937 resultados para conservation biology, forest ecology


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Background: Plasmodium vivax is a widely distributed, neglected parasite that can cause malaria and death in tropical areas. It is associated with an estimated 80-300 million cases of malaria worldwide. Brazilian tropical rain forests encompass host- and vector-rich communities, in which two hypothetical mechanisms could play a role in the dynamics of malaria transmission. The first mechanism is the dilution effect caused by presence of wild warm-blooded animals, which can act as dead-end hosts to Plasmodium parasites. The second is diffuse mosquito vector competition, in which vector and non-vector mosquito species compete for blood feeding upon a defensive host. Considering that the World Health Organization Malaria Eradication Research Agenda calls for novel strategies to eliminate malaria transmission locally, we used mathematical modeling to assess those two mechanisms in a pristine tropical rain forest, where the primary vector is present but malaria is absent. Methodology/Principal Findings: The Ross-Macdonald model and a biodiversity-oriented model were parameterized using newly collected data and data from the literature. The basic reproduction number (R0) estimated employing Ross-Macdonald model indicated that malaria cases occur in the study location. However, no malaria cases have been reported since 1980. In contrast, the biodiversity-oriented model corroborated the absence of malaria transmission. In addition, the diffuse competition mechanism was negatively correlated with the risk of malaria transmission, which suggests a protective effect provided by the forest ecosystem. There is a non-linear, unimodal correlation between the mechanism of dead-end transmission of parasites and the risk of malaria transmission, suggesting a protective effect only under certain circumstances (e.g., a high abundance of wild warm-blooded animals). Conclusions/Significance: To achieve biological conservation and to eliminate Plasmodium parasites in human populations, the World Health Organization Malaria Eradication Research Agenda should take biodiversity issues into consideration. © 2013 Laporta et al.

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How individual-level movement decisions in response to habitat edges influence population-level patterns of persistence and spread of a species is a major challenge in spatial ecology and conservation biology. Here, we integrate novel insights into edge behavior, based on habitat preference and movement rates, into spatially explicit growth-dispersal models. We demonstrate how crucial ecological quantities (e.g., minimal patch size, spread rate) depend critically on these individual-level decisions. In particular, we find that including edge behavior properly in these models gives qualitatively different and intuitively more reasonable results than those of some previous studies that did not consider this level of detail. Our results highlight the importance of new empirical work on individual movement response to habitat edges. © 2013 by The University of Chicago.

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Eschweilera nana is pollinated by a guild of pollinators consisting of mostly bees. Effective pollinators are large bees able to force their way into the closed androecium to access nectar. The morphology of the flowers diminishes self pollination and promotes cross-pollination. Although many pollinators make diurnal visits to the flowers, fruit set was very low in comparison with the number of flowers produced. Breeding system tests yielded only two fruits, one produced by xenogamy and another one in the control test. The results of this study are consistent with studies of other Cerrado plants pollinated by guilds of insects and support the conclusion of other pollination studies of Lecythidaceae that fruit set is low in comparison with the high numbers of flowers produced. © 2013 The New York Botanical Garden.

