18 resultados para Videira - Fisiologia

em SAPIENTIA - Universidade do Algarve - Portugal


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Tese de Doutoramento, Biologia, Faculdade de Ciências do Mar e do Ambiente, Universidade do Algarve, 2001

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Dissertação de Mestrado, Ciências Biomédicas, Departamento de Ciências Biomédicas e Medicina, Universidade do Algarve, 2015

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Dissertação mest., Ciências Biomédicas, Universidade do Algarve, 2010

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Tese de Doutoramento, Ecologia, Especialidade de Ecofisiologia, Faculdade de Ciências do Mar e do Ambiente, Universidade do Algarve, 2007

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Tese dout., Ciências do Mar, Universidade do Algarve, 2006

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Dissertação mest., Biologia Marinha, Universidade do Algarve, 2009

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Tese de dout., Ciências Agrárias (Protecção de Plantas), Unidade de Ciências e Tecnologias Agrárias, Univ. do Algarve, 1994

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Dissertação de mest., Engenharia Biológica, Faculdade de Ciências e Tecnologia, Univ. do Algarve, 2011

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Tese mest., Biologia Marinha, Universidade do Algarve, Faculdade de Ciências do Mar e do Ambiente, 2008

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Tese de dout., Biologia (Fisiologia Vegetal), Faculdade de Engenharia dos Recursos Naturais, Univ. do Algarve, 2005

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The vertebral column and its units, the vertebrae, are fundamental features, characteristic of all vertebrates. Developmental segregation of the vertebral bodies as articulated units is an intrinsic requirement to guarantee the proper function of the spine. Whenever these units become fused either during development or postsegmentation, movement is affected in a more or less severe manner, depending on the number of vertebrae affected. Nevertheless, fusion may occur as part of regular development and as a physiological requirement, like in the tetrapod sacrum or in fish posterior vertebrae forming the urostyle. In order to meet the main objective of this PhD project, which aimed to better understand the molecular and cellular events underlying vertebral fusion under physiological and pathological conditions, a detailed characterization of the vertebral fusion occurring in zebrafish caudal fin region was conducted. This showed that fusion in the caudal fin region comprised 5 vertebral bodies, from which, only fusion between [PU1++U1] and ural2 [U2+] was still traceable during development. This involved bone deposition around the notochord sheath while fusion within the remaining vertebral bodies occur at the level of the notochord sheath, as during the early establishment of the vertebral bodies. A comparison approach between the caudal fin vertebrae and the remaining vertebral column showed conserved features such as the presence of mineralization related proteins as Osteocalcin were identified throughout the vertebral column, independently on the mineralization patterns. This unexpected presence of Osteocalcin in notochord sheath, here identified as Oc1, suggested that this gene, opposing to Oc2, generally associated with bone formation and mature osteoblast activity, is potentially associated with early mineralization events including chordacentrum formation. Nevertheless, major differences between caudal fin region and anterior vertebral bodies considering arch histology and mineralization patterns, led us to use RA as an inductive factor for vertebral fusion, allowing a direct comparison of equivalent structures under normal and fusion events. This fusion phenotype was associated with notochord sheath ectopic mineralization instead of ectopic perichordal bone formation related with increased osteoblast activity, as suggested in previous reports. Additionally, alterations in ECM content, cell adhesion and blood coagulation were discussed as potentially related with the fusion phenotype. Finally, Matrix gla protein, upregulated upon RA treatment and shown to be associated with chordacentrum mineralization sites in regular development, was further described considering its potential function in vertebral formation and pathological fusion. Therefore with this work we propose zebrafish caudal fin vertebral fusion as a potential model to study both congenital and postsegmentation fusion and we present candidate factors and genes that may be further explored in order to clarify whether we can prevent vertebral fusion.

