131 resultados para Myotis sodalis
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We investigate the population genetic structure of the Maghrebian bat, Myotis punicus, between the mainland and islands to assess the island colonization pattern and current gene flow between nearby islands and within the mainland. Location North Africa and the Mediterranean islands of Corsica and Sardinia. Methods We sequenced part of the control region (HVII) of 79 bats across 11 colonies. The phylogeographical pattern was assessed by analysing molecular diversity indices, examining differentiation among populations and estimating divergence time. In addition, we genotyped 182 bats across 10 colonies at seven microsatellite loci. We used analysis of molecular variance and a Bayesian approach to infer nuclear population structure. Finally, we estimated sex-specific dispersal between Corsica and Sardinia. Results Mitochondrial analyses indicated that colonies between Corsica, Sardinia and North Africa are highly differentiated. Within islands there was no difference between colonies, while at the continental level Moroccan and Tunisian populations were highly differentiated. Analyses with seven microsatellite loci showed a similar pattern. The sole difference was the lack of nuclear differentiation between populations in North Africa, suggesting a male-biased dispersal over the continental area. The divergence time of Sardinian and Corsican populations was estimated to date back to the early and mid-Pleistocene. Main conclusions Island colonization by the Maghrebian bats seems to have occurred in a stepping-stone manner and certainly pre-dated human colonization. Currently, open water seems to prevent exchange of bats between the two islands, despite their ability to fly and the narrowness of the strait of Bonifacio. Corsican and Sardinian populations are thus currently isolated from any continental gene pool and must therefore be considered as different evolutionarily significant units (ESU).
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M. myotis and M. blythii are two sibling species of bats that live sympatrically over wide areas of the Western Palearctic region, and which often coexist intimately in their nursery roosts. According to the principle of <<limiting similarity>> this cohabitation should imply an interspecific ecological differentiation. The hypothesis of a niche separation at the trophic level is tested here. The fecal analysis of 300 droppings collected from a zone of sympatry shows a clear interspecific differentiation in diets : M. myotis eats mostly Carabidae (Coleoptera), whereas M. blythii captures essentially Tettigoniidae, Gryllidae and Acrididae (Orthoptera). Because they consume exclusively terrestrial arthropods, M. myotis and M. blythii are typical ground and/or grass gleaning bats. However, despite their narrow niches they are probably not specialized in the predation of only some definite categories of prey. The narrow diets probably reflect the high specialization of their modes of resource exploitation: M. myotis and M. blythii prey upon ground arthropods and they are likely to select for different foraging;g habitats. M. myotis probably prefers wooded feeding grounds (Carabidae) whereas M. blythii exploits herbaceous habitats (Orthoptera). The strong trophic segregation observed in sympatry between M. myotis and M. blythii shows that the interspecific competition is distinctly much weaker than the intraspecific one. This would explain the stable, intimate co-existence of these two virtual competitors.
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1. Niche theory predicts that the stable coexistence of species within a guild should be associated, if resources are limited, with a mechanism of resource partitioning. Using extensive data on diets, the present study attempts: (i) to test the hypothesis that, in sympatry, the interspecific overlap between the trophic niches of the sibling bat species Myotis myotis and M. blythii-which coexist intimately in their roosts-is effectively lower than the two intraspecific overlaps; (ii) to assess the role played by interspecific competition in resource partitioning through the study of trophic niche displacement between several sympatric and allopatric populations. 2. Diets were determined by the analysis of faecal samples collected in the field from individual bats captured in various geographical areas. Trophic niche overlaps were calculated monthly for all possible intraspecific and interspecific pairs of individuals from sympatric populations. Niche breadth was estimated from: (i) every faecal sample; (ii) all the faecal samples collected per month in a given population (geographical area). 3. In every population, the bulk of the diets of M. myotis and M. blythii consisted of, respectively, terrestrial (e.g. carabid beetles) and grass-dwelling (mostly bush crickets) prey. All intraspecific trophic niche overlaps were significantly greater than the interspecific one, except in Switzerland in May when both species exploited mass concentrations of cockchafers, a non-limiting food source. This clearcut partitioning of resources may allow the stable, intimate coexistence observed under sympatric conditions. 4. Relative proportions of ground-and grass-dwelling prey, as well as niche breadths (either individual or population), did not differ significantly between sympatry and allopatry, showing that, under allopatric conditions, niche expansion does not take place. This suggests that active interspecific competition is not the underlying mechanism responsible for the niche partitioning which is currently observed between M. myotis and M. blythii.