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The exploitation of non-timber forest products is often considered a low-impact activity in tropical forests. However, assessments of the impacts of such activity are mostly focused on the harvested species and not on the plant community, thus limiting our understanding for establishing forest management recommendations. We investigated the consequences of Euterpe edulis palm heart harvesting on the seed rain in the Brazilian Atlantic rainforest. We compared the density of E. edulis individuals, as well as the density of E. edulis seeds, and the density, richness and functional composition of seed rain of the whole plant community, before and after palm heart harvesting in a 10 ha permanent plot. This assessment was carried out in preserved (typical old-growth Atlantic rainforest) and in disturbed (more open habitat dominated by the native bamboo Guadua tagoara) forest patches. Palm harvesting reduced the E. edulis population from 202.16 to 25.67 ind/ha and its seed rain density from 0.362 to 0.3 seeds/m2 and from 2.395 to 0.15 seeds/m2 in preserved and disturbed forest patches, respectively. Seed density of light-dependent climbers, pioneer trees, bamboo and animal-dispersed seeds increased after palm harvesting, especially in the disturbed forest patches, where palm harvesting was more intense and may have changed the light regime of the understory. On the other hand, species richness of the plant community declined by half. We observed a remarkable decline in the number of animal-dispersed species, especially for those with large seeds, suggesting that the activity of seed dispersers, including many species attracted by E. edulis fruits, was reduced. Therefore, harvesting of E. edulis palm heart may change the regeneration dynamics of the Atlantic rainforest, both due to shifts in forest structure, mediated by the removal of individuals from the forest canopy, and in community functioning, mediated by the interference on the activity of seed dispersers. © 2013 Elsevier B.V. All rights reserved.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Hypancistrus zebra é uma espécie ornamental, endêmica e rara da região do Médio – Baixo Rio Xingu, a qual apresenta forte demanda do mercado de peixes ornamentais internacional, que criou uma forte pressão de exploração associada a esta espécie. Atualmente, H.zebra encontra-se na lista brasileira de fauna ameaçada de extinção e sua captura está proibida. Sabe-se que mesmo proibida, a mesma continua sendo capturada e exportada ilegalmente, aliada a isso a construção da Hidrelétrica de Belo Monte em seu trecho de distribuição, que ameaça a sua área de distribuição geográfica e a falta de informações sobre sua biologia e ecologia dificultam ações de ordenamento para esta espécie. De modo que, se objetivou neste trabalho estudar aspectos da biologia reprodutiva e dinâmica populacional para contribuir com medidas de conservação para esta espécie. Exemplares de H. zebra foram capturados mensalmente de março de 2009 a fevereiro de 2010, através de mergulho com compressor, no Rio Xingu, entre a localidade de Gorgulho da Rita e a Vila de Belo Monte. Os indivíduos capturados foram pesados e medidos (peso e comprimento total). As gônadas foram retiradas e imediatamente fixadas em Solução Bouin. Seguiram-se as técnicas histológicas de rotina. Os estágios de maturação gonadal foram descritos com base na presença de células germinativas em diferentes estádios de desenvolvimento. Através dos dados de freqüência dos comprimentos foram feitas estimativas dos parâmetros populacionais tais como: modelos de crescimento, recrutamento, mortalidade, rendimento por recruta e tamanho de primeira maturidade gonadal. A espécie apresentou uma desova sazonal com dois picos entre as estações de transição entre seca e cheia (e vice-versa) do rio, e dois períodos de recrutamento, com taxas de crescimento diferenciadas. Estimou-se que a espécie possui uma longevidade de cinco anos, e que está no limite do rendimento máximo sustentável, o que se caracteriza como uma situação perigosa para a espécie, pois qualquer aumento do esforço irá comprometer o estoque e ainda não se sabe que impactos ocorrerão em decorrência das modificações provocadas em seu habitat pela construção da hidrelétrica.

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A caça e a pesca são exemplos clássicos de exploração de recursos naturais pelo homem, uma vez que estas atividades vêm sendo desenvolvidas desde a pré-história e, para algumas comunidades, continua sendo fonte de alimento tão importante quanto era para nossos antepassados. A pesca e outros produtos oriundos do extrativismo vegetal têm sido alvo constante de pesquisas para atender o mercado industrial, em detrimento dos estudos de etnoconservação. Em conseqüência desse desinteresse institucional e de outros fatores políticos intrínsecos, pouco se sabe sobre a biologia, a ecologia, a etologia e principalmente sobre a intensidade de exploração da fauna cinegética nos trópicos. Há uma grande lacuna sobre estudos que tratam da dieta de populações tradicionais na Amazônia, sobretudo aqueles que discorrem sobre a importância econômica e nutricional da atividade de caça e sua correlação com a conservação da vida silvestre. Este Estudo de Caso orientou-se para realizar a caracterização da fauna cinegética explorada por famílias extrativistas nas comunidades Aminã e Solimões na Reserva Extrativista do Tapajós/Arapiuns - PA, nas duas estações do ano (chuva e seca), além de revelar parâmetros nutricionais da atividade de caça na dieta protéica daquelas famílias. Os dados de abundância relativa (biomassa) para as espécies registrada nas duas comunidades estudadas mostram que Dasyprocta leporina (cutia) se revelou como a espécie mais pressionada. Quando comparados os Índice de Biomassa (IB) entre as fontes de proteínas animal e entre as comunidades estudadas, concluiu-se que a carne de caça, apesar de ser menos freqüente em termos de dias de consumo em relação ao pescado, as refeições realizadas com carne de caça são mais fartas do que as refeições realizadas com peixe. Além disso, com relação ao Índice de Proteína (IP), quando comparado entre fontes critérios e parâmetros para a implementação de projetos de manejo integrado de fauna em ocupações humanas.

