986 resultados para MOUNTAIN ECOSYSTEMS


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Nigeria, the country of many rivers is also rich in lakes, and wetlands, sustainable and wise use of these inland aquatic ecosystem and water resources has become a matter of widespread and intense concern. Unhealthy freshwater ecosystems and seriously diminishing and unequal availability of quality freshwater call for high quality limnological research and expertise to underpin the enhancement of sustainable fisheries and aquaculture development.In every regard of national health, agriculture and economics, the continued over exploitation and misuse of finite freshwater resources is directly causal to the progressively deteriorating fish production and general standard of living.The integration of basic understanding of inland ecosystems with applied problems and their solutions should be of fundamental concern to all stakeholders in our freshwater resource. This is a basic element in creating an attractive and security ensured economic for investment in fisheries development, including aquaculture. This is the focus of this paper

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Microbial sulfur cycling communities were investigated in two methane-rich ecosystems, terrestrial mud volcanoes (TMVs) and marine methane seeps, in order to investigate niches and processes that would likely be central to the functioning of these crucial ecosystems. Terrestrial mud volcanoes represent geochemically diverse habitats with varying sulfur sources and yet sulfur-cycling in these environments remains largely unexplored. Here we characterized the sulfur-metabolizing microorganisms and activity in 4 TMVs in Azerbaijan, supporting the presence of active sulfur-oxidizing and sulfate-reducing guilds in all 4 TMVs across a range of physiochemical conditions, with diversity of these guilds being unique to each TMV. We also found evidence for the anaerobic oxidation of methane coupled to sulfate reduction, a process which we explored further in the more tractable marine methane seeps. Diverse associations between methanotrophic archaea (ANME) and sulfate-reducing bacterial groups (SRB) often co-occur in marine methane seeps, however the ecophysiology of these different symbiotic associations has not been examined. Using a combination of molecular, geochemical and fluorescence in situ hybridization coupled to nano-scale secondary ion mass spectrometry (FISH-NanoSIMS) analyses of in situ seep sediments and methane-amended sediment incubations from diverse locations, we show that the unexplained diversity in SRB associated with ANME cells can be at least partially explained by preferential nitrate utilization by one particular partner, the seepDBB. This discovery reveals that nitrate is likely an important factor in community structuring and diversity in marine methane seep ecosystems. The thesis concludes with a study of the dynamics between ANME and their associated SRB partners. We inhibited sulfate reduction and followed the metabolic processes of the community as well as the effect of ANME/SRB aggregate composition and growth on a cellular level by tracking 15N substrate incorporation into biomass using FISH-NanoSIMS. We revealed that while sulfate-reducing bacteria gradually disappeared over time in incubations with an SRB inhibitor, the ANME archaea persisted in the form of ANME-only aggregates, which are capable of little to no growth when sulfate reduction is inhibited. These data suggest ANME are not able to synthesize new proteins when sulfate reduction is inhibited.

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Very little research has been carried out on detrital energetics and pathways in lotic ecosystems. Most investigations have concentrated on the degradation of allochthonous plant litter by fungi, with a glance at heterotrophic bacteria associated with decaying litter. In this short review, the author describes what is known of the detrition of plant litter in lotic waters, which results from the degradative activities of colonising saprophytic fungi and bacteria, and goes on to relate this process to those invertebrates that consume coarse and/or fine particulate detritus, or dissolved organic matter that aggregates into colloidal exopolymer particles. It is clear that many of the key processes involved in the relationships between the physical, chemical, biotic and biochemical elements present in running waters are very complex and poorly understood. Those few aspects for which there are reliable models with predictive power have resulted from data collections made over periods of 20 years or more. Comprehensive research of single catchments would provide a fine opportunity to collect data over a long period.

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We know very little about the role of birds in different ecosystems, despite numerous interesting works of researchers and amateur ornithologist scattered throughout the world. Less attention is paid to freshwater ecosystems because of the difficulties encountered in the experimental methods as well as a lack of interest on behalf of hydrobiologists, for the activities of birds in these ecosystems. This article summarises types and morphoecological forms of waterfowl and their place in the lake ecosystem.

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The nitrification in the ocean is influenced by several environmental factors and the importance of these is more or less known. There are very likely many more to be discovered in the study of the interaction of nitrification bacteria and other micro-organisms in the ocean. Some of the factors to be considered will briefly be dealt with in this paper. Then the authors give the results of an incubation experiment in the Baltic Sea and from a detailed study in Gullmarn.

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Ecosystem level models are motivated by some combination of scientific and practical concerns. Those models motivated by practical concerns are likely to bear little historical relation to previous models. Mechanisms of interaction between particular species and their ecosystems vary enormously. Some species literally construct their own ecosystems. Others have more or less complex and important interactions with other species so that their presence or absence may alter the ecosystem. Prior information about the natural history of particular species can make ecosystem investigations quicker, cheaper, and more effective. The optimal resource for preparing to deal with the unlimited diversity of questions asked of ecologists would be a large' computerized databank of natural history observations for as many species as possible.

