169 resultados para SEABREAM SPARUS-AURATA
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Em peixes, o cobre (Cu) é absorvido a partir da água, via branquial, e pela ingestão de água e alimento, via gastrintestinal. Para evitar reações não específicas prejudiciais e suprir proteínas dependentes de Cu, existem transportadores específicos, como as proteínas de absorção de alta afinidade ao Cu (CTR1) e as Cu-ATPases (ATP7), que auxiliam na translocação intracelular do metal. No presente estudo, os genes CTR1 e ATP7B foram identificados em Poecilia vivipara e os seus transcritos foram quantificados por RT-qPCR nas brânquias, no fígado e no intestino de guarús expostos (96 h) ao Cu (0, 5, 9 e 20 µg/L) em água doce e salgada (salinidade 24). Foram identificadas novas sequências nucleotídicas dos genes CTR1 (1560 pb, completa) e ATP7B (617 pb, parcial), as quais tiveram altos valores de identidade com as descritas para Fundulus heteroclitus (CTR1=81%) e Sparus aurata (ATP7B=81%). A análise por RT-qPCR indicou níveis de transcrição para CTR1 e ATP7B em todos os tecidos analisados. Em guarús na água doce, a maior expressão da CTR1 e da ATP7B se deu no fígado. Em guarús na água salgada, a maior expressão da CTR1 ocorreu no intestino, enquanto a da ATP7B se deu no fígado e intestino. Na água doce, a exposição ao Cu aumentou o conteúdo branquial e hepático de Cu, diminuiu os transcritos de CTR1 e ATP7B nas brânquias e aumentou os transcritos destes genes no fígado, sem alterar o conteúdo corporal de Cu. Na água salgada, a exposição ao Cu aumentou o conteúdo de Cu e diminuiu o transcrito de ATP7B no intestino, sem alterar o conteúdo corporal de Cu nos P. vivipara. Estes resultados indicam que a homeostasia do Cu em P. vivipara envolve a redução da expressão do CTR1 e ATP7B nas brânquias (água doce) e intestino (água salgada) para limitar a absorção do Cu e o aumento da expressão destes genes no fígado (água doce) para facilitar o armazenamento e desintoxicação do Cu.
Reguladores da expressão do gene da proteía Gla da matriz (MGP) numa linha celular derivada de peixe
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Dissertação de mest. em Biotecnologia, Faculdade de Engenharia de Recursos Naturais, Univ. do Algarve, 2004
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Dissertação de mest. em Aquacultura, Unidade de Ciências e Tecnologias dos Recursos Aquáticos, Univ. do Algarve, 1997
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A minhoca (Eisenia fetida Savigny, 1826) é uma boa fonte de proteína. O elevado teor em humidade (82,80% ±2,128) e cinzas (10,70% ±2,345), principalmente terra, poderão ser um fator limitante à sua utilização como alimento para peixes. Com o objetivo de avaliar o interesse da utilização de E. fetida na alimentação de peixes, em 23 setembro 2014 foram capturados 22 juvenis de achigã (Micropterus salmoides Lacépède, 1802) (0+ anos) numa pequena barragem de rega Os achigãs foram colocados em três aquários para habituação a um alimentos compostos comercial. Três semanas depois 86,4% já ingeriam o alimento. A taxa de sobrevivência foi de 100%. Em 13 outubro 2014 foram escolhidos aleatoriamente 16 achigãs e colocados em dois aquários (8 peixes/aquário; 0,048 m3 de água). Os valores médios iniciais de peso, comprimento, fator K e densidade foram semelhantes nosdois aquários. No aquário G1 (minhocas) e aquário G2 (alimento composto) o peso, o comprimento, o fator K e a densidade iniciais foram, respetivamente, 13,62 g (±3,171) e 13,40 g (±3,002) (P>0,05); 10,49 cm (±0,757) e 10,39 cm (±0,649) (P>0,05); 1,160 (±0,043) e 1,179 (±0,082) (P>0,05); 2,27 kg/m3 e 2,23 kg/m3. No nosso estudo laboratorial a temperatura média da água variou entre 19,9ºC e 16,8ºC. Como em Portugal não se produzem alimentos específicos para achigãs foi utilizado um alimento composto comercial formulado para douradas (Sparus aurata L., 1758) e robalos (Dicentrarchus labrax L., 1758) (proteína 49,74%MS; gordura 18,07%MS; cinzas 11,57%MS; fibra bruta 0,84%MS; humidade 6,55%). No dia 88 do estudo (09 janeiro 2015) os valores médios de peso, comprimento, fator K e densidade nos aquários G1 e G2 foram, respetivamente, 17,57 g (±4,071) e 19,19 g (±4.811) (P<0,05); 10,88 cm (±0,875) e 11,29 cm (±0,871) (P<0,05); 1,346 (±0,051) e 1,311 (±0,061) (P>0,05); 2,93 kg/m3 e 3,20 kg/m3). Os resultados obtidos até agora parecem indicar que a E. fetida pode ser utilizada na alimentação de achigãs.
