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Exploring the effects of seasonality and chemical pollution on the hepatopancreas transcriptome of the Manila clam

机译:探索季节性和化学污染对马尼拉蛤的肝胰腺转录组的影响

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The assessment of marine environmental health is a complex but fundamental task both for ecosystem conservation and food safety related to the human consumption of marine products. Manila clams inhabiting the Venice Lagoon constitute an excellent case study for evaluating the effects of complex mixtures of industrial and urban effluents on aquatic organisms. Clams were collected in different seasons at four locations within the Venice Lagoon. The sampling sites were characterized by a range of pollutant concentrations and included Porto Marghera, a highly polluted industrial area where clam harvesting for human consumption is strictly forbidden. Pooled soft tissues were subjected to mass spectroscopy analysis to measure the concentrations of PCDDs/PCDFs/PCBs-DL, PCBs, PBDEs, HCB and PAHs, and pooled digestive gland samples were used for gene expression profiling. While seasonal variation was found to be responsible for the largest proportion of transcriptional changes, significance analysis of microarrays quantitative correlation analysis identified 162 transcripts that were correlated with at least one class of chemicals measured in the samples from the four different sampling sites. Prediction Analysis of Microarrays (PAM) identified a minimal set of seven genes that correctly assigned samples collected in the restricted polluted area (Porto Marghera), independent of the season in which they were collected. An integrated approach combining transcriptomics and chemical analyses of the Manila clam provided a global picture of how Manila clams respond to complex mixtures of xenobiotics and their interplay with other biotic and abiotic factors. We were also able to identify gene expression signatures for different classes of chemicals and a set of robust biomarkers of exposure to these chemicals.
机译:对海洋环境健康的评估是一项生态系统保护和与人类消费海产品有关的食品安全的复杂但基本的任务。居住在威尼斯泻湖中的马尼拉蛤是评估工业和城市污水的复杂混合物对水生生物影响的出色案例研究。蛤lam是在威尼斯泻湖内的四个地点按不同季节收集的。采样地点的特点是污染物浓度范围较广,其中包括污染严重的工业区波尔图马尔盖拉港(Porto Marghera),严禁捕捞蛤lam供人类食用。对合并的软组织进行质谱分析,以测量PCDDs / PCDF / PCBs-DL,PCBs,PBDEs,HCB和PAHs的浓度,并将合并的消化腺样品用于基因表达谱分析。虽然发现季节性变化是转录变化的最大部分,但微阵列定量相关分析的显着性分析确定了162个转录本,它们与在四个不同采样点的样品中测得的至少一类化学物质相关。微阵列预测分析(PAM)识别出七个基因的最小集合,这些基因正确分配了在受限污染区域(波尔图玛格丽拉)收集的样品,与采集季节无关。结合转录组学和马尼拉蛤的化学分析的综合方法,为马尼拉蛤如何应对异种生物的复杂混合物及其与其他生物和非生物因素的相互作用提供了全球图片。我们还能够识别出不同类别化学物质的基因表达特征以及暴露于这些化学物质的一系列可靠的生物标记。

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