European Commission-Joint Research Centre, Institute for Environment and Sustainability, Ispra (VA), Italy.
Aquat Toxicol. 2011 Jan 17;101(1):244-53. doi: 10.1016/j.aquatox.2010.10.004. Epub 2010 Oct 19.
Marine diatoms have a key role in the global carbon fixation and therefore in the ecosystem. We used Thalassiosira pseudonana as a model organism to assess the effects of exposure to environmental pollutants at the gene expression level. Diatoms were exposed to polycyclic aromatic hydrocarbons mixture (PAH) from surface sediments collected at a highly PAH contaminated area of the Mediterranean Sea (Genoa, Italy), due to intense industrial and harbor activities. The gene expression data for exposure to the sediment-derived PAH mixture was compared with gene expression data for in vitro exposure to specific polycyclic aromatic hydrocarbons. The data shows that genes involved in stress response, silica uptake, and metabolism were regulated both upon exposure to the sediment-derived PAH mixture and to the single component. Complementary monitoring of silica in the diatom cultures provide further evidence of a reduced cellular uptake of silica as an end-point for benzo[a]pyrene exposure that could be linked with the reduced gene and protein expression of the silicon transporter protein. However some genes showed differences in regulation indicating that mixtures of structurally related chemical compounds can elicit a slightly different gene expression response compared to that of a single component. The paper provides indications on the specific pathways affected by PAH exposure and shows that selected genes (silicon transporter, and silaffin 3) involved in silica uptake and metabolism could be suitable molecular biomarkers of exposure to PAHs.
海洋硅藻在全球碳固定中起着关键作用,因此在生态系统中也起着关键作用。我们使用拟菱形藻作为模式生物,在基因表达水平上评估暴露于环境污染物的影响。由于强烈的工业和港口活动,硅藻暴露于从地中海高度多环芳烃污染地区(意大利热那亚)采集的表层沉积物中的多环芳烃混合物(PAH)中。将暴露于沉积物衍生的 PAH 混合物的基因表达数据与体外暴露于特定多环芳烃的基因表达数据进行比较。数据表明,参与应激反应、硅吸收和代谢的基因在暴露于沉积物衍生的 PAH 混合物和单一成分时都受到了调节。对硅藻培养物中硅的补充监测提供了进一步的证据,证明作为苯并[a]芘暴露终点的硅细胞摄取减少,这可能与硅转运蛋白的基因和蛋白表达减少有关。然而,一些基因的调控存在差异,表明结构相关的化学化合物混合物可能会引起与单一成分相比略有不同的基因表达反应。本文提供了有关 PAH 暴露影响的特定途径的信息,并表明参与硅吸收和代谢的选定基因(硅转运蛋白和丝氨酸 3)可能是 PAHs 暴露的合适分子生物标志物。