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Analysis of endocrine disruption in Southern California coastal fish using an aquatic multispecies microarray.

机译:使用水生多物种微阵列分析南加州沿海鱼类的内分泌干扰。

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摘要

BACKGROUND: Endocrine disruptors include plasticizers, pesticides, detergents, and pharmaceuticals. Turbot and other flatfish are used to characterize the presence of chemicals in the marine environment. Unfortunately, there are relatively few genes of turbot and other flatfish in GenBank, which limits the use of molecular tools such as microarrays and quantitative reverse-transcriptase polymerase chain reaction (qRT-PCR) to study disruption of endocrine responses in sentinel fish captured by regulatory agencies. OBJECTIVES: We fabricated a multigene cross-species microarray as a diagnostic tool to screen the effects of environmental chemicals in fish, for which there is minimal genomic information. The array included genes that are involved in the actions of adrenal and sex steroids, thyroid hormone, and xenobiotic responses. This microarray will provide a sensitive tool for screening for the presence of chemicals with adverse effects on endocrine responses in coastal fish species. METHODS: We used a custom multispecies microarray to study gene expression in wild hornyhead turbot (Pleuronichthys verticalis) collected from polluted and clean coastal waters and in laboratory male zebrafish (Danio rerio) after exposure to estradiol and 4-nonylphenol. We measured gene-specific expression in turbot liver by qRT-PCR and correlated it to microarray data. RESULTS: Microarray and qRT-PCR analyses of livers from turbot collected from polluted areas revealed altered gene expression profiles compared with those from nonaffected areas. CONCLUSIONS: The agreement between the array data and qRT-PCR analyses validates this multispecies microarray. The microarray measurement of gene expression in zebrafish, which are phylogenetically distant from turbot, indicates that this multispecies microarray will be useful for measuring endocrine responses in other fish.
机译:背景:内分泌干扰物包括增塑剂,农药,清洁剂和药物。菱t和其他比目鱼用于表征海洋环境中化学物质的存在。不幸的是,GenBank中比目鱼和其他比目鱼的基因相对较少,这限制了使用分子工具(如微阵列和定量逆转录酶聚合酶链反应(qRT-PCR))来研究由监管部门捕获的前哨鱼内分泌反应的破坏机构。目的:我们制造了一种多基因跨物种微阵列作为诊断工具,以筛查鱼类中环境化学物质的影响,而其基因组信息最少。该阵列包括与肾上腺和性类固醇,甲状腺激素和异种生物反应有关的基因。该微阵列将为筛选对沿海鱼类物种的内分泌反应有不利影响的化学物质的存在提供灵敏的工具。方法:我们使用定制的多物种微阵列研究了暴露于雌二醇和4-壬基酚后从污染和清洁的沿海水域采集的野生角头turbo(Pleuronichthys verticalis)和实验室雄性斑马鱼(Danio rerio)中的基因表达。我们通过qRT-PCR测量了大菱liver肝脏中的基因特异性表达,并将其与微阵列数据相关联。结果:从污染地区收集的菱turbo肝脏的微阵列和qRT-PCR分析显示与未受影响地区相比,基因表达谱发生了改变。结论:阵列数据与qRT-PCR分析之间的一致性验证了这种多物种微阵列。对斑马鱼中的基因表达进行基因表达的微阵列测量表明,该物种与大菱turbo的亲缘关系较远,这表明该多物种微阵列可用于测量其他鱼类的内分泌反应。

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