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Gene Expression Profiles in Fathead Minnow Exposed to 2,4-DNT: Correlation with Toxicity in Mammals

机译:暴露于2,4-DNT的黑头head鱼的基因表达谱:与哺乳动物毒性相关

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摘要

Toxicogenomics, the genome-wide analysis of gene expression to study the effect of toxicants, has great potential for use in environmental toxicology. Applied to standard test organisms, it has possible applications in aquatic toxicology as a sensitive monitoring tool to detect the presence of contaminants while providing information on the mechanisms of action of these pollutants. We describe the use of a complementary DNA (cDNA) microarray of the fathead minnow (Pimephales promelas) a standard sentinel organism in aquatic toxicology, to better understand the mechanisms of toxicity of 2,4-dinitrotoluene (2,4-DNT) which is released in the environment through military and industrial use. We have constructed a fathead minnow microarray containing 5000 randomly picked anonymous cDNAs from a whole fish cDNA library. Expression profiles were analyzed in fish exposed to 2,4-DNT for 10 days at three concentrations (11, 22, and 44μM, respectively) below the measured median lethal concentration (58μM). Sequence analysis of cDNAs corresponding to differentially expressed genes affected by exposure revealed that lipid metabolism and oxygen transport genes were prominently affected in a dose-specific manner. We measured liver lipids and demonstrate that lipid metabolism is indeed perturbed following exposure. These observations correlate well with available toxicological data on 2,4-DNT. We present possible modes of action of 2,4-DNT toxicity and suggest that fathead minnow cDNA microarrays can be useful to identify mechanisms of toxicity in fish and as a predictive tool for toxicity in mammals.
机译:毒理基因组学是对基因表达进行全基因组分析,以研究毒物的作用,在环境毒理学中具有巨大的潜力。应用于标准测试生物,它可以作为一种灵敏的监测工具在水生毒理学中应用,以检测污染物的存在,同时提供有关这些污染物的作用机理的信息。我们描述了在水生毒理学中使用标准前哨生物的黑头min鱼(Pimephales promelas)的互补DNA(cDNA)微阵列,以更好地了解2,4-二硝基甲苯(2,4-DNT)的毒性机理通过军事和工业用途释放到环境中。我们构建了一个黑头min鱼微阵列,其中包含来自整个鱼类cDNA文库的5000个随机选择的匿名cDNA。分析暴露于2,4-DNT的鱼在低于测定的致死中值浓度(58μM)的三个浓度下(分别为11、22和44μM)的表达情况。与受暴露影响的差异表达基因相对应的cDNA序列分析表明,脂质代谢和氧转运基因以剂量特异性方式受到显着影响。我们测量了肝脏脂质,并证明暴露后脂质代谢确实受到干扰。这些观察结果与有关2,4-DNT的现有毒理学数据非常相关。我们介绍了2,4-DNT毒性的可能的作用方式,并建议黑头min鱼cDNA微阵列可用于识别鱼类中的毒性机制,并作为哺乳动物中毒性的预测工具。

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