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Grapevine leafroll disease (GLRD) is one of the most important virus diseases of grapevines worldwide, causing major economical impact. The disease has a complex aetiology and currently eleven phloem-limited viruses, termed in general Grapevine leafroll-associated virus (GLRaVs), have been identified. Two of the GLRaVs, GLRaV-1 and GLRaV-3, are included in the European certification scheme of propagation material. However, the flawed notion that GLRaV-3 is more frequent than GLRaV-1 and that all other GLRaVs are possibly not as relevant for GLRD, has until now precluded the development of specific serological and molecular detection assays and limited the scope of molecular characterization of the viruses known to be associated with the disease. Hence, few studies have addressed the phylodynamics of GLRaVs or even characterized the genetic structure of their natural populations. This generalized lack of molecular information, in turn underlie the deficient capacity to detect the viruses. The phylogenetic analyses were conducted on the basis of the heat shock protein 70 homologue (HSP70h) and the coat protein (CP) genes for GLRaV-1 and the HSP70h, the heat shock protein 90 homologue (HSP90h) and the CP genes for GLRaV-5. The data obtained for GLRaV-1 contributed 83 new CP sequences. This information was combined with previous analysis by other authors and used for the production of new polyclonal IgG, capable of detecting CP variants from all the phylogroups observed. Successful testing of this new tool included tissue print immunoblotting (TPIB) and in situ immunoassay (ISIA). The data obtained for GLRaV-5, contributed 61 new CP and 28 new HSP90h gene sequences. Eight phylogenetic groups were identified on the basis of the CP. Characterization of the genetic structure of the isolates revealed a higher diversity than previously reported and allowed the identification of dominant virus variants. For both GLRaV-1 and GLRaV-5, the effect of vegetative propagation on the virus transmission dynamics was addressed.

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O Amyloodinium ocellatum é um parasita dinoflagelado que aparece em aquaculturas por todo o mundo, infectando as brânquias e o tegumento dos peixes. Esta parasita é particularmente relevante na aquacultura mediterrânica onde os surtos causam perdas consideráveis. Apesar de já terem sido experimentados vários tratamentos, nenhum deles se revelou efectivo na erradicação do parasita e ainda alguns dos químicos utilizados podem ter importantes efeitos nocivos sobre o ambiente. Deste modo, o objectivo deste estudo foi testar novos fármacos para impedir o desenvolvimento e/ou eliminar o parasita em peixes já infectados. Os fármacos utilizados neste estudo foram endoperóxidos, uma recente classe de antimaláricos. Na primeira parte deste estudo realizaram-se ensaios in vitro onde se testaram os efeitos de diferentes concentrações (0,1mM; 1 mM; 2mM e 2,5mM) dos fármacos NAD17, NAD19, LCD93 e LCD67A sobre a divisão dos tomontes. Às 24 e 48 horas de exposição a 0,1mM NAD19 e 1mM LCD93, os tomontes observados não tinham entrado em divisão. Na segunda parte realizou-se um ensaio in vivo no qual os fármacos foram administrados a juvenis de dourada (Sparus aurata) a uma concentração de 10μmol/kg através de tratamento oral. No ensaio in vivo avaliou-se o possível efeito profiláctico dos fármacos na infecção através da análise da abundância e prevalência do parasita, da eficácia dos fármacos e dos efeitos do parasita e do tratamento na fisiologia e no eixo do stress dos animais infectados através de análises enzimáticas e de parâmetros bioquímicos do sangue. As medições realizadas ao plasma sanguíneo e às brânquias de douradas com diferentes níveis de infecção de A. ocellatum revelaram que não existe diferença significativa entre os controlos e os endoperóxidos para a dose testada. Será necessário realizar mais ensaios para obter conclusões sobre o efeito dos endoperóxidos no controlo do parasita de peixes A. ocellatum.

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Tese de doutoramento, Ciências Biomédicas, Universidade do Algarve, Departamento de Ciências Biomédicas e Medicina, 2014

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Tese de doutoramento, Ciências do Mar, da Terra e do Ambiente, Faculdade de Ciências e Tecnologia, Universidade do Algarve, 2015