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1.
Mar Environ Res ; 156: 104902, 2020 Apr.
Article in English | MEDLINE | ID: mdl-32056797

ABSTRACT

Wild fish belonging to four species belonging to different trophic groups were captured at three distances from fish farm facilities: long distance (>5 Km), medium distance (1.5 Km) and close to sea-cages. Flesh, brain, liver and gonads were sampled for fatty acid analysis. Fish aggregated near sea-cages showed accumulation of fatty acids of vegetable origin in the studied tissues, due to surplus feed consumption or via predation of fish that consumed the feed. Gonads accumulated vegetable fatty acids in different manner in the different species, and the species least and most influenced by fish-feeds were selected for gonad histological examination. Results showed an acceleration of the final stages of the oocyte development in fish aggregated near fish farms compared to fish captured at long distance. Differences in oocyte development were more acute in the species which incorporated higher quantities of vegetable fatty acids.


Subject(s)
Aquaculture , Fatty Acids/analysis , Fisheries , Fishes , Gonads/chemistry , Animal Feed , Animals , Animals, Wild
2.
Mar Pollut Bull ; 91(1): 45-53, 2015 Feb 15.
Article in English | MEDLINE | ID: mdl-25577476

ABSTRACT

Currently, the lipid content of fish feeds includes high amounts of terrestrial vegetable oils, rich in n-6 fatty acids and poor in n-3 fatty acids. Sinking organic matter in the shape of fragmented pellets and fish faeces could be ingested by the surrounding fauna attracted to the submerged structures of aquaculture facilities or living in natural benthic habitats. Fatty acids contained in feed pellets were used as trophic markers to shed light on the assimilation and incorporation of aquaculture wastes by the invertebrate fauna associated to sea-cages. Eighteen macroinvertebrate species, and zooplankton, seaweeds and sediments were collected from two fish farms, one of which (control) had not been used as such for two years. This study demonstrates that macroinvertebrate fauna present in fouling can take up sinking organic matter from farms. Further research should be directed at assessing the potential implications of aquaculture production for the surrounding ecosystem.


Subject(s)
Animal Feed/analysis , Aquaculture/methods , Food Chain , Invertebrates/metabolism , Waste Products/analysis , Analysis of Variance , Animals , Chromatography, Gas , Ecosystem , Fatty Acids/analysis , Fatty Acids/pharmacokinetics , Feces/chemistry , Fishes/growth & development , Geologic Sediments/chemistry , Mediterranean Sea , Spain , Zooplankton/metabolism
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