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近海石油生产中与环境相关剂量的污染物对大西洋鳕鱼( Gadus morhua)的影响。

Effects of environmental relevant doses of pollutants from offshore oil production on Atlantic cod (Gadus morhua).

作者信息

Lie Kai K, Meier Sonnich, Olsvik Pål A

机构信息

National Institute of Nutrition and Seafood Research, Nordnesboder 2, N-5005 Bergen, Norway.

出版信息

Comp Biochem Physiol C Toxicol Pharmacol. 2009 Aug;150(2):141-9. doi: 10.1016/j.cbpc.2009.04.004. Epub 2009 Apr 18.

Abstract

The release of produced water (PW), a by-product of offshore oil production, has increased in Norwegian waters in recent years. Alkylphenols (AP), a major component of PW, have been shown to have endocrine disrupting effects on several fish species. In the present study, four groups of female Atlantic cod (Gadus morhua) were orally exposed for 20 weeks to two different concentrations of a mixture of C4-C7 APs, PW or 17beta-estradiol. The transcriptional responses in the liver of Atlantic female cod were studied using a custom-made cDNA microarray. The largest transcriptional effects were seen in cod exposed to the lowest dose of APs. Several biological processes such as glycolysis, apoptosis and the general stress response were affected by exposure to APs. In addition, genes coding for the detoxification enzymes CYP1A and sulfotransferase 2 were up-regulated in the low exposure group. Significant reduction in gonadosomatic index (GSI) and the concentration of plasma vitellogenin were seen in both AP and 17beta-estradiol exposed cod. Exposure to PW had little effect on GSI and the regulation of stress responsive genes. The findings indicate that chronic exposure to low levels of APs may cause a stress response and delayed maturation in female cod.

摘要

采出水(PW)是海上石油生产的一种副产品,近年来挪威海域的采出水排放量有所增加。烷基酚(AP)是采出水的主要成分,已被证明对几种鱼类具有内分泌干扰作用。在本研究中,将四组雌性大西洋鳕鱼(Gadus morhua)口服暴露于两种不同浓度的C4 - C7烷基酚混合物、采出水或17β - 雌二醇中,持续20周。使用定制的cDNA微阵列研究了大西洋雌性鳕鱼肝脏中的转录反应。在暴露于最低剂量烷基酚的鳕鱼中观察到最大的转录效应。暴露于烷基酚会影响糖酵解、细胞凋亡和一般应激反应等几个生物学过程。此外,低暴露组中编码解毒酶CYP1A和磺基转移酶2的基因上调。在暴露于烷基酚和17β - 雌二醇的鳕鱼中,性腺体指数(GSI)和血浆卵黄蛋白原浓度均显著降低。暴露于采出水对GSI和应激反应基因的调节影响很小。研究结果表明,长期低水平暴露于烷基酚可能会导致雌性鳕鱼产生应激反应并延迟成熟。

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