9 resultados para exoesqueleto

em Repositório Institucional UNESP - Universidade Estadual Paulista "Julio de Mesquita Filho"


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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Pós-graduação em Ciências Biológicas (Microbiologia Aplicada) - IBRC

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

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Oil is a hydrocarbon mixture of various sizes, including saturated and aromatic compounds. Natural gas is a mixture of gaseous hydrocarbons and its main component is methane. In our society, the great demand for these fuels requires fast extraction, transportation and refining, increasing the number of accidents that compromise the environment. Oil is a finite resource and it is necessary to reduce the problems related to the question concerning environmental pollution which has encouraged the search for alternative fuel sources in our country. So today we have two major biofuels: ethanol and biodiesel. Concurrently, many studies have been done directed toward the isolation of microorganisms capable of degrading petrochemical industrial wastes, most of them using as a source of isolation soil and water collected in a contaminated environment. Isolation from alternative substrates has emerged as a new strategy that has provided satisfactory results. In this work, we present the leaf-cutter ants of the Attini tribe as a source for the isolation of micro-fungi with the potential for hydrocarbon degradation. These insects have a social way of life and a highly specialized system of intra and interspecific communication, which is based on the recognition of individuals through volatile chemical compounds, the majority hydrocarbons, stored in their exoskeleton. The micro-environment exoskeleton of Attini ants (genus Atta) used in this work proved to be a rich source of microbial biodiversity, as other studies have found. The flotation isolation technique applied here allowed the achievement of 214 micro-fungi, 118 representatives of the dematiaceous fungi group and 96 hyaline filamentous fungi. They were submitted to toluene degradation tests and at least one strain of each genus presented good results, namely Teratosphaeria, Exophiala, Cladosporium, Penicillium, Aspergillus... (Complete abstract click electronic access below)

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Diplópodos são animais detritívoros sendo considerados importantes macro-artrópodos do solo, desempenhando importante papel na manutenção do equilíbrio do ecossistema. Comumente não apresentam população numerosa, mas desequilíbrios ambientais, mudanças climáticas e utilização de pesticidas podem eliminar possíveis competidores ocasionando explosões populacionais. Dotados de um corpo cilíndrico com 25 a 100 segmentos com cutícula; o exoesqueleto da maioria dos diplópodos é fortemente calcificado. Possuem diplossegmentos que se originam da fusão entre dois segmentos durante o desenvolvimento e a grande parte destes diplossegmentos apresenta dois pares de pernas, de onde deriva o nome Diplopoda. O tubo digestório destes animais é formado por três regiões: o intestino anterior, o médio e o posterior. Trabalhos com morfologia do tubo digestório de milípides são raros e na maioria antigos. Assim, este trabalho de conclusão de curso objetivou realizar uma revisão bibliográfica sobre as descrições morfológicas existentes sobre o tubo digestório de diplópodos visando rever a nomenclatura utilizada para os diferentes componentes presentes nas regiões que o compõem, principalmente para o tecido presente na região do intestino médio denominada até então de camada de “corpo gorduroso” constituinte do intestino médio. Foi intuito também, rever a utilização do tubo digestório de diplópodos como biomarcador em bioensaios de solos impactados. Após a revisão dos dados na literatura, ficou claro que a camada presente no intestino médio de diplópodos, denominada de “corpo gorduroso”, na realidade é constituída por células hepáticas, as quais foram descritas na literatura como sendo de distribuição aleatória, sem formar uma camada contínua

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Millipedes are macro-arthropods of soil which perform a important role in maintaining the balance of the ecosystem, since they feed on decaying organic matter and because they promotes the soil enrichment, aeration and humidification. These animals are usually found in humid with low light places, under rocks and trunks. The diplopods exoskeleton is much resistant and impregnated with calcium salts. Due the secretion of defense, with strong and unpleasant smell, the animals of this class have few or no predators. Large diplopods populations are not observed, but explosions population can occur for unbalances enviromnmental, by climate change and by use of pesticides that may eliminate potential competitors. In this sense, the millipede Urostreptus atrobrunneus Pierozzi & Fontanetti, 2006, has presented points of infestation in urban centers of Sao Paulo state, causing many disorders of the human population. Because it is a newly described species, little is known of its aspects biological and morphological. Thus, the purpose of this study was to describe the structure and function of the digestive tract of the species U. atrobrunneus by means of histological, histochemistry and ultrastructural techniques. The results demonstrated that the digestive tract of U. atrobrunneus is similar to the descriptions given for other species. The foregut consists of a simple epithelium, composed of cells of different heights, covered by a cuticular intima, leaning on a thin basal membrane, followed by a well-developed muscular layer and an external membrane, around the foregut have a pair of salivary glands. The midgut epithelium has a pseudostratified, supported by a thick basal membrane, followed by a muscular layer and a layer of hepatic cells. The muscle is distributed unevenly coated with an external membrane, this portion is marked by the absence of cuticular intima... (Complete abstract click electronic access below)

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