首页> 外文期刊>Aquaculture International >Mixed function oxidase activity and organochlorine levels in farmed sharpsnout seabream (Diplodus puntazzo) from two intensive aquaculture facilities
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Mixed function oxidase activity and organochlorine levels in farmed sharpsnout seabream (Diplodus puntazzo) from two intensive aquaculture facilities

机译:来自两个集约化水产养殖设施的养殖鲷鱼(Diplodus puntazzo)混合功能氧化酶活性和有机氯水平

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Mixed function oxidase (MFO) activities and organochlorine levels were investigated in liver of farmed sharpsnout seabream bred in two intensive facilities, a sea farm and a land-based farm The aim of this study is to investigate how different facility locations and breeding conditions might affect fish metabolic capabilities and accumulation of toxic chemicals in farmed sharpsnout seabream The differences between breeding two or more fish species in the same cage or tank known as polyculture and monoculture (1 species) were also investigated The results showed that both facility location (sea and land) as well as breeding systems (polyculture and monoculture) might be responsible foi the differences observed in both MFO enzyme activity and organochlorine levels Significantly higher activities of two metabolizing enzymes such as 7-ethoxyresorufin-O-deethylase (EROD) and benzo(a)pyrene monooxygenase (B(a)PMO) were in fact recorded in land-based farmed fish than in sea farmed ones, and much higher inthose from polyculture than in monoculture (p < 0.05) By contrast, the highest levels of dichlorodiphenyldichloroethilene (pp' DDE) and polychlorinated biphenyls (PCBs as Aroclor 1260) were measured in sea-farmed fish, except for hexachlorobenzene (HCB), which gave higher levels in land-based farmed fishes No significant differences were observed between monoculture and polyculture in p,p' DDE and PCBs levels except for p,p' DDE which was significantly higher in monoculture than in polyculture (p < 0.05) in fish reared in tanks Finally significantly higher HCB levels were measured in fish reared in monoculture in tanks (p < 0.05) and in polyculture in cages (p < 0.05). The low TEQ values obtained for PCB congeners at liver level indicated no concern for fish health
机译:在两个集约化设施,一个海洋农场和一个陆地农场养殖的养殖尖嘴鲷的肝脏中研究了混合功能氧化酶(MFO)活性和有机氯水平。本研究的目的是调查不同设施位置和繁殖条件可能如何影响养殖的鲷鱼的鱼类代谢能力和有毒化学物质的积累还研究了在同一网箱或鱼缸中繁殖两种或多种鱼类的差异,即混养和单一养殖(1种)。结果表明,两种设施的位置(海洋和陆地) )以及繁殖系统(多元培养和单培养)可能是造成MFO酶活性和有机氯水平差异的原因。两种代谢酶(例如7-乙氧基试卤灵-O-脱乙基酶(EROD)和苯并(a))的活性明显较高实际上,陆地养殖鱼类中记录的单加氧酶(B(a)PMO)比海洋养殖鱼类中记录的多。相比于单一养殖,混合养殖的含量要高得多(p <0.05)。相比之下,在海水养殖鱼类中,二氯二苯基二氯乙炔(pp'DDE)和多氯联苯(PCBs为Aroclor 1260)的含量最高,六氯苯(HCB)除外,在单陆养殖中,p,p'DDE和多氯联苯的水平在单养中明显高于混养(p <0.05),p,p'DDE和PCBs的水平在单养和混养之间均无显着差异。最后,在单缸养殖(p <0.05)和网箱混养(p <0.05)的鱼中,六氯代苯的含量明显更高。肝脏水平上多氯联苯同源物的低TEQ值表明鱼类健康无忧

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