979 resultados para Benthic macrofauna
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Marine viruses have been shown to affect phytoplankton productivity; however, there are no reports on the effect of viruses on benthic microalgae (microphytobenthos). Hence, this study investigated the effects of elevated concentrations of virus-like particles on the photosynthetic physiology and community composition of benthic microalgae and phytoplankton. Virus populations were collected near the sediment surface and concentrated by tangential flow ultrafiltration, and the concentrate was added to benthic and water column samples that were obtained along a eutrophication gradient in the Brisbane River/Moreton Bay estuary, Australia. Photosynthetic and community responses of benthic microalgae, phytoplankton and bacteria were monitored over 7 d in aquaria and in situ. Benthic microalgal communities responded to viral enrichment in both eutrophic and oligotrophic sediments. In eutrophic sediments, Euglenophytes (Euglena sp.) and bacteria decreased in abundance by 20 to 60 and 26 to 66%, respectively, from seawater controls. In oligotrophic sediments, bacteria decreased in abundance by 30 to 42% from seawater controls but the dinoflagellate Gymnodinium sp. increased in abundance by 270 to 3600% from seawater controls, The increased abundance of Gymnodinium sp. may be related to increased availability of dissolved organic matter released from lysed bacteria. Increased (140 to 190% from seawater controls) initial chlorophyll a fluorescence measured with a pulse-amplitude modulated fluorometer was observed in eutrophic benthic microalgal incubations following virus enrichment, consistent with photosystem II damage. Virus enrichment in oligotrophic water significantly stimulated carbon fixation rates, perhaps due to increased nutrient availability by bacterial lysis. The interpretation of data from virus amendment experiments is difficult due to potential interaction with unidentified bioactive compounds within seawater concentrates. However, these results show that viruses are capable of influencing microbial dynamics in sediments.
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Understanding the ecological role of benthic microalgae, a highly productive component of coral reef ecosystems, requires information on their spatial distribution. The spatial extent of benthic microalgae on Heron Reef (southern Great Barrier Reef, Australia) was mapped using data from the Landsat 5 Thematic Mapper sensor. integrated with field measurements of sediment chlorophyll concentration and reflectance. Field-measured sediment chlorophyll concentrations. 2 ranging from 23-1.153 mg chl a m(2), were classified into low, medium, and high concentration classes (1-170, 171-290, and > 291 mg chl a m(-2)) using a K-means clustering algorithm. The mapping process assumed that areas in the Thematic Mapper image exhibiting similar reflectance levels in red and blue bands would correspond to areas of similar chlorophyll a levels. Regions of homogenous reflectance values corresponding to low, medium, and high chlorophyll levels were identified over the reef sediment zone by applying a standard image classification algorithm to the Thematic Mapper image. The resulting distribution map revealed large-scale ( > 1 km 2) patterns in chlorophyll a levels throughout the sediment zone of Heron Reef. Reef-wide estimates of chlorophyll a distribution indicate that benthic Microalgae may constitute up to 20% of the total benthic chlorophyll a at Heron Reef. and thus contribute significantly to total primary productivity on the reef.
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In this study the first measurements of DMSP in six species of corals and ten species of benthic algae collected from four coral reefs in the Great Barrier Reef are reported, together with DMSP measurements made on cultured zooxanthellae. Concentrations ranged from 21 to 3831 (mean=743) fmol DMSP zooxanthellae(-1) in corals, 0.16 to 2.96 nmol DMSP cm(-2) (mean=90) for benthic macroalgae, and 48-285 fmol DMSP zooxanthellae(-1) (mean=153) for cultured zooxanthellae. The highest concentrations of DMSP in corals occurred in Acropora formosa (mean= 371 fmol DMSP zooxanthellae(-1)) and Acropora palifera (mean=3341 fmol DMSP zooxanthellae(-1)) with concentrations in A. palifera the highest DMSP concentrations reported in corals examined to date. As well as inter-specific differences in DMSP, intra-specific variation was also observed. Adjacent colonies of A. formosa that are known to have different thermal bleaching thresholds and morphologically distinct zooxanthellae, were also observed to have different DMSP concentrations, with the zooxanthellae in the colony that bleached containing DMSP at an average concentration of 436 finol zooxanthellae(-1), whilst the non-bleaching colony contained DMSP at an average concentration of 171 finol zooxanthellae(-1). The results of the present study have been used to calculate the area normalized DMSP concentrations in benthic algae (mean=0.015 mmol m(-2)) and corals (mean=2.22 mmol m(-2)) from the GBR. This data indicates that benthic algae and corals are a significant reservoir of DMSP in GBR waters. (C) 2002 Published by Elsevier Science Ltd.
