933 resultados para Anguilla anguilla Linnaeus, 1758


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An investigation to characterize the causes of Pinna nobilis population structure in Moraira bay (Western Mediterranean) was developed. Individuals of two areas of the same Posidonia meadow, located at different depths (A1, -13 and A2, -6 m), were inventoried, tagged, their positions accurately recorded and monitored from July 1997 to July 2002. On each area, different aspects of population demography were studied (i.e. spatial distribution, size structure, displacement evidences, mortality, growth and shell orientation). A comparison between both groups of individuals was carried out, finding important differences between them. In A1, the individuals were more aggregated and mean and maximum size were higher (A1, 10.3 and A2, 6 individuals/100 m(2); A1, x = 47.2 +/- 9.9; A2, x = 29.8 +/- 7.4 cm, P < 0.001, respectively). In A2, growth rate and mortality were higher, the latter concentrated on the largest individuals, in contrast to A1, where the smallest individuals had the higher mortality rate [A1, L = 56.03(1 - e(-0.17t)); A2, L = 37.59(1 - e(-0.40t)), P < 0.001; mean annual mortality A1: 32 dead individuals out of 135, 23.7% and A2: 16 dead individuals out of 36, 44.4%, and total mortality coefficients (z), z(A1(-30)) = 0.28, z(A1(31-45)) = 0.05, z(A1(46-)) = 0.08; z(A2(-30)) = 0.15, z(A2(31-45)) = 0.25]. A common shell orientation N-S, coincident with the maximum shore exposure, was observed in A2. Spatial distribution in both areas showed not enough evidence to discard a random distribution of the individuals, despite the greater aggregation on the deeper area (A1) (A1, chi(2) = 0.41, df = 3, P > 0.5, A2, chi(2)= 0.98, df = 2 and 0.3 < P < 0.5). The obtained results have demonstrated that the depth-related size segregation usually shown by P. nobilis is mainly caused by differences in mortality and growth among individuals located at different depths, rather than by the active displacement of individuals previously reported in the literature. Furthermore, dwarf individuals are observed in shallower levels and as a consequence, the relationship between size and age are not comparable even among groups of individuals inhabiting the same meadow at different depths. The final causes of the differences on mortality and growth are also discussed.

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The age and growth of Mugil cephalus was investigated in Bonny Estuary, Nigeria, from January, 1995 to December, 1996. Length-weight relationships were isometric with length exponents of 2.84 (males), 2.90 (females) and 2.88 (overall). Modal length at age were 12.0cm, 20.9cm, 25.0cm, 28.4cm and 30.2cm TL for ages 0+, 1+, 2+, 3+ and 4+ respectively. Corresponding total weights were 20.01g, 78.93g, 173.12g, 217.61g and 247.50g, respectively. Asymptotic length (Lo) was estimated 33.2cm TL, asymptotic weight (W sub(o)) was 484g, growth coefficient K=0.55847 super(-1) and hypothetical age at zero length To = 0.152yr. Longevity, Tmax, was 5.0yr, length and weight growth performance indices were Q super(1)=2.79 and Q = 1.44, respectively. Total mortality, natural mortality and fishing mortality were z = 1.02yr super(-1), M=0.607yr super(-1) and F=O. 3129yr super(-1), respectively. The exploitation ratio E was 0.4048 and exploitation rate U = 0.2302yr super(-1)

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Replicate Ponds of 0.02ha stocked at 500 catfishes with 20,000 tilapia/ha were used to assess growth performance of O.niloticus, average weight 50.4g with (i) darted catfish; H.longifilis (shooters) average weight 60.3g (ii) non-shooters of H.longifilis, average weight 35.4g. Final mean weight, mean growth rate, specific growth rate and food conversion ratio were 499.5g 26g/day, 1.36% and 5.58% respectively for O.niloticus stocked with longifilis (shooters and 440.4g 2.3g/day 1.23% and 5.58% respectively for O.niloticus stocked withH.longifilis (non- shooters) and 246.9g, 1.2g/day, 0.93, 6.30% respectively for tilapia in monoculture. The least growth was noted for O. niloticus in monoculture while the best growth was recorded O. niloticus in polyculture with darted catfish

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Replicate Ponds of 0.02ha stocked at 500 catfishes with 20,000 tilapia/ha were used to assess growth performance of O.niloticus, average weight 50.4g with (i) darted catfish; H.longifilis (shooters) average weight 60.3g (ii) non-shooters of H.longifilis, average weight 35.4g. Final mean weight, mean growth rate, specific growth rate and food conversion ratio were 499.5g 26g/day, 1.36% and 5.58% respectively for O.niloticus stocked with longifilis (shooters) and 440.4g 2.3g/day 1.23% and 5.58% respectively for O.niloticus stocked with H.longifilis (non- shooters) and 246.9g, 1.2g/day, 0.93, 6.30% respectively for tilapia in monoculture. The least growth was noted for O. niloticus in monoculture while the best growth was recorded O. niloticus in polyculture with darted catfish

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Nos últimos anos, temas envolvendo a conservação de elasmobrânquios têm recebido maior atenção em muitos países. Muitas espécies passaram a ser consideradas ameaçadas de extinção pela IUCN, demonstrando a necessidade de ordenamento pesqueiro e elaboração de planos de manejo. Os Poluentes Orgânicos Persistentes correspondem a mais uma ameaça para esse grupo de peixes, no entanto, estudos envolvendo a contaminação desses organismos são recentes e vêm aumentando nos últimos anos. O presente estudo teve como objetivo principal a quantificação de compostos organoclorados em tecido hepático de uma espécie de raia criticamente ameaçada raia-borboleta, Gymnura altavela, residente na Baía de Guanabara, um dos ambientes estuarinos mais impactados do Brasil. Além disso, investigouse a influência de fatores biológicos, tais como estágio de maturidade sexual, sexo, tamanho e porcentagem de lipídio na matriz analisada, sobre os perfis de contaminação por esses xenobióticos. As concentrações dos compostos organoclorados foram determinadas com a utilização do cromatógrafo de fase gasosa com detector de captura de elétrons (CG-DCE), da marca Agilent Technologies, modelo 7890. Nossos resultados mostraram que as bifelinas policloradas (PCB) representam a classe mais importante de contaminantes com concentração média de 6.772,8 ( 4.659,4) ng.g-1 de lipídio e a maior concentração foi 18.513,1 ng.g-1 de lipídio em um indivíduo macho e jovem. Desse total, 66,5% foram representados pelos congêneres de PCBs 153>138>180>101>170. Quanto ao número de átomos de cloro, os PCBs pertences à classe dos hexa-clorados foram os mais abundantes. A concentração média do ΣDDT foi 646,0 ( 722,4) ng.g-1 de lipídio e o isômero mais representativo foi o p,p DDE com 65,7% do total. O ΣHCH, o HCB e o Mirex representaram 0,13% da contaminação total em G. altavela sendo, portanto, os compostos com as menores contribuições. A razão representada pela fórmula ΣDDT/ΣPCB foi de 0,09, caracterizando uma predominância de compostos de origem industrial. As correlações de Spearman apontaram para uma diminuição das concentrações do ΣPCB, ΣHCH e Mirex à medida que os indivíduos crescem. Não foram encontradas diferenças nas concentrações em relação aos diferentes estágios de maturidade sexual e entre machos e fêmeas.