946 resultados para Canais radiculares - Contaminação


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O milho é uma cultura sensível ao encharcamento do solo e seu cultivo nessas áreas pode levar a perdas consideráveis. A sensibilidade do milho em condições de hipoxia levou a Embrapa Milho Sorgo a desenvolver, através da seleção recorrente fenotípica estratificada, uma variedade de milho tolerante ao encharcamento intermitente do solo: o Saracura BRS 4154. Atualmente, essa variedade se encontra no 18º ciclo anual de seleção. O objetivo deste trabalho foi verificar o ganho em relação às características morfológicas radiculares nos sucessivos ciclos de seleção do milho Saracura, através do analisador de imagens WinRHIZO. O ensaio foi conduzido em casa de vegetação na Embrapa Milho e Sorgo, Sete Lagoas, MG, iniciando o encharcamento do solo logo após a emergência. Foram utilizados uma testemunha (BR 107) e dez ciclos de seleção (C1 a C18, alternados). O ensaio foi colhido aos 18 dias após a emergência. As características morfológicas radiculares avaliadas foram: matéria seca da parte aérea, da raiz, total e relação raiz/parte aérea; comprimento total de raiz; área de superfície de raiz total; diâmetro médio de raiz; volume de raiz total; comprimento específico, densidade de tecido de raiz e comprimento por classes de diâmetro (muito fina, fina e grossa). Não houve diferenças significativas nos parâmetros de massa seca, comprimento de raízes muito fina e grossa, diâmetro médio e área superficial de raízes grossas. No entanto, os últimos ciclos de seleção apresentam raízes mais finas, maior volume, área superficial e comprimento radicular com baixo custo metabólico, o qual favorece a sobrevivência das plantas em ambientes encharcados.

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No Brasil, pelo menos três podridões radiculares podem ocorrer no sistema radicular do guaranazeiro, sendo uma abiótica e duas de origem bióticas.

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A presente publicação descreve alguns modelos capazes de simular o comportamento e o destino de agrotóxicos e outros contaminantes, e destaca como esses modelos podem ser mais efetivos quando agrega-se, a eles, a capacidade de lidar com a dimensão espacial.

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The common cuttlefish, Sepia officinalis, is a necto-benthic cephalopod that can live in coastal ecosystems, with high influence of anthropogenic pressures and thus be vulnerable to exposure to various types of contaminants. The cuttlefish is a species of great importance to the local economy of Aveiro, considering the global data of catches of this species in the Ria de Aveiro. However, studies on this species in Ria de Aveiro are scarce, so the present study aims to fill this information gap about the cuttlefish in the Ria de Aveiro. The cuttlefish enters Ria de Aveiro in the spring and summer to reproduce, returning to deeper waters in the winter. In terms of abundance, the eastern and center regions of the lagoon, closer to the sea, showed the highest values of abundance, while the northern and southern regions of the main channel had the lowest abundance. This fact may be related to abiotic factors, as well as depth, salinity and temperature. In the most southern point of the Ria de Aveiro (Areão) no cuttlefish was caught. This site had the lowest values of salinity and depth. The cuttlefish has an allometric the females being heavier than males to mantle lengths greater than 82.4 mm. Males reach sexual maturity first than females. In Ria de Aveiro in a generation of parents was found. The cuttlefish, presents itself as opportunistic predators, consuming a wide variety of prey from different taxa. The diet was similar in different sampling locations observing significant differences for the seasons. S. officinalis was captured at 10 sites in the Ria de Aveiro with different anthropogenic sources of contamination. Thus, levels of metals analyzed were similar at all sampling sites, with the exception of a restricted area, Laranjo, which showed higher values. The cuttlefish has the ability to accumulate metals in your body. The levels of Fe, Zn, Cu, Cd, Pb and Hg found in the digestive gland and mantle reflect a differential accumulation of metals in the tissues. This accumulation is related to the type and function of tissue analyzed and the type of metal analysis (essential and non-essential). The metal concentrations in the digestive gland are higher than in the mantle, with the exception of mercury. This may be due to the high affinity of the mantle for the incorporation of methylmercury (MeHg), the most abundant form of mercury. The accumulation of metals can vary over a lifetime, depending on the metal. The concentrations of Zn, Cd and Hg increases throughout life, while Pb decreases and essential metals such as Fe and Cu remain constant. The data collected suggest that the cuttlefish (Sepia officinalis) can be used as a bioindicator of environmental contamination for some metals.