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H. zebra é uma espécie de peixe da família Loricariidae, subfamília Ancistrinae, endêmica do rio Xingu, com distribuição desde Belo Monte até a confluência dos rios Xingu e Iriri. Por ser uma espécie com grande valor no mercado aquariofilista ornamental, sua captura tornou-se desenfreada, tornando-o uma espécie ameaçada de extinção. Apesar da forte pressão exercida sobre H. zebra, ainda são escassos os estudos sobre a espécie. Assim, perante a escassez de informações básicas e as constantes ameaças, conhecer aspectos da biologia e ecologia de H. zebra, agregando aos resultados das pesquisas científicas, também o conhecimento ecológico local dos pescadores ornamentais sobre esta espécie torna-se uma ferramenta fundamental para a conservação da espécie. A distribuição de H. zebra é restrita a um pequeno trecho do rio Xingu, entre Gorgulho da Rita e Itaubinha, e não ocorre de forma homogênea, dependendo da presença de blocos rochosos. Um total de 283 indivíduos de H. zebra foi visualizado nos afloramentos rochosos da área estudada, dos quais 232 foram capturados. A menor abundância média foi em Gorgulho da Rita, em oposição ao sitio Jericoá com a maior abundância. Entre os períodos, verificou-se uma maior abundância na seca do rio e menor valor para o período de enchente. Os fatores ambientais não apresentaram influências significativas sobre a abundância de H. zebra. H. zebra é uma espécie generalista, alimentando-se principalmente de algas perifíticas, detritos, restos vegetais e esponjas, enquanto que nematódeos e miriápodes foram considerados itens ocasionais. Não houve diferenças significativas na composição e abundância da dieta de H. zebra, quanto aos sítios de coleta, períodos do ano e ontogenia. Considerando a composição e abundância da dieta, H. zebra pode ser considerada uma espécie iliófaga-onívora, e com possibilidades de adaptação as mudanças na disponibilidade de alimento com a construção da Usina Hidrelétrica de Belo Monte. Os pescadores ornamentais zebra evidenciam conhecimento especializado quanto à distribuição e abundância, hábitat, alimentação, predação e reprodução da espécie, o qual pode ser aproveitado para otimizar trabalhos futuros e para facilitar medidas de manejo.

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Pós-graduação em Ciências Biológicas (Zoologia) - IBRC

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In Southern Brazil, Aegla parana Schmitt, 1942 is characterized by a broad distribution throughout the Iguacu River basin, particularly between the southern state of Parana and the northern state of Santa Catarina, preferentially inhabiting streams with rocky substrates. Although there has been an increase in the number of studies about the population biology of Aeglidae, many aspects about the reproductive biology of A. parana are still unknown. Therefore, the present study aimed to investigate the size at sexual maturity, reproductive seasonality and recruitment of A. parana from November, 2008 to December, 2009, in a tributary of the Iguacu River located in Uniao da Vitoria, Parana, Brazil. Basic environmental factors were investigated to determine their influence on the reproductive cycle of this species. Gonadal stages were characterized macroscopically, and the presence or absence of embryos in females (ovigerous females) from monthly samples was recorded. The entire sample was composed of 436 males and 211 females. Although the smallest ovigerous female was 16.2 mm, the average size (carapace length, CL) at sexual maturity (CL50%) was calculated at 17.4 mm. The greatest percentage of females with developed (mature, near spawning) gonads stage was observed from January to June, 2009, while ovigerous females were recorded from April to July, 2009, after which the reproductive period ended. Recruitment occurred from October to December, 2009. The presence of ovigerous females was negatively correlated with temperature (Spearman, p < 0.05). Females carrying embryos were generally collected during periods of lower temperatures, whereas recruits entered the population during periods of higher temperatures, when food for them is more abundant in the region studied.