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About 40 years have passed since the discovery of picophytoplankton; the present knowledge of the taxonomy, physiology and ecology of these tiny photoautotrophic cells offers new perspectives on the importance of the microbial contribution to global biogeochemical cycles and food webs. This review focuses on the relationships among the components of picophytoplankton (picocyanobacteria and the picoplanktic eukaryotes) and biotic and abiotic environmental factors. The dynamics of picophytoplankton in aquatic ecosystems are strictly dependent upon basin size and trophy, temperature, and nutrient and light limitation, but they are also regulated by grazing and viral-induced lysis. The review considers: the pros and cons of the molecular approach to the study of the taxonomy of freshwater Synechococcus spp.; the importance of ecological aspects in understanding the puzzle of picophytoplankton phylogeny (genotype vs ecotype); and the role of biotic vs abiotic interactions in controlling picophytoplankton dynamics. Biotic, top-down control mechanisms are reviewed as well as knowledge of other biological interactions.

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About 40 years have passed since the discovery of picophytoplankton; the present knowledge of the taxonomy, physiology and ecology of these tiny photoautotrophic cells offers new perspectives on the importance of the microbial contribution to global biogeochemical cycles and food webs. This review focuses on the relationships among the components of picophytoplankton (picocyanobacteria and the picoplanktic eukaryotes) and biotic and abiotic environmental factors. The dynamics of picophytoplankton in aquatic ecosystems are strictly dependent upon basin size and trophy, temperature, and nutrient and light limitation, but they are also regulated by grazing and viral-induced lysis. The review considers: the pros and cons of the molecular approach to the study of the taxonomy of freshwater Synechococcus spp.; the importance of ecological aspects in understanding the puzzle of picophytoplankton phylogeny (genotype vs ecotype); and the role of biotic vs abiotic interactions in controlling picophytoplankton dynamics. Biotic, top-down control mechanisms are reviewed as well as knowledge of other biological interactions.

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A identificação e avaliação das vulnerabilidades e potencialidades socioambientais e socioecológicas, ao considerar as múltiplas realidades de ecossistemas, territórios e lugares, podem revelar novos caminhos, ações coletivas, solidárias, bem como auxiliar na tomada de decisão estratégica em sistemas de gestão de resíduos sólidos. Tal perspectiva, qualificaria princípios e conceitos metodológicos e técnicos, como aqueles direcionados a responder aos problemas que surgem da interação Humanidade-Sociedade-Natureza, com vistas à sustentabilidade. A Eco-eficiência, ao final do século XX, apresentou-se como solução para os problemas ambientais corporativos. Idealizada para ser aplicada em um empresas isolada, evoluiu para uma categoria central da Ecologia Industrial, ganhou contornos de Princípio e Filosofia para a Gestão Ambiental Empresarial, passando a orientar a geopolítica das nações no trato das questões ambientais supranacionais e políticas públicas das nações. A recente Política Nacional de Resíduos Sólidos apresenta a Eco-eficiência como um de seus princípios que deverão orientar gestores públicos e privados na elaboração de seus sistemas de gestão de resíduos sólidos. Devido aos impactos sociais, ambientais e ecológicos resultantes da geração e destinação inadequada dos resíduos sólidos, estes sistemas de gestão apresentam interfaces com outras políticas e sistemas de gestão públicos e privados nacionais. Estas interações conferem ao sistema de gestão de resíduos sólidos um caráter complexo, aberto, dinâmico e inclusivo, no qual o conceito de Eco-eficiência, baseado na alocação de recursos naturais, pode ser ressignificado em um outro nível de realidade, o nível coletivo, apresentando-se, como um conceito potencial voltado para a criação de recursos. Para corroborar esta hipótese apresenta-se uma abordagem integrativa com base na perspectiva socioecológica e no pensamento e metodologia transdisciplinar, na qual o conceito será contextualizado, problematizado e complexificado em seis níveis de realidade: Nível Genus-Global, Nível Político, Nível Acadêmico, Nível do Ecossistema, Território e Lugares, Nível Operacional e Nível Coletivo. Considera-se nesta abordagem os Arranjos Produtivos (indústrias e a Cadeia de Reciclagem), Arranjos Sociais (Comunidade localizadas e áreas de risco e precárias), Ecossistemas e Territórios, como Teia de Lugares, como Unidade Transdisciplinar perceptiva, cognitiva e analítica. A aplicação desta metodologia no Arranjo Produtivo Local Têxtil- Vestuário de Petrópolis, localizado na Região Serrana Fluminense, que se insere em um Ecossistema de Montanha, permitiu revelar outro Arranjo, invisível ao sistema de gestão público. Neste Arranjo de Retalhos e Estopas, cerca de 240 mulheres, residentes em comunidades precárias e de risco, beneficiam os resíduos sólidos gerados pelas indústrias do arranjo formal, conhecidos como retalhos, com os quais fabricam estopas. Conclui-se que esta abordagem integrativa, como proposta de ressignificação do conceito de Eco-eficiência, permitiu revelar, não somente uma nova realidade conceitual para a sua adoção e prática, como novos aspectos e variáveis para a construção de sistemas de gestão de resíduos sólidos industriais que tenham por foco a inclusão social, produtiva, cientifica e tecnológica de novos atores e recursos ao sistema.