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Salt marshes are highly productive intertidal habitats that serve as nursery grounds for many commercially and economically important species. Because of their location and physical and biological characteristics, salt marshes are considered to be particularly vulnerable to anthropogenic inputs of oil hydrocarbons. Sediment contamination with oil is especially dangerous for salt marsh vegetation, since low molecular weight aromatic hydrocarbons can affect plants at all stages of development. However, the use of vegetation for bioremediation (phytoremediation), by removal or sequestration of contaminants, has been intensively studied. Phytoremediation is an efficient, inexpensive and environmental friendly approach for the removal of aromatic hydrocarbons, through direct incorporation by the plant and by the intervention of degrading microbial populations in the rhizosphere (microbe-assisted phytoremediation). Rhizosphere microbial communities are enriched in important catabolic genotypes for degradation of oil hydrocarbons (OH) which may have a potential for detoxification of the sediment surrounding the roots. In addition, since rhizosphere bacterial populations may also internalize into plant tissues (endophytes), rhizocompetent AH degrading populations may be important for in planta AH degradation and detoxification. The present study involved field work and microcosms experiments aiming the characterization of relevant plant-microbe interactions in oilimpacted salt marshes and the understanding of the effect of rhizosphere and endosphere bacteria in the role of salt marsh plants as potential phytoremediation agents. In the field approach, molecular tools were used to assess how plant species- and OH pollution affect sediment bacterial composition [bulk sediment and sediment surrounding the roots (rhizosphere) of Halimione portulacoides and Sarcocornia perennis subsp. perennis] in a temperate estuary (Ria de Aveiro, Portugal) chronically exposed to OH pollution. In addition, the 16S rRNA gene sequences retrieved in this study were used to generate in silico metagenomes and to evaluate the distribution of potential bacterial traits in different microhabitats. Moreover, a combination of culture-dependent and -independent approaches was used to investigate the effect of oil hydrocarbons contamination on the structure and function of endophytic bacterial communities of salt marsh plants.Root systems of H. portulacoides and S. perennis subsp. perennis appear to be able to exert a strong influence on bacterial composition and in silico metagenome analysis showed enrichment of genes involved in the process of polycyclic aromatic hydrocarbon (PAH) degradation in the rhizosphere of halophyte plants. The culturable fraction of endophytic degraders was essentially closely related to known OH-degrading Pseudomonas species and endophytic communities revealed sitespecific effects related to the level of OH contamination in the sediment. In order to determine the effects of oil contamination on plant condition and on the responses in terms of structure and function of the bacterial community associated with plant roots (rhizosphere, endosphere), a microcosms approach was set up. The salt marsh plant Halimione portulacoides was inoculated with a previous isolated Pseudomonas sp. endophytic degrader and the 2-methylnaphthalene was used as model PAH contaminant. The results showed that H. portulacoides health and growth were not affected by the contamination with the tested concentration. Moreover, the decrease of 2-methylnaphthalene at the end of experiment, can suggest that H. portulacoides can be considered as a potential plant for future uses in phytoremedition approaches of contaminated salt marsh. The acceleration of hydrocarbon degradation by inoculation of the plants with the hydrocarbon-degrading Pseudomonas sp. could not, however, be demonstrated, although the effects of inoculation on the structure of the endophytic community observed at the end of the experiment indicate that the strain may be an efficient colonizer of H. portulacoides roots. The results obtained in this work suggest that H. portulacoides tolerates moderate concentrations of 2-methylnaphthalene and can be regarded as a promising agent for phytoremedition approaches in salt marshes contaminated with oil hydrocarbons. Plant/microbe interactions may have an important role in the degradation process, as plants support a diverse endophytic bacterial community, enriched in genetic factors (genes and plasmids) for hydrocarbon degradation.

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Estuaries are poles of attraction for human settlement which is a source of pressures to surface water bodies. The implementation of the European Water Framework Directive (WDF, 2000/60/EC) has increased the investigation in order to develop methodologies to assess the Ecological Quality Status (EQS) of aquatic ecosystems. Transitional systems are naturally stressed and characterized by highly dynamic physical, chemical and hydro-morphologic conditions and by species with a higher level of tolerance to change, being more difficult to develop suitable quality indicators for these systems. The general purpose of this study is to test the ability of synthesis descriptors, including primary (S, taxa richness) and derived biological variable (H’, Shannon-Wiener diversity), biotic indices (AMBI and M-AMBI), body size properties (abundance distribution by body size classes, length, weight and length-weight relationships) and non-taxonomic indices (ISS), as well as functional indicators related to the decomposition rates of various experimental substrates, a macrophyte (Phragmites australis) and an alga (Fucus vesiculosus), to evaluate the environmental quality in transitional systems. This study was carried out in one of the most pristine channels of the Ria the Aveiro, Mira Channel, along a full salinity gradient and in a metals and metalloid sediment contamination area, the Estarreja Channel, and two reference channels (Canelas and Salreu). In this study were used different sampling techniques, the leaf-bag technique and a hand-held corer. In Mira Channel, the alga and the macrophyte presented an opposite trend in the decomposition rate along the salinity gradient, with the decomposition rates of the alga always higher than those of the macrophyte. The decomposition rates of the macrophyte and the alga were higher in the mid estuary and in higher salinity areas, respectively, corresponding to the preferencial distribution areas of each species. The macrobenthic fauna associated with the decaying and an artificial substrate (control) showed equally well the benthic succession from the marine to the freshwater areas and, despite the strong differences in the decay rates, no significant differences were found between the benthic communities associated with the alga and the macrophyte. The body size properties of the macrobenthic fauna associated with the P. australis leaf-bag (1mm and 5mm) and corer samples were studied along the full salinity gradient. The dominant species of the sub-set of measured specimens were not the same of the original macrobenthic fauna sampled but, despite that, the sub-set of measured specimens was also able to show the benthic succession from the marine to the freshwater areas. The body size abundance distribution of the benthic macroinvertebrates according to the ISS size classes did not show a particular trend in any sampler along the salinity gradient. Significant differences were found in the length, weight and length-weight relationships of Annelids, , Molluscs and even some species along the salinity gradient. No significant differences were found in the AMBI, M-AMBI and ISS values along the salinity gradient for all the samplers. The EQS of the corer samples obtained using the M-AMBI was lower than that of the leaf-bags. The EQS obtained with the ISS was higher than that obtained with the M-AMBI in the leaf-bags but not in the corer samples. The ecological effects of contaminated sediments associated with the industrial chemical effluents discharged in the Estarreja Channel were studied a decade after ceasing the emissions, using the Sediment Quality Triad approach and two reference channels. The results showed that despite the emissions ceased in 2004, the sediment remains polluted with high levels of metals and metalloid, available to bioaccumulation and with severe consequences at the community level. The sediment contamination problem was also studied using the leaf-bag technique with a macrophyte, an alga and a control substrate. The results showed that the decay rates, the associated macrofauna and the application of the AMBI, M-AMBI and ISS indices to the mesh-bag samples were not able to identify the sediment contamination. Contrarily to the AMBI, the M-AMBI and the ISS showed significant differences between the contaminated and the reference channels for the corer samples. Although such statistical significance, the interest of using these complex biotic indices could be questioned, when much simple ones, like the S and H’ allow to reach the same conclusions.