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The pre-ingestive selection of microphytobenthic algae by the cockle Cerastoderma edule was studied in comparison with diets containing the pelagic diatom Phaeodactylum tricomutum. Treatments with the different diets covered a range of seston concentrations and organic content similar to field conditions. Rejection rates of C. edule exposed to the different treatments were significantly correlated with the concentration of total particulate matter. No significant differences in total rejection rates were found between pelagic and benthic diets. Organic rejection rate was significantly correlated with particulate organic matter of the treatments and no significant differences were found between both diets. Selection efficiency was significantly correlated with particulate organic matter concentration in both diets and no significant differences were found between the diets. Analysis of the pseudofeces composition by flow cytometry from cockles exposed to a mixed diet of microphytobenthic algae and P. tricornutum, showed a preferential ingestion of the pelagic diatom. Benthic species, such as small pennates and Navicula sp., were preferentially ingested in comparison to larger microphytobenthic species. The largest microphytobenthic species, Cylindrotheca sp., was significantly rejected. In general, C. edule is an opportunistic filter feeder that takes advantage of both pelagic and benthic algal cells.
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This study (1) investigated functional (capture rate, foraging success) and numerical (density) responses of bar-tailed godwits Limosa lapponica to an experimental decrease in densities of their prey, and (2) estimated seasonal depletion of the stock of their main prey, the mictyrid crab Mictyris longicarpus, in a subtropical estuary. It was predicted that if intake rates of the godwits are in the vicinity of the gradient section of a functional response curve, i.e. are directly determined by prey density, they will respond rapidly to experimental reduction in the density of their prey. Bar-tailed godwits did respond rapidly, both functionally and numerically, to a decrease in the density of M longicarpus, indicating that their intake rate was limited by food availability. The estimated seasonal depletion of the stocks of Mictyris by the godwits was 88 % of the initial standing stock. Despite the virtual disappearance of Mictyris from sediment samples through the course of a non-breeding season, local densities of godwits did not change between October and March, implying that adequate rates of intake could be maintained throughout their residence period.
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Copyright © Springer-Verlag Berlin Heidelberg and AWI 2014.
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Copyright © 2013 Elsevier Ltd. All rights reserved.
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Pollution in coastal ecosystems is a serious threat to the biota and human populations there residing. Anthropogenic activities in these ecosystems are the main cause of contamination by endocrine disruption compounds (EDCs), which can interfere with hormonal regulation and cause adverse effects to growth, stress response and reproduction. Although the chemical nature of many EDCs is unknown, it is believed that most are organic contaminants. Under an environmental risk assessment for a contaminated estuary (the Sado, SW Portugal), the present work intended to detect endocrine disruption in a flatsfish, Solea senegalensis Kaup, 1858, and its potential relationship to organic toxicants. Animals were collected from two areas in the estuary with distinct influences (industrial and rural) and from an external reference area. To evaluate endocrine disruption, hepatic vitellogenin (VTG) concentrations in males and gonad histology were analysed. As biomarkers of exposure to organic contaminants, cytochrome P450 (CYP1A) induction and the ethoxyresorufin-O-deethylase (EROD) activity were determined. The results were contrasted to sediment contamination levels, which are overall considered low, although the area presents a complex mixture of toxicants. Either males or females were found sexually immature and showed no significant evidence of degenerative pathologies. However, hepatic VTG concentrations in males from the industrial area in estuary were superior than those from the Reference, even reaching levels comparable to those in females, which may indicate an oestrogenic effect resulting from the complex contaminant mixture. These individuals also presented higher levels of CYP1A induction and EROD activity, which is consistent with contamination by organic substances. The combination of the results suggest that the exposure of flatfish to an environment contaminated by mixed toxicants, even at low levels, may cause endocrine disruption, therefore affecting populations, which implies the need for further research in identification of potential EDCs, their sources and risks at ecosystem scale.