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

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Priestley and Taylor provided a practical formulation of the partitioning of net radiation between heat flux and evaporation contained within a parameter α. Their model (PTM) needs verification under a range of environmental conditions. Micrometeorological data sets collected over the Amazon forest at the Ducke Reserve site (2°57′S; 59°57′W) gave an opportunity to evaluate α. Evidence presented here and by others shows that there is pronounced diurnal variation in α, with minimum values around midday and maximum values in the morning and evening hours. During unstable and stable conditions in the daylight hours, the Bowen ratio (B) varied from 0.10 to 0.57 and -0.71 to -0.08, respectively, whereas α varied from 0.67 to 1.16 and 1.28 to 3.12, respectively. A mean value of α = 1.16±0.56 was obtained from daytime hourly values for two days. The daily data sets from three expeditions gave a mean of α = 1.03±0.13. This work confirms that α is a function of atmospheric stability over the Amazon forest. Thus the PTM should be applied with caution over time-intervals of one day or less because of the sensitivity to variation in α. The calculated values of α are in general agreement with those reported in literature. © 1991.

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Investigation of carbon isotope fractionation by plants was carried out at two sub-areas located in Reserva Ducke, central Amazonia: open reserve (virgin forest with low density of plant species); and closed reserve (virgin forest with high density of plant species). Preliminary results (δ‰ 13C: 12C values, PDB) of leaf analysis at different plant heights indicate the following: Eschweilera matamata Hub. (Lecythidaceae), common name 'matamata', -31.55±0.61; Protium heptaplyllum March. (Burseraceae), common name 'breu branco', -32.34±1.39; Calophyllum brasiliense Camb. (Guttiferae), common name 'jacareúba', -30.72±0.23; Scleronema micrantthum Ducke. (Bombacaceae), common name 'cardeiro'. -28.81±0.68; and Carapa guianensis Aubl. (Meliaceae), common name 'andiroba', -31.07±0.51. It is possible that the plant species analysed belong to the C3 photosynthetic cycle. In general, the species in the open reserve show differences of the order of 1.66±0.34‰ (greater in 13C) as compared with the same species in the closed reserve. The old leaves show differences in the relative isotopic enrichment (δ) of the order of 1‰, being smaller in new leaves in both reserves. The probable occurrence of an isotopic gradient from the lower (2-5 m) to the upper part (15-20 m) of the plant, of the order of 1.3‰, smaller in 13C, in species from the dense forest was noted. However, only two plants from each species were analysed during a two-year period, data obtained to far are still preliminary, and results should, therefore, be revised. Moreover, according to the literature, the natural carbon isotope fractionation by plants shows metabolic, physiological and environmental dependence. © 1991.

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Understanding the geographic and environmental characteristics of islands that affect aspects of biodiversity is a major theme in ecology (Begon et al. 2006; Krebs 2001) and biogeography (Cox and Moore 2000; Drakare et al. 2006; Lomolino et al. 2006). Such understanding has become particularly relevant over the past century because human activities on continents have fragmented natural landscapes, often creating islands of isolated habitat dispersed within a sea of land uses that include agriculture, forestry, and various degrees of urban and suburban development. The increasingly fragmented or islandlike structure of mainland habitats has critical ramifications to conservation biology, as it provides insights regarding the mechanisms leading to species persistence and loss. Consequently, the study of patterns and mechanisms associated with island biodiversity is of interest in its own right (Whittaker 1998; Williamson 1981), and may provide critical insights into mainland phenomena that otherwise could not be studied because of ethical, financial, or logistical considerations involved with the execution of large-scale manipulative experiments.