12 resultados para Sibynomorphus


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This study describes the male reproductive cycle of Sibynomorphus mikanii from southeastern Brazil considering macroscopic and microscopic variables. Spermatogenesis occurs during spring-summer (September-December) and spermiogenesis or maturation occurs in summer (December-February). The length and width of the kidney, the tubular diameter, and the epithelium height of the sexual segment of the kidney (SSK) are larger in summer-autumn (December-May). Histochemical reaction of the SSK [periodic acid-Schiff (PAS) and bromophenol blue (BB)] shows stronger results during summer-autumn, indicating an increase in the secretory activity of the granules. Testicular regression is observed in autumn and early winter (March-June) when a peak in the width of the ductus deferens occurs. The distal ductus deferens as well as the ampulla ductus deferentis exhibit secretory activities with positive reaction for PAS and BB. These results suggest that this secretion may nourish the spermatozoa while they are being stored in the ductus deferens. The increase in the Leydig cell nuclear diameter in association with SSK hypertrophy and the presence of sperm in the female indicate that the mating season occurs in autumn when testes begin to decrease their activity. The peak activity of Leydig cells and SSK exhibits an associated pattern with the mating season. However, spermatogenesis is dissociated of the copulation characterizing a complex reproductive cycle. At the individual level, S. mikanii males present a continuous cyclical reproductive pattern in the testes and kidneys (SSK), whereas at the populational level the reproductive pattern may be classified as seasonal semisynchronous. © 2012 Wiley Periodicals, Inc.

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Fatores ecológicos como a utilização do ambiente e a alimentação, podem influenciar na morfologia corporal e cefálica de um organismo, porém, esta também pode ser o reflexo da linhagem filogenética a que ele pertence. A subfamília Dipsadinae inclui serpentes sul-americanas formadas por dois clados, um incluindo Geophis e Atractus e outro incluindo Dipsas, Ninia, Sibon e Sibynomorphus, que formam a tribo Dipsadini. As serpentes desta tribo apresentam um alto grau de modificações na morfologia corporal e cefálica relacionadas ao ambiente e a alimentação malacófaga. As espécies de Dipsas e Sibon possuem especializações relacionadas à utilização do ambiente arborícola, conferindo um melhor desempenho na locomoção pela vegetação, enquanto que as espécies de Sibynomorphus, em sua grande maioria, são adaptadas ao ambiente terrestre. Quanto à alimentação todas elas apresentam, em diferentes graus, uma série de modificações cranianas relacionadas à manipulação e ingestão de gastrópodes, lesmas e caramujos. Considerando que existe uma relação direta entre a forma da cabeça e a dieta, este trabalho tem como objetivo analisar as divergências da morfologia cefálica relacionadas à dieta entre espécies de Dipsas e Sibynomorphus, assim como analisar possíveis convergências entre espécies destes gêneros e Tomodon dorsatus, espécie da tribo Tachymenini, reconhecidamente especialista em lesmas. Para isto este trabalho está estruturado em duas partes: a primeira refere-se à Introdução geral, onde é apresentada uma ampla abordagem sobre as adaptações morfológicas relacionadas à alimentação dos Dipsadini, assim como as vantagens da utilização da técnica de morfometria geométrica em estudos morfológicos; e a segunda parte refere-se ao trabalho propriamente dito, intitulado “Ecomorfologia de três espécies de Dipsas Laurenti, 1768 e Sibynomorphus Fitzinger, 1843 (Dipsadidae: Dipsadinae)”.

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Although snake infralabial glands are generally constituted of mucous cells, among dipsadines, they are much more developed and predominantly serous in nature, possibly due to the peculiar feeding habits of some species of this group, the ""goo-eaters"", which feed on soft and viscous invertebrates. We compared the morphology and histochemistry of the infralabial glands of three goo-eater species of Southeast Brazil, Atractus reticulatus, Dipsas indica and Sibynomorphus mikanii. In A. reticulatus the glands are formed by mixed acini composed of mucous and seromucous cells and in D. indica, they are composed of mucous tubules and seromucous acini. In S. mikanii the glands are organized in seromucous acini; mucous cells are restricted to the gland anterior region and to the duct lining epithelium. Ultrastructurally, secretory granule electron density varies from low to moderate, depending on their mucous or seromucous nature. The results indicate a large morphological and histochemical variation in the infralabial glands, probably reflecting differences in the secretion chemical composition and in feeding specialization among the three species. The protein content in the secretory cells can be related with the presence of toxins that can be used in chemical prey immobilization or detaching of snails from their shells. (c) 2007 Elsevier Ltd. All rights reserved.

