943 resultados para Peixe neotropical


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Dissertação mestr., Engenharia Biológica, Universidade do Algarve, 2008

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Dissertação de Mestrado, Biologia Molecular e Microbiana, Faculdade de Ciências e Tecnologia, Universidade do Algarve, 2010

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Dissertação mest., Biologia Marinha, Universidade do Algarve, 2007

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Dissertação de mest., Biologia Marinha (Ecologia e Conservação Marinha), Faculdade de Ciências e Tecnologia, Univ. do Algarve, 2010

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Dissertação de mest., Biologia Marinha, Faculdade de Ciências e Tecnologia, Univ. do Algarve, 2009

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As preocupações médicas com a alimentação e o seu equilíbrio remontam à Antiguidade, mas apenas a partir do século XVII começaram a ser equacionadas numa perspectiva mais científica e de maior rigor. No período seiscentista, esta questão é retomada, por exemplo, por dois médicos de renome originários dos Países Baixos, Luís Nunes (1553 – 1645) e Willem Piso (1611 – 1678), que escreveram em latim, a língua habitual para a difusão do conhecimento e ciência à época, e de quem podemos consultar tratados de importância inquestionável, pertença do Fundo Antigo da Biblioteca Municipal de Tavira. Referimo-nos, especificamente, ao Ichtyophagia (Antuérpia, 1616), único exemplar sinalizado em Portugal, e ao De Indiae utriusque re naturali et medica. Libri quatuordecim (Amesterdão, 1658), de que existe cópia microfilmada na Biblioteca Nacional, e cuja primeira parte, livro terceiro, logo na abertura, refere explicitamente os peixes ad humanos usus producantur (p. 47), i.e., apresentados na perspectiva da sua utilização pelo homem. A apologia de uma alimentação cuja dieta deve compreender o consumo de peixe é, em nosso entender, um dos motivos que atravessam ambos os textos. Esta comunicação pretende contribuir para a divulgação pública do conteúdos algo olvidados, numa época em que nunca se falou tanto da importância da alimentação no contexto duma educação para a saúde, e ao mesmo tempo enfatizar o valor patrimonial das obras referidas, alertando para a necessidade imperiosa de preservar espólios documentais que integram espécimes como os que aqui se referem. A relevância historiográfica destas obras, que inauguram a defesa científica de hábitos alimentares equilibrados, alicerçando um discurso inovador, numa época de profunda mutação histórica e cultural, imposta pelas contacto com as realidades exóticas do Novo Mundo.

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Dissertação de mest, Tecnologia de Alimentos, Instituto Superior de Engenharia, Univ. do Algarve, 2013

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O controlo da amónia durante o transporte de peixe vivo, é uma das problemáticas mais exigentes ao nível de controladores químicos. Até então, o AmQuel® apresenta-se como uma alternativa e possível solução para esta problemática. Este produto foi testado em diversas situações, manipulando-se concentrações iniciais e taxas de excreção de amónia. Na primeira parte (I), através do acompanhamento de um transporte efectivo de corvinas (Argyrosomus regius Asso, 1801) e duas simulações de transporte, de corvinas e de cavalas (Argyrosomus regius e Scomber japonicus Houttuyn, 1782). Na parte laboratorial (II), foram testadas diversas simulações de taxas de excreção de amónia e o efeito quelante do AmQuel® sobre estas. Pelos resultados obtidos verificou-se uma relação linear entre AmQuel® e amónia e uma possível inferência na concentração de cortisol libertada para a água. Os resultados obtidos laboratorialmente demonstraram que pequenas diferenças nas concentrações de cada cocktail escolhido poderão ter resultados distintos no controlo de amónia. O Cocktail B (15/15/7.5 ppm) demonstrou ser eficaz no controlo de amónia, para taxas de excreção inferiores a 5mg/h, mesmo com concentração inicial (0.25mg/L) de amónia no tanque. Cocktails inferiores a 15/15/7.5 ppm revelaram-se ineficazes no controlo de amónia, para taxas de excreção superiores a 1mg/h. Estes resultados irão facilitar a escolha do cocktail de AmQuel® mais adequado, consoante o tempo e características de cada transporte.

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Descrevem-se alguns testes simples de tradução e retroversão a que submetemos um programa de tradução automática disponível online. As soluções obtidas permitem analisar e estimar a sua fiabilidade. Conclui-se que o referido programa tem um desempenho sofrível, não sendo aconselhável a sua utilização como auxiliar no processo de tradução ou retroversão de textos.

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Although studies often report that densities of many forest birds are negatively related to urbanization, the mechanisms guiding this pattern are poorly understood. Our objective was to use a population simulation to examine the relative influence of six demographic and behavioral processes on patterns of avian abundance in urbanizing landscapes. We constructed an individual-based population simulation model representing the annual cycle of a Neotropical migratory songbird. Each simulation was performed under two landscape scenarios. The first scenario had similar proportions of high- and low-quality habitat across the urban to rural gradient. Under the first scenario, avian density was negatively related to urbanization only when rural habitats were perceived to be of higher quality than they actually were. The second landscape scenario had declining proportions of high-quality habitat as urbanization increased. Under the second scenario, each mechanism generated a negative relationship between density and urbanization. The strongest effect on density resulted when birds preferentially selected habitats in landscapes from which they fledged or were constrained from dispersing. The next strongest patterns occurred when birds directly evaluated habitat quality and accurately selected the highest-quality available territories. When birds selected habitats based on the presence of conspecifics, the density–urbanization relationship was only one-third the strength of other habitat selection mechanisms and only occurred under certain levels of population survival. Although differences in adult or nest survival in the face of random habitat selection still elicited reduced densities in urban landscapes, the relationships between urbanization and density were weaker than those produced by the conspecific attraction mechanism. Results from our study identify key predictions and areas for future research, including assessing habitat quality in urban and rural areas in order to determine if habitats in urban areas are underutilized.