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As densidades (ind/m2) e biomassas (mg/m2) de grupos selecionados da macrofauna da liteira (isópodos, diplópodos c cupins) foram estudadas sob diferentes sistemas agroflorestais (SAFs) implantados em áreas de pastagens degradadas c abandonadas na Amazônia central. O estudo foi feito na Estação de Pesquisa Agroflorestal da EMBRAPA/CPAA, 70 km ao norte de Manaus, usando-sc três blocos ao acaso, com cinco tratamentos, em quinze parcelas de 3000 m2; cada bloco tinha quatro diferentes tipos de SAFs e uma capoeira (CAP), usada como controle, onde se manteve a regeneração natural existente. Os SAFs eram dois sistemas agrossilviculturais, um com base em palmeiras e outro mais diversificado, denominado multiestrato, e dois sistemas agrossilvipastoris, de altos e baixos insumos. Em cada parcela, foram coletadas 50 amostras da macrofauna da liteira, usando-se um quadro de madeira de 50 x 50 cm, nas estações chuvosa e seca. A densidade e biomassa da macrofauna foram maiores no SAF mais diversificado (multiestrato) e geralmente maiores sob liteiras de cupuaçu e palmeiras, destacando-se o grupo dos isópodos com as maiores densidades c biomassas, seguido pelos diplópodos, nos SAFs, e pelos cupins, na capoeira. Todos os SAFs apresentaram maiores densidades e biomassas da macrofauna do que a capoeira, indicando a formação de micro-sítios favoráveis à sua ação, devido à melhor qualidade da liteira produzida e/ou da abundância localizada de liteiras de menor qualidade produzida pelas diversas espécies plantadas. Os resultados sugerem a melhoria do funcionamento dos processos de reciclagem no solo e, assim, das perspectivas de sustentabilidade da produção.
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A qualidade da água e a fauna composta pelos macroinvertebrados aquáticos do Igarapé do Mindú, o qual tem suas nascentes em áreas florestadas e atravessa a cidade de Manaus (Amazonas, Brasil), foram estudadas de 1993 a 1995. Desmatamentos e ocupação das áreas ao longo do igarapé, juntamente com a poluição orgânica doméstica causaram drásticas alterações nas características físico-químicas das águas e na composição da fauna aquática. Assim, temperatura da água, condutividade elétrica, pH e sedimentos em suspensão aumentaram significativamente, enquanto que os valores de oxigênio dissolvido na água diminuíram. Esses fatores de alterações, associados com a redução natural da velocidade de corrente d'água e aumento da radiação solar, resultaram em eutrofização e mudança marcante da fauna bentônica.
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O Centro de Endemismo Belém (CEB) -região biogeográfica localizada entre os rios Tocantins e Pindaré- é a área mais desmatada da Amazônia. Estudar a biota do solo dos remanescentes florestais e de áreas em regeneração (capoeiras) do CEB é fundamental para promover práticas agrícolas mais sustentáveis e orientar ações de restauração de áreas degradadas. Dessa forma, o objetivo desse estudo foi identificar os principais determinantes da composição e da diversidade dos grandes táxons de macrofauna do solo (uso atual do solo, núcleos geográficos, histórico de uso, freqüência de fogo) em uma cronoseqüência de capoeiras e florestas no CEB. A macrofauna foi amostrada em oito áreas de capoeiras baixas (4-7 anos), seis áreas de capoeiras médias (11-15 anos), sete áreas de capoeiras altas (20-40 anos), oito áreas de remanescentes de florestas e três áreas de pastagem. Sua composição e diversidade foi estudada através de Análises de Componentes Principais e Entre-classes. Um total de 9.225 indivíduos pertencentes a 29 grandes taxóns (ordens ou famílias) foram coletados nas 32 parcelas amostradas. A composição da macrofauna se mostrou sensível ao efeito do histórico de uso do solo e identificou comunidades significativamente distintas entre as micro-regiões, havendo nessa escala efeito da cronosequência de capoeiras e florestas. A intensidade do uso do solo levou a redução da abundância e da riqueza de predadores, indicando alterações significativas no funcionamento do solo. Esses resultados mostram um efeito duradouro da degradação sobre a macrofauna do solo e conseqüentemente sobre suas funções ecológicas.