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Franc. Philelfi orationes (34). - Philelfus Francisco Sforcie (92). - Guarinus Veron. Conrado Alcaldo (96). - De matrimonio inter Stephanum Salvanum et Margaritam Pontam (96 v°). - Plutarchus, de liberis educandis, interprete Garino Veron. (101).
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O gênero Myotis possui mais de 80 espécies distribuídas globalmente. Estas espécies são morfologicamente muito semelhantes e raramente refletem especialização. Consequentemente, sua identificação é dificultada e conduz à complexidade taxonômica do grupo. O gênero teve incontestável sucesso evolutivo e seus representantes podem ser encontrados em todos os continentes (exceção da Antártica), de habitats semidesérticos a regiões subantárticas. A espécie M. nigricans distribui-se na Região Neotropical, ocorrendo desde o sul do México até o sul do Brasil e norte do Peru, Bolívia e Argentina. Suas características morfológicas, contudo, parecem não estar bem definidas. Informações sobre dimorfismo sexual e variação geográfica pouco foram abordados para M. nigricans no Brasil. Destaca-se, ainda, que M. nigricans frequentemente é confundida com outra espécie do gênero: M. riparia.Essas questões enfatizam ainda mais a problemática taxonômica do grupo. Com o objetivo de avaliar a existência de dimorfismo sexual e variação geográfica no tamanho e na forma do crânio de M. nigricans de duas áreas geográficas brasileiras, foram realizadas análises morfológicas através das técnicas de morfometria tradicional e geométrica. Examinaram-se 131 espécimes adultos de Myotis nigricans provenientes de duas áreas geográficas do Brasil: Ceará e Sul do Brasil (Paraná, Santa Catarina e Rio Grande do Sul). Para a análise da morfometria tradicional foram realizadas dez medidas cranianas e, adicionalmente, foi realizada a medida do antebraço. Para a análise da morfometria geométrica foram definidos 30 marcos anatômicos nas vistas lateral e palatal do crânio de M. nigricans. O dimorfismo sexual foi analisado apenas para os espécimes do Sul do Brasil e a variação geográfica apenas para as fêmeas, devido ao pequeno número de exemplares machos provenientes da região do Ceará, depositado nas instituições consultadas. As análises da morfometria tradicional e geométrica evidenciaram a presença de dimorfismo sexual unicamente em relação ao tamanho. Em todas as análises, as fêmeas foram maiores que os machos. Não foram verificadas diferenças na forma do crânio entre machos e fêmeas, uma vez que as análises das deformações parciais e relativas não evidenciaram diferenças entre os sexos. Foi verificada a existência de variação geográfica no tamanho e na forma das estruturas estudadas. Os espécimes do Sul do Brasil foram maiores que os espécimes do Ceará. A análise da morfometria geométrica indicou a formação de dois grupos que correspondem às duas áreas geográficas. Foram geradas grades de deformação que exibem claramente as variações na forma do crânio. Os resultados obtidos neste estudo contribuem para o conhecimento da morfologia de M. nigricans e podem, ainda, fornecer auxílio em relação à taxonomia das espécies de Myotis no Brasil.
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Myotis nigricans is an endemic species of vespertilionid bat, from the Neotropical region, that resembles temperate zone bats in their reproductive cycle; presenting an annual reproductive cycle with two periods of testicular regression, which are not linked to the apoptotic process and seems to be not directly linked to any seasonal abiotic variation. Thus, this study aimed to ultrastructurally evaluate their reproductive cycle. The process of testicular regression could be divided into four periods: active; regressing; regressed and recrudescence; with all presenting distinct characteristics. The active period was similar to that of other bats, presenting the complete occurrence of spermatogenesis, with three main types of spermatogonia (Ad, Ap, and B) and 12 steps in spermatid differentiation; however, it differed in having the outer dense fibers 1, 5, 6, and 9 larger than the others. These three types of spermatogonia undergo considerable morphologic changes from regressing to the regressed period, and in the recrudescence, they return to the basic morphology, which reactivates spermatogenesis. In conclusion, our study described the process of spermatogenesis, the ultrastructure of the spermatozoa and the distinct morphologic variations in the ultrastructure of the testicular cells of M. nigricans during the four different periods of its annual reproductive cycle. Microsc. Res. Tech., 76:1035-1049, 2013. © 2013 Wiley Periodicals, Inc.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Pós-graduação em Genética - IBILCE
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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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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)