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Understanding the effect of habitat fragmentation is a fundamental yet complicated aim of many ecological studies. Beni savanna is a naturally fragmented forest habitat, where forest islands exhibit variation in resources and threats. To understand how the availability of resources and threats affect the use of forest islands by parrots, we applied occupancy modeling to quantify use and detection probabilities for 12 parrot species on 60 forest islands. The presence of urucuri (Attalea phalerata) and macaw (Acrocomia aculeata) palms, the number of tree cavities on the islands, and the presence of selective logging,and fire were included as covariates associated with availability of resources and threats. The model-selection analysis indicated that both resources and threats variables explained the use of forest islands by parrots. For most species, the best models confirmed predictions. The number of cavities was positively associated with use of forest islands by 11 species. The area of the island and the presence of macaw palm showed a positive association with the probability of use by seven and five species, respectively, while selective logging and fire showed a negative association with five and six species, respectively. The Blue-throated Macaw (Ara glaucogularis), the critically endangered parrot species endemic to our study area, was the only species that showed a negative association with both threats. Monitoring continues to be essential to evaluate conservation and management actions of parrot populations. Understanding of how species are using this natural fragmented habitat will help determine which fragments should be preserved and which conservation actions are needed.

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The interpretation of Neotropical fossil phytolith assemblages for palaeoenvironmental and archaeological reconstructions relies on the development of appropriate modern analogues. We analyzed modern phytolith assemblages from the soils of ten distinctive tropical vegetation communities in eastern lowland Bolivia, ranging from terra firme humid evergreen forest to seasonally-inundated savannah. Results show that broad ecosystems – evergreen tropical forest, semi-deciduous dry tropical forest, and savannah – can be clearly differentiated by examination of their phytolith spectra and the application of Principal Component Analysis (PCA). Differences in phytolith assemblages between particular vegetation communities within each of these ecosystems are more subtle, but can still be identified. Comparison of phytolith assemblages with pollen rain data and stable carbon isotope analyses from the same vegetation plots show that these proxies are not only complementary, but significantly improve taxonomic and ecosystem resolution, and therefore our ability to interpret palaeoenvironmental and archaeological records. Our data underline the utility of phytolith analyses for reconstructing Amazon Holocene vegetation histories and pre-Columbian land use, particularly the high spatial resolution possible with terrestrial soil-based phytolith studies.

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Accurate differentiation between tropical forest and savannah ecosystems in the fossil pollen record is hampered by the combination of: i) poor taxonomic resolution in pollen identification, and ii) the high species diversity of many lowland tropical families, i.e. with many different growth forms living in numerous environmental settings. These barriers to interpreting the fossil record hinder our understanding of the past distributions of different Neotropical ecosystems and consequently cloud our knowledge of past climatic, biodiversity and carbon storage patterns. Modern pollen studies facilitate an improved understanding of how ecosystems are represented by the pollen their plants produce and therefore aid interpretation of fossil pollen records. To understand how to differentiate ecosystems palynologically, it is essential that a consistent sampling method is used across ecosystems. However, to date, modern pollen studies from tropical South America have employed a variety of methodologies (e.g. pollen traps, moss polsters, soil samples). In this paper, we present the first modern pollen study from the Neotropics to examine the modern pollen rain from moist evergreen tropical forest (METF), semi-deciduous dry tropical forest (SDTF) and wooded savannah (cerradão) using a consistent sampling methodology (pollen traps). Pollen rain was sampled annually in September for the years 1999–2001 from within permanent vegetation study plots in, or near, the Noel Kempff Mercado National Park (NKMNP), Bolivia. Comparison of the modern pollen rain within these plots with detailed floristic inventories allowed estimates of the relative pollen productivity and dispersal for individual taxa to be made (% pollen/% vegetation or ‘p/v’). The applicability of these data to interpreting fossil records from lake sediments was then explored by comparison with pollen assemblages obtained from five lake surface samples.

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The great majority of plant species in the tropics require animals to achieve pollination, but the exact role of floral signals in attraction of animal pollinators is often debated. Many plants provide a floral reward to attract a guild of pollinators, and it has been proposed that floral signals of non-rewarding species may converge on those of rewarding species to exploit the relationship of the latter with their pollinators. In the orchid family (Orchidaceae), pollination is almost universally animal-mediated, but a third of species provide no floral reward, which suggests that deceptive pollination mechanisms are prevalent. Here, we examine floral colour and shape convergence in Neotropical plant communities, focusing on certain food-deceptive Oncidiinae orchids (e.g. Trichocentrum ascendens and Oncidium nebulosum) and rewarding species of Malpighiaceae. We show that the species from these two distantly related families are often more similar in floral colour and shape than expected by chance and propose that a system of multifarious floral mimicry—a form of Batesian mimicry that involves multiple models and is more complex than a simple one model–one mimic system—operates in these orchids. The same mimetic pollination system has evolved at least 14 times within the species-rich Oncidiinae throughout the Neotropics. These results help explain the extraordinary diversification of Neotropical orchids and highlight the complexity of plant–animal interactions.