Université Lille Nord de France, France.
Chemosphere. 2012 May;87(7):692-702. doi: 10.1016/j.chemosphere.2011.12.059. Epub 2012 Jan 10.
In the present study, juvenile sea bass were exposed for 48 and 96 h to an Arabian light crude oil and their responses were assessed at the molecular and physiological levels. The aim of the study was therefore to assess (i) the short term effects of crude oil exposure by the measurement of several molecular biomarkers, (ii) the consequences of this short term exposure on fish health by using growth and condition indices measured after a decontamination period of 28 and 26 d in seawater. Hydrocarbon petroleum concentrations was monitored during the 96 h experiments and an increase of PAH concentrations were found in fish following both exposure times. An 7-ethoxyresorufin-O-deethylase (EROD) induction was observed after 48 h of exposure, while a significant decrease in the sea bass specific growth rate in length and for the RNA:DNA ratio was observed 28 d after that exposure ceased. The EROD induction doubled after the 96 h exposure, and a significant increase in GST activities was observed. A significant decrease in the specific growth rates, the otolith recent growth, the RNA:DNA ratio and the Fulton's K condition index were then observed in sea bass 26 d after the 96 h exposure to mechanically dispersed crude oil compared to the control. The present study shows that growth and condition indices can prove useful in assessing fish health status following an oil spill. Their complementary analysis with sensitive molecular biomarkers as EROD could improve the determination of oil spill impact on fish populations.
在本研究中,幼年海鲈分别暴露于阿拉伯轻质原油中 48 小时和 96 小时,并在分子和生理水平上评估其反应。因此,本研究旨在评估:(i)通过测量几种分子生物标志物来评估短期原油暴露的影响;(ii)在经过 28 天和 26 天的海水脱污染期后,用生长和条件指数来评估这种短期暴露对鱼类健康的影响。在 96 小时的实验过程中监测了碳氢化合物石油浓度,发现暴露后鱼体内的多环芳烃浓度增加。暴露 48 小时后观察到 7-乙氧基resorufin-O-去乙基酶(EROD)诱导,而暴露停止 28 天后,海鲈特定生长率(长度)和 RNA:DNA 比值显著下降。96 小时暴露后 EROD 诱导增加一倍,GST 活性显著增加。与对照组相比,96 小时暴露于机械分散原油后 26 天,海鲈的特定生长率、耳石最近生长、RNA:DNA 比值和富尔顿的 K 条件指数显著下降。本研究表明,生长和条件指数可用于评估溢油后鱼类的健康状况。与 EROD 等敏感分子生物标志物进行互补分析,可以提高对鱼类种群受溢油影响的确定。