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海洋升温与阻燃剂暴露下鱼类的能量预算

Fish energy budget under ocean warming and flame retardant exposure.

机构信息

Division of Aquaculture and Upgrading (DivAV), Portuguese Institute for the Sea and Atmosphere (IPMA, I.P.), Rua Alfredo Magalhães Ramalho 6, 1495-006 Lisboa, Portugal; MARE - Marine and Environmental Sciences Centre, Guia Marine Laboratory, Faculty of Sciences, University of Lisbon (FCUL), Av. Nossa Senhora do Cabo, 939, 2750-374 Cascais, Portugal; Interdisciplinary Centre of Marine and Environmental Research (CIIMAR), University of Porto, Terminal de Cruzeiros do Porto de Leixões, Av. General Norton de Matos, S/N, 4450-208 Matosinhos, Portugal.

MARE - Marine and Environmental Sciences Centre, Guia Marine Laboratory, Faculty of Sciences, University of Lisbon (FCUL), Av. Nossa Senhora do Cabo, 939, 2750-374 Cascais, Portugal.

出版信息

Environ Res. 2018 Jul;164:186-196. doi: 10.1016/j.envres.2018.02.023. Epub 2018 Feb 28.

Abstract

Climate change and chemical contamination are global environmental threats of growing concern for the scientific community and regulatory authorities. Yet, the impacts and interactions of both stressors (particularly ocean warming and emerging chemical contaminants) on physiological responses of marine organisms remain unclear and still require further understanding. Within this context, the main goal of this study was to assess, for the first time, the effects of warming (+ 5 °C) and accumulation of a polybrominated diphenyl ether congener (BDE-209, brominated flame retardant) through dietary exposure on energy budget of the juvenile white seabream (Diplodus sargus). Specifically, growth (G), routine metabolism (R), excretion (faecal, F and nitrogenous losses, U) and food consumption (C) were calculated to obtain the energy budget. The results demonstrated that the energy proportion spent for G dominated the mode of the energy allocation of juvenile white seabream (56.0-67.8%), especially under the combined effect of warming plus BDE-209 exposure. Under all treatments, the energy channelled for R varied around 26% and a much smaller percentage was channelled for excretion (F: 4.3-16.0% and U: 2.3-3.3%). An opposite trend to G was observed to F, where the highest percentage (16.0 ± 0.9%) was found under control temperature and BDE-209 exposure via diet. In general, the parameters were significantly affected by increased temperature and flame retardant exposure, where higher levels occurred for: i) wet weight, relative growth rate, protein and ash contents under warming conditions, ii) only for O:N ratio under BDE-209 exposure via diet, and iii) for feed efficiency, ammonia excretion rate, routine metabolic rate and assimilation efficiency under the combination of both stressors. On the other hand, decreased viscerosomatic index was observed under warming and lower fat content was observed under the combined effect of both stressors. Overall, under future warming and chemical contamination conditions, fish energy budget was greatly affected, which may dictate negative cascading impacts at population and community levels. Further research combining other climate change stressors (e.g. acidification and hypoxia) and emerging chemical contaminants are needed to better understand and forecast such biological effects in a changing ocean.

摘要

气候变化和化学污染是科学界和监管机构日益关注的全球性环境威胁。然而,这两种压力源(特别是海洋变暖与新兴化学污染物)对海洋生物生理反应的影响和相互作用仍不清楚,仍需要进一步了解。在此背景下,本研究的主要目标是首次评估升温(+5°C)和通过饮食暴露积累多溴二苯醚同系物(BDE-209,溴化阻燃剂)对幼年白鲷(Diplodus sargus)能量预算的影响。具体而言,通过计算生长(G)、基础代谢(R)、排泄(粪便、F 和氮损失、U)和食物消耗(C)来获得能量预算。结果表明,用于 G 的能量比例主导了幼年白鲷能量分配的模式(56.0-67.8%),尤其是在升温与 BDE-209 暴露的联合作用下。在所有处理中,用于 R 的能量变化在 26%左右,用于排泄的能量比例较小(F:4.3-16.0%和 U:2.3-3.3%)。与 G 相反的趋势是 F,在对照温度和通过饮食暴露于 BDE-209 的情况下,F 的最高百分比(16.0±0.9%)。一般来说,参数受到温度升高和阻燃剂暴露的显著影响,其中在升温条件下湿重、相对生长率、蛋白质和灰分含量较高,在通过饮食暴露于 BDE-209 时仅 O:N 比较高,在两种压力源的组合下,饲料效率、氨排泄率、基础代谢率和同化效率较高。另一方面,在升温条件下观察到脏体比降低,在两种压力源的组合下观察到脂肪含量降低。总的来说,在未来的变暖与化学污染条件下,鱼类的能量预算受到了很大的影响,这可能会对种群和群落水平产生负面影响。需要进一步研究结合其他气候变化压力源(如酸化和缺氧)和新兴化学污染物,以更好地了解和预测海洋变化中的这种生物效应。

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