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v.39:no.16(1958)
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O objetivo deste trabalho é verificar a variação diária da zonação da macrofauna bentônica nas praias de Tramandaí, Harmonia e Jardim do Éden, Rio Grande do Sul. As coletas foram feitas ao longo de cinco dias consecutivos, utilizando-se um tubo de PVC de 20 cm de diâmetro. Foram demarcadas três transversais distantes 50 m uma da outra, com 4 estações de coleta e três amostras cada. As estações se estenderam desde 8 m acima do limite superior da zona de varrido (definida a cada dia) até 1 m de profundidade. Também foram coletados diariamente dados dos perfis topográficos de cada praia. Os resultados mostraram que a macrofauna bentônica apresenta um padrão de zonação regular ao longo dos dias. O intermareal foi marcado pela presença do isópode Excirolana armata (Dana, 1853) e do poliqueta Euzonus furciferus (Ehlers, 1897). A zona de varrido apresentou grande abundância do caranguejo hipídeo Emerita brasiliensis (Schmitt, 1935), do bivalvo Donax hanleyanus (Philippi, 1842) e do poliqueto Scolelepis gaucha (Orensanz & Gianuca, 1974). As zonas de "surf" e arrebentação interna não apresentaram diferenças na composição de espécies, sendo dominantes os juvenis de D. hanleyanus, Mesodesma mactroides (Deshayes, 1854), o anfípode Phoxocephalopsis zimmeri (Schellenberg, 1931), o poliqueto Hemipodus olivieri (Orensanz & Gianuca, 1974), além do bivalve Donax gemmula (Morrison, 1971). Os resultados indicaram que, apesar do padrão de zonação da macrofauna ter sido regular ao longo do estudo, algumas mudanças na posição vertical das espécies foram observadas, principalmente em função da variação da zona de varrido.
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The freshwater sponges Trochospongilla variabilis Bonetto & Ezcurra de Drago (1973), Radiospongilla crateriformis (Potts, 1882), Spongilla cenota Penney & Racek (1968) and Corvoheteromeyenia heterosclera (Ezcurra de Drago, 1974) compose with the sphaerid bivalve Eupera cubensis (Prime, 1865) and several Phylactolaemata bryozoans a benthic filter feeding community living in seasonal lentic and lotic habitats with high Particulate Organic Carbon (POC), low conductivity and acid pH within the Costa Rica Dry Forest biome. The sponge specimens gathered led to the re-description of the four species.
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The objective of this study was to evaluate benthic macroinvertebrate communities as bioindicators of water quality in five streams located in the "Reserva Particular do Patrimônio Natural" (RPPN) Mata Samuel de Paula and its surroundings, in the municipality of Nova Lima near the city of Belo Horizonte, Minas Gerais State, southeastern Brazil. This region has been strongly modified by human activities including mining and urbanization. Samples were collected in the field every three months between August 2004 and November 2005, totaling six samplings in the rainy and dry seasons. This assessment identified one area ecologically altered while the other sampling sites were found to be minimally disturbed systems, with well-preserved ecological conditions. However, according to the Biological Monitoring Work Party (BMWP) and the Average Score Per Taxon (ASPT) indices, all sampling sites had excellent water quality. A total of 14,952 organisms was collected, belonging to 155 taxa (148 Insecta, two Annelida, one Bivalvia, one Decapoda, one Planariidae, one Hydracarina, and one Entognatha). The most abundant benthic groups were Chironomidae (47.9%), Simuliidae (12.3%), Bivalvia (7.5%), Decapoda (6.1%), Oligochaeta (5.2%), Polycentropodidae (3.7%), Hydropsychidae (2.5%), Calamoceratidae (1.8%), Ceratopogonidae (1.7%), and Libellulidae (1.2%). The assessment of the benthic functional feeding groups showed that 34% of the macroinvertebrates were collector-gatherers, 29% predators, 24% collector-filterers, 8% shredders, and 5% scrapers. The RPPN Mata Samuel de Paula comprises diversified freshwater habitats that are of great importance for the conservation of many benthic taxa that are intolerant to organic pollution.