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通过皮肤活检和基因表达方法对来自地中海盆地的条纹海豚(Stenella coeruleoalba)进行生态毒理学诊断。

Ecotoxicological diagnosis of striped dolphin (Stenella coeruleoalba) from the Mediterranean basin by skin biopsy and gene expression approach.

机构信息

Evolutionary Biology Department, University of Siena, Via A. Moro 2, Siena, 53100, Italy.

出版信息

Ecotoxicology. 2011 Nov;20(8):1791-800. doi: 10.1007/s10646-011-0713-2. Epub 2011 Jun 22.

Abstract

Mediterranean cetacean odontocetes are exposed to environmental stress, in particular to persistent organic pollutants, polycyclic aromatic hydrocarbons and trace elements. In the present study, the response of "gene-expression biomarkers" was evaluated in Mediterranean striped dolphin (Stenella coeruleoalba) skin biopsies collected in three sampling areas: Pelagos sanctuary (Ligurian sea), Ionian sea, and Strait of Gibraltar. The mRNA levels of five putative biomarker genes (aryl hydrocarbon receptor, E2F-1 transcription factor, cytochrome P450 1A, estrogen receptor 1, and heat shock protein 70) were measured for the first time by quantitative real-time PCR in cetacean skin biopsies. The different responses of most of the genes reflected contamination levels in the three sampling areas. Pelagos sanctuary dolphins appeared to be the most exposed to toxicological stress, having the highest up-regulation of CYP1A and AHR. Moreover, a cluster analysis distinguished the populations on the basis of the gene expression biomarker used in our study, showing different pattern between Mediterranean sea and Strait of Gibraltar. Our results suggest that this molecular approach applied to non-destructive biopsy material is a powerful diagnostic tool for evaluating ecotoxicological impact on cetacean populations.

摘要

地中海齿鲸类动物暴露于环境压力下,特别是持续性有机污染物、多环芳烃和微量元素。在本研究中,评估了在三个采样区域(Pelagos 保护区(利古里亚海)、爱奥尼亚海和直布罗陀海峡)采集的地中海条纹海豚(Stenella coeruleoalba)皮肤活检中“基因表达生物标志物”的反应。首次通过定量实时 PCR 测量了五种推定生物标志物基因(芳香烃受体、E2F-1 转录因子、细胞色素 P450 1A、雌激素受体 1 和热休克蛋白 70)在鲸目动物皮肤活检中的 mRNA 水平。大多数基因的不同反应反映了三个采样区域的污染水平。Pelagos 保护区的海豚似乎受到毒性应激的影响最大,CYP1A 和 AHR 的上调最高。此外,聚类分析根据我们研究中使用的基因表达生物标志物区分了种群,显示出地中海和直布罗陀海峡之间的不同模式。我们的结果表明,这种应用于非破坏性活检材料的分子方法是评估对鲸目动物种群的生态毒理学影响的有力诊断工具。

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