Brachyhypopomus gauderio, which produces a sexually dimorphic electric organ discharge (EOD). The EOD varies on a circadian rhythm and in response to social cues. This signal plasticity is mediated by the slow action of androgens and rapid action of melanocortins. My dissertation research tested the hypotheses that (1) signal plasticity is related to sociality levels in gymnotiform species, and (2) differences in signal plasticity are regulated by differential sensitivity to androgen and melanocortin hormones. To assess the breadth of dynamic signaling within the order Gymnotiformes, I sampled 13 species from the five gymnotiform families. I recorded EODs to observe spontaneous signal oscillations after which I injected melanocortin hormones, saline control, or presented the fish with a conspecific. I showed that through the co-option of the ancient melanocortin pathway, gymnotiforms dynamically regulate EOD amplitude, spectral frequency, both, or neither. To investigate whether observed EOD plasticities are related to species-specific sociality I tested four species; two territorial, highly aggressive species, Gymnotus carapo and Apteronotus leptorhynchus, a highly gregarious species, Eigenmannia cf. virescens , and an intermediate short-lived species with a fluid social system, Brachyhypopomus gauderio. I examined the relationship between the androgens testosterone and 11-ketotestosterone, the melanocortin α-MSH, and their roles in regulating EOD waveform. I implanted all fish with androgen and blank silicone implants, and injected with α-MSH before and at the peak of implant effect. I found that waveforms of the most territorial and aggressive species were insensitive to hormone treatments; maintaining a static, stereotyped signal that preserves encoding of individual identity. Species with a fluid social system were most responsive to hormone treatments, exhibiting signals that reflect immediate condition and reproductive state. In conclusion, variation in gymnotiform signal plasticity is hormonally regulated and seems to reflect species-specific sociality.

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Weakly electric fish use electric fields for communication and location of objects. Electroreceptors that are located around the mouth and along the length of the body are used in order to "decode" the electric organ discharge (EOD). The knollenorgan in Mormyriformes aids in distinguishing between different EODs. Gymnotiformes, however, have no such electroreceptors. How then are Gyrnnotiformes distinguishing between conspecific EODs? In this study scan sampling was investigated to determine whether Gymnotus carapo uses this mechanism to differentiate between distinct EODs. After determining whether Gymnotus carapo was discriminating between neighbor and stranger EODs, these same EODs were played to the test fish either jittered (the EOD of the test fish and that of the playback could not coincide) or non-jittered (the two EODs could coincide). The results show that the test fish was not discriminating between neighbor and stranger EODs. Thus, conclusions about the use of scan sampling by Gymnotus carapo to distinguish between EODs cannot be made.