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A retrospective survey of 473 cases of snake bite admitted to a Brazilian teaching hospital from 1984 to 1990 revealed 91 cases of bite without envenoming and/or caused by non-venomous snakes. In 17 of these cases the snake was identified, and one patient was bitten by a snake-like reptile (Amphisbaena mertensii). In 43 cases diagnosis was made on clinical grounds (fang marks in the absence of signs of envenoming). The other 30 cases were of patients who complained of being bitten but who did not show any sign of envenoming or fang mark. Most cases occurred in men (66;73%), in the 10-19 years age group (26;29%), in the lower limbs (51/74;69%), between 6 A. M. and 2 P.M. (49;61%) and in the month of April (16; 18%). One patient bitten by Philodryas olfersii developed severe local pain, swelling and redness at the site of the bite, with normal clotting time. The patient bitten by Drymarcon corais was misdiagnosed as being bitten by a snake of the genus Bothrops, was given the specific antivenom, and developed anaphylaxis. One patient bitten by Sibynomorphus mikanii presented prolonged clotting time, and was also given antivenom as a case of Bothrops bite. Correct identification of venomous snakes by physicians is necessary to provide correct treatment to victims of snake bite, avoiding unnecessary distress to the patient, and overprescription of antivenom, which may eventually cause severe untoward effects.

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Micrurus corallinus (Merrem, 1820) kept in laboratory animal rooms swallow voluntarily various colubrid species. The most accepted species belong to the genera Sibynomorphus Fitzinger, 1843, Oxyrhopus Wagler, 1830 and Liophis Wagler, 1830. The voluntary feeding guaranteed resistance against pathogenic agents. The forced feeding was unsatisfactory due to stress resulting from handling, feeding frequency (30 days), susceptibility to pathogenic agents and high occurrence of pathologies.

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A relatively large amount of variation occurs in the reproductive ecology of tropical snakes, and this variation is generally regarded as being a consequence of seasonality in climate and prey availability. In some groups, even closely related species may differ in their reproductive ecology; however, in others it seems to be very conservative. Here we explore whether characters related to reproduction are phylogenetically constrained in a monophyletic group of snakes, the subfamily Dipsadinae, which ranges from Mexico to southern South America. We provide original data on reproduction for Leptodeira annulata, Imantodes cenchoa, and three species of Sibynomorphus from southern, southeastern and central Brazil, and data from literature for other species and populations of dipsadines. Follicular cycles were seasonal in Atractus reticulatus, Dipsa, albifrons, Hypsiglena torquata, Leptodeira maculata, L. punctata, Sibynomorphus spp. and Sibon sanniola from areas where climate is seasonal. In contrast, extended or continuous follicular cycles were recorded in Dipsas catesbyi, D. neivai, Imantodes cenchoa, Leptodeira annulata, and Ninia maculata from areas with seasonal and aseasonal climates. Testicular cycles also varied from seasonal (in H. torquiata) to continuous (in Dipsa,5 spp., Leptodeira annulata, L. maculata, N. maculata, and Sibynomorphus spp.). Most dipsadines are small (less than 500 rum SVL), and females attain sexual maturity with similar relative body size than males. Sexual dimorphism occurred in terms of SVL and tail length in most species, and clutch size tended to be small (less than five eggs). Combat behavior occurs in Imantodes cenchoa, which did not show sexual size dimorphism. Reproductive timing, for both females and males, varied among species but in general there were no differences between the tribes of Dipsadinae in most of the reproductive characteristics, such as mean body size, relative size at sexual maturity, sexual size and tail dimorphism, duration of vitellogenesis or egg-carrying in oviducts.

