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增温对比塞大泻湖贻贝(Mytilus galloprovincialis)生物标志物反应和有害物积累的影响。

Effects of increasing temperatures on biomarker responses and accumulation of hazardous substances in rope mussels (Mytilus galloprovincialis) from Bizerte lagoon.

机构信息

Biochemistry and Environmental Toxicology Research Unit, ISA Sousse University, Chott Mariem, Tunisia,

出版信息

Environ Sci Pollut Res Int. 2014 May;21(9):6108-23. doi: 10.1007/s11356-014-2540-5. Epub 2014 Jan 29.

Abstract

This study examined the influence of increasing temperatures in spring and summer on biochemical biomarkers in Mytilus galloprovincialis mussels sampled from Bizerte lagoon (northern Tunisia). Spatial and seasonal variations in a battery of seven biomarkers were analyzed in relation to environmental parameters (temperature, salinity, and pH), physiological status (condition and gonad indexes), stress on stress (SoS), and chemical contaminant levels (heavy metals, polycyclic aromatic hydrocarbons (PAHs), and PCBs) in digestive glands. Integrated biological response (IBR) was calculated using seven biomarkers (acetylcholinesterase (AChE), benzo[a]pyrene hydroxylase (BPH), multixenobiotic resistance (MXR), glutathione S-transferase (GST), catalase (CAT), malondialdehyde (MDA), and metallothioneins (MT). Seasonal variations in biological response were determined during a critical period between spring and summer at two sites, where chemical contamination varies by a factor of 2 for heavy metals and a factor 2.5 for PAHs. The analysis of a battery of biomarkers was combined with the measurement of physiological parameters at both sites, in order to quantify a maximum range of metabolic regulation with a temperature increase of 11 °C between May and August. According to our results, the MT, MDA, CAT, and AChE biomarkers showed the highest amplitude during the 11 °C rise, while the BPH, GST, and MXR biomarkers showed the lowest amplitude. Metabolic amplitude measured with the IBR at Menzel Abdelrahmen-the most severely contaminated station-revealed the highest metabolic stress in Bizerte lagoon in August, when temperatures were highest 29.1 °C. This high metabolic rate was quantified for each biomarker in the North African lagoon area and confirmed in August, when the highest IBR index values were obtained at the least contaminated site 2 (IBR = 9.6) and the most contaminated site 1 (IBR = 19.6). The combined effects of chemical contamination and increased salinity and temperatures in summer appear to induce a highest metabolic adaptation response and can therefore be used to determine thresholds of effectiveness and facilitate the interpretation of monitoring biomarkers. This approach, applied during substantial temperature increases at two sites with differing chemical contamination, is a first step toward determining an environmental assessment criteria (EAC) threshold in a North African lagoon.

摘要

本研究考察了春季和夏季气温升高对来自突尼斯北部比塞大泻湖的贻贝中生化生物标志物的影响。分析了一系列七种生物标志物与环境参数(温度、盐度和 pH 值)、生理状况(条件和性腺指数)、应激(SoS)以及化学污染物水平(重金属、多环芳烃 (PAHs) 和 PCB)之间的空间和季节变化。使用七种生物标志物(乙酰胆碱酯酶 (AChE)、苯并[a]芘羟化酶 (BPH)、多药耐药 (MXR)、谷胱甘肽 S-转移酶 (GST)、过氧化氢酶 (CAT)、丙二醛 (MDA) 和金属硫蛋白 (MT) 计算综合生物反应 (IBR)。在春季和夏季之间的关键时期,在两个地点确定了生物反应的季节性变化,其中重金属的化学污染变化了 2 倍,PAHs 的化学污染变化了 2.5 倍。在这两个地点,结合生理参数的测量,对一组生物标志物进行了分析,以便在 5 月至 8 月期间温度升高 11°C 的情况下量化最大范围的代谢调节。根据我们的结果,MT、MDA、CAT 和 AChE 生物标志物在 11°C 升高期间表现出最高的幅度,而 BPH、GST 和 MXR 生物标志物表现出最低的幅度。在 Menzel Abdelrahmen(污染最严重的站点)测量的 IBR 表明,在 8 月温度最高为 29.1°C 时,比塞大泻湖的代谢应激最高。在北非泻湖区量化了每个生物标志物的这种高代谢率,并在 8 月得到了证实,当时污染最少的站点 2(IBR=9.6)和污染最严重的站点 1(IBR=19.6)获得了最高的 IBR 指数值。夏季化学污染以及盐度和温度升高的综合影响似乎诱导了最高的代谢适应反应,因此可用于确定有效性的阈值,并有助于解释监测生物标志物。在两个具有不同化学污染的地点,在大幅度升温期间应用这种方法是在北非泻湖中确定环境评估标准 (EAC) 阈值的第一步。

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