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No presente trabalho apresentam-se dois estudos. O primeiro dos estudos teve como objetivo a adaptação ao português do Inventário de Obsessões e Compulsões de Vancouver (VOCI; Thordarson, Radomsky, Rachman, Shafran, Sawchuk & Hakstian, 2004). O segundo dos estudos teve como objetivo induzir, de forma experimental, a sensação de contaminação mental através da imaginação de uma situação de traição. No estudo de adaptação do VOCI participaram 180 indivíduos da população geral não-clínica com idades compreendidas entre os 18 e os 75 anos e 120 estudantes universitários com idades compreendidas entre os 18 e os 25 anos que preencheram além do VOCI, a Escala de sensibilidade de Contaminação (S-CTN; Rachman, 2006 cit in Coughtrey, Shafran, Knibbs & Rachman, 2012). Sessenta dos participantes completaram de novo o VOCI após um intervalo de 8 semanas. A amostra final ficou constituída por 292 participantes. Para conhecer a estrutura interna do VOCI, foi realizada uma análise fatorial exploratória. Obtiveram-se 6 fatores que explicaram 39% da variância total. Os fatores obtidos replicaram a estrutura original do VOCI Contaminação, Verificação, Obsessões, Acumulação, Incerteza, Just Right. Quer o total do VOCI quer as seis subescalas obtidas mostraram excelentes níveis de consistência interna, fiabilidade temporal e validade convergente. De acordo com os nossos resultados, podemos considerar que a versão portuguesa do VOCI apresenta garantias psicométricas suficientes para que possa ser utilizada na população Portuguesa. No segundo estudo, participaram 60 estudantes universitários, 30 do género feminino e 30 do género masculino, com idades compreendidas entre os 18 e os 25 anos. Os participantes foram aleatoriamente divididos em dois grupos: um grupo de controlo (GC) e um grupo experimental (GE). Neste estudo recorreu-se a um desenho experimental 2x4 (2 condições x 4 momentos). Inicialmente os participantes preencheram um conjunto de questionários e de seguida foram instruídos para ouvir uma gravação de voz relativa à sua condição (controlo/experimental). Posteriormente foi-lhes dada uma pausa de 5 minutos e, no quarto e último momento, os participantes foram submetidos a uma pequena entrevista final. Os resultados obtidos após a manipulação experimental revelaram que o GE apresentou valores significativamente mais elevados de desconforto que o GC, ou seja, a manipulação experimental desencadeou emoções negativas (tais como a raiva ou a tristeza). Não se verificou, no entanto, o efeito da manipulação experimental relativamente à capacidade dos participantes para localizar a sujidade em alguma parte do interior ou exterior do corpo. Em suma, no presente estudo não foi possível induzir contaminação mental através da imaginação de uma situação de traição bem como a localização da sensação de sujidade, o aparecimento de emoções/sentimentos negativos, do impulso de se lavar, de evitamento e de estratégias de neutralização e de lavagem.

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Dissertação de mestrado, Tecnologia de Alimentos, Instituto Superior de Engenharia, Universidade do Algarve, 2015

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Dissertação de Mestrado, Biologia Marinha, Faculdade de Ciências e Tecnologia, Universidade do Algarve, 2016

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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia de Electrónica e Telecomunicações

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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia de Electrónica e Telecomunicações