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首页> 外文期刊>Aquaculture Environment Interactions >Feeding ratio and frequency affects cadmium bioaccumulation in black sea bream Acanthopagrus schlegeli
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Feeding ratio and frequency affects cadmium bioaccumulation in black sea bream Acanthopagrus schlegeli

机译:摄食率和饲喂频率影响黑鲷Acanthopagrus schlegeli中镉的生物积累

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Feeding ratio and frequency have substantial effects on food digestion and assimilation in fish, yet few attempts have been made to determine their influences on the bioaccumulation of trace metals. In this study, juvenile Acanthopagrus schlegeli were exposed to either water-borne or dietary cadmium (Cd) at different feeding ratios (0, 2, or 4% body weight d(-1) [BW d(-1)] under waterborne Cd exposure and 1, 2.5, or 4% BW d(-1) under dietary Cd exposure) or feeding frequencies (1, 2 or 8 times d(-1)) for 5 wk. Under waterborne Cd exposure, the fish fed 0% BW d(-1) or 8 times d(-1) showed significantly lower growth rates and those fed 0% BW d(-1) or 1 time d(-1) exhibited higher Cd body burdens and Cd uptake rates compared to the other groups. The gut showed a significantly higher waterborne Cd uptake rate than the gills when fish were fasted or fed only 1 time d(-1). These results suggest that starvation and low feeding frequency facilitate waterborne Cd uptake. Under dietary Cd exposure, the fish fed 4% BW d(-1) or 2 times d(-1) grew faster. Cd body burden and Cd assimilation were higher in fish fed 2.5% BW d(-1) or 2 times d(-1). Dietary Cd retention was positively correlated with feed efficiency, suggesting the utilization of Cd probably coincides with the essential nutrients in fish. Overall, this study demonstrates that different feeding strategies significantly influence waterborne and dietary Cd bioaccumulation in marine fish. Therefore, feeding conditions have to be considered carefully for managing trace metal contamination in marine fish farming.
机译:饲喂比和饲喂频率对鱼类的食物消化和同化有很大影响,但几乎没有尝试确定它们对痕量金属生物积累的影响。在这项研究中,幼年的Acanthopagrus schlegeli以不同的摄食比例(0、2或4%体重d(-1)[BW d(-1)]在水性Cd下暴露于水或食物中的镉(Cd)暴露和饮食中Cd暴露下1、2.5或4%BW d(-1))或摄食频率(d,-1的1、2或8倍,连续5周)。在水传播的镉暴露下,饲喂0%BW d(-1)或8倍d(-1)的鱼生长速度明显降低,饲喂0%BW d(-1)或1倍d(-1)的鱼生长速度更快。与其他人群相比,镉的身体负担和镉的吸收率。当鱼被禁食或仅喂食1 d(-1)时,肠道显示出的水中Cd摄取率比the显着更高。这些结果表明饥饿和低进食频率促进了水中镉的吸收。在饮食中镉暴露下,饲喂4%BW d(-1)或2倍d(-1)的鱼生长更快。饲喂2.5%BW d(-1)或d(-1)2倍的鱼类中的Cd体负担和Cd同化率更高。膳食中镉的保留与饲料效率呈正相关,表明镉的利用可能与鱼类必需的营养素相吻合。总体而言,这项研究表明,不同的喂养策略会显着影响海水鱼类中的水和膳食Cd生物积累。因此,在管理海水鱼类养殖中的微量金属污染时,必须仔细考虑饲养条件。

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