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Fisheries bycatches and discards constitute a significant problem in many fisheries worldwide. Unlike the pelagic purse-seine, the demersal purse seine usually targets high commercial value demersal species such as sea breams ( e. g., Diplodus spp., Pagellus spp., Sparus aurata) and the European sea bass ( Dicentrarchus labrax), while discards consist mainly of pelagic species and juveniles of the above mentioned species. In order to evaluate the efficiency of a selectivity device in reducing bycatch and consequently of discards in a demersal purse seine fishery, experimental deployments were carried out. The bycatch reducing device (BRD) consisted in the use of a panel of diamond-shaped mesh netting of 70 mm stretched mesh in the posterior part of the purse seine. Data from 61 experimental fishing trials allowed the evaluation of discards, with Scomber japonicus, Boops boops, Sardina pilchardus, Diplodus bellottii and Belone belone being the main discarded species. The mean discard ratio per set was 0.49 (+/- 0.30 standard deviation). The causes for discarding were also identified, with low commercial value being the most important reason. The results of the trials with BRD, were promising, with an average of 49% (+/- 24%) of the fish escaping per set, especially from those species that are most discarded. Overall, the use of this method for reducing discards can be considered positive for the following reasons: there is no need for structural modification of the fishing gear, the BRD is easy to deploy, and it is efficient in terms of species, sizes and quantities of fish that manage to escape. It therefore has significant benefits for the demersal purse seine fishery and possibly for other "metiers" as well.
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Gastric evacuation rates of the gilthead sea bream, Sparus aurata, fed with commercial pelleted food and polychaetes (Nereis diversicolor) were determined under experimental conditions. The estimated gastric evacuation rate for pelleted food was 7.97% h(-1), with a total time of digestion of approximately 9 h. The respective values for the natural food were 6.24% h(-1), with a total digestion time of approximately 12 h. The daily consumption of fish reared in earth ponds in a semi-intensive aquaculture facility was estimated through 24h cycles performed between April and August. The daily consumption varied from 18.58 to 31.98 mg g(-1). There was a constant increase in the average daily consumption per individual of 1.8-4.6 g (dry weight). During these cycles, samples of stomachs were taken and the contents preserved for further observation. The feeding behaviour of the reared fish was compared with a fish sample caught in the Ria Formosa lagoon. No common species were found between samples. A total of 38 prey were identified, which suggests that the gilthead sea bream is a non-specific predator. Despite the high abundance of natural prey in the ponds, the dependence of sea bream on pelleted food was high.
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Sensory analysis is a scientific discipline used to evoke, measure, analyse and interpret the responses to products that are perceived by the senses of sight, smell, taste, touch and hearing. This science is used to highlight the strengths and characteristics of a product, such as in the case of research and development products where alternative ingredients, food waste or by-products are used. It can also be used to evaluate the same characteristics over time, to highlight alterations in one of the sensory components at a given time or over time. This doctoral thesis deals with the valorisation, through characterisation, of various aquaculture fish products. In particular, the products covered by this study were analysed, depending on the objective pursued, with different sensory methods using trained judges and in one case consumers. Therefore, the sensory characterisation of the products was useful for investigating the foods considered in this doctoral research. In particular, specific research topics were taken: 1. The study of alternative ingredients, such as the outcomes of different levels of inclusion of insect larvae (Hermetia illucens) meal on the quality of sea bream (Sparus aurata) fillets. 2. The study of consumer expectations and perceptions on the use of insect meal as a feed for aquaculture products. In particular, this study was done after the characterisation by Quantitative Descriptive analysis (QDA) of the products to exclude sensory differences. 3. Development of a non-destructive and cheap device based on dielectric spectroscopy for assessing fish freshness. In particular in this study, the developed device was evaluated in correlation with a sensory method for assessing the freshness of fish product, the Quality Index Method (QIM)
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L’Sparus –el nom prové de la denominació en llatí de l'orada– és un petit submergible de color carabassa que té la forma d’un torpede. No és més llarg que la cama d’una persona adulta, però disposa de l’espai necessari per encabir els mecanismes que l’orienten, el propulsen i li proporcionen energia. L’Sparus és un robot autònom, perquè navega tot sol i no necessita cap intervenció humana per localitzar objectes submergits, és capaç de veure-hi o sentir-hi. La combinació de senzillesa i efectivitat li han proporcionat la victòria en la competició SAUC-E, que, organitzada per l’OTAN, ha tingut lloc el mes de juny a La Spezia, a Itàlia
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The aim of this work was to develop a quality index method (QIM) scheme for whole ice-boxed refrigerated blackspot seabream and to perform shelf-life evaluations, using sensory analysis, GR Torrymeter measurements and bacterial counts of specific spoilage organisms (SSO) during chilled storage. A QIM scheme based on a total of 30 demerit points was developed. Sensory, physical and microbiological data were integrated and used to determine the rejection point. Results indicated that the shelf-life of blackspot seabream is around 12-13 days. (C) 2011 Elsevier Ltd. All rights reserved.
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Pós-graduação em Biociências - FCLAS