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Coral snakes in the genus Micrurus are widely distributed in the Neotropics, with more than 50 species already described in this region. They are primarily ground or leaf litter dwellers, feed on snakes or other elongate vertebrates, and tend to reproduce during the rainy season. We present data on the biology of Micrurus pyrrhocryptus from two semideciduous forests of Mato Grosso do Sul state, western Brazil. Two snake species were consumed: the dipsadid Sibynomorphus lavillai and the typhlopid Typhlops brongersmianus. Sexual dimorphism is marked in M. pyrrhocryptus. with males attaining larger sizes and having longer tails. Activity was concentrated in the wet season, when reproduction occurs. The defensive behavior in this species is similar to that displayed by other Micron's, although less pronounced.

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A subfamília Dipsadinae engloba 22 gêneros da fauna de colubrídeos neotropicais e 24 outros considerados incertae sedis, mas com caracteres comuns aos dipsadíneos. Os gêneros Dipsas, Sibon, Sibynomorphus e Tropidodipsas formalmente compõem a tribo Dipsadini a qual é considerado um grupo monofilético bem fundamentado. A tribo é caracterizada por serpentes que apresentam um alto grau de especialização morfológica, relacionado ao modo de alimentação e adaptações ao hábitat em que vivem. O gênero Dipsas inclui aproximadamente 32 espécies, distribuídas do México até a América do Sul, é constituído por serpentes de corpo delgado e alongado, com cabeça curta e proeminente, olhos grandes, pupilas verticais e ausência de sulco mentoniano. As espécies são notavelmente variáveis na coloração, número de escamas e outros caracteres morfológicos. Essa extrema variação tem dificultado a definição dos limites entre as espécies e a interpretação de padrões de variação geográfica. A grande variação morfológica dos caracteres presentes nas espécies D. catesbyi e D. pavonina, associada à dificuldade de identificação dos táxons e à escassez de informações sobre as suas distribuições geográficas, justificam a necessidade de uma análise mais detalhada destas espécies. Para tal, o presente estudo foi dividido em dois capítulos. O primeiro capítulo corresponde à análise da variação individual, sexual e geográfica de D. catesbyi e D. pavonina, e a comparação dos caracteres morfológicos entre as duas espécies. O segundo corresponde à análise da macroestrutura das glândulas cefálicas nestas duas espécies, relacionando-as com outros táxons de Dipsadinae.

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Pós-graduação em Ciências Biológicas (Zoologia) - IBRC

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Pós-graduação em Biologia Animal - IBILCE

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

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Throughout the analysis of the collections JJ, CEVAP, IBSP, ZUEC and UEL, a study on the ophiofauna of Botucatu was made. We present a preliminary list of the species of snakes here found, with small comments on their natural history. The number of specimens studied was 943. We registered, for Botucatu, 51 species of snakes, distributed in 31 genera and 6 families. The families here found were Anomalepididae (1 spp.), Boidae (1 spp.), Colubridae (7 spp.), Dipsadidae (32 spp.), Elapidae (3 spp.) and Viperidae (7 spp.). The analysis of the relative abundance shows that Dipsadidae was the most abundant family, with n=425 (44,83%), followed by Viperidae, with n=388 (40,93%), Boidae, n=62 (6,54%), Colubridae, n=57 (6,01%), Elapidae, n=15 (1,6%) and, at last, Anomalepididae, with n=1 (0,1%). The five more representative species were Crotalus durissus (n=135, 14,31%), Oxyrhopus guibei (n=123, 12,8%) Bothropoides jararaca (N=121, 12,6%), Bothropoides neuwiedi (N=95, 9,88%) and Sibynomorphus mikani (N=65, 6,76%). A higher number of individuals collected was registered for the months of january to april that, together, sum up to almost 50% of the total. The months of june to september registered a lower number of individuals. The spacial distribution analysis shows that a higher number of snakes was found on the country areas of Botucatu (n=270, 41,54%), specially on pastures. Due to the lack of studies of Botucatu’s ophiofauna, this list is probably underestimated. It is mandatory that future studies approaching this group and its ecological components on this region are made, using appropriate sampling methodologies, in order to form an accurate list of the species of snakes of Botucatu