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Integrating omic technologies into aquatic ecological risk assessment and environmental monitoring: hurdles, achievements, and future outlook.

机译:将omic技术整合到水生生态风险评估和环境监测中:障碍,成就和未来展望。

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BACKGROUND: In this commentary we present the findings from an international consortium on fish toxicogenomics sponsored by the U.K. Natural Environment Research Council (Fish Toxicogenomics-Moving into Regulation and Monitoring, held 21-23 April 2008 at the Pacific Environmental Science Centre, Vancouver, BC, Canada). OBJECTIVES: The consortium from government agencies, academia, and industry addressed three topics: progress in ecotoxicogenomics, regulatory perspectives on roadblocks for practical implementation of toxicogenomics into risk assessment, and dealing with variability in data sets. DISCUSSION: Participants noted that examples of successful application of omic technologies have been identified, but critical studies are needed to relate molecular changes to ecological adverse outcome. Participants made recommendations for the management of technical and biological variation. They also stressed the need for enhanced interdisciplinary training and communication as well as considerable investment into the generation and curation of appropriate reference omic data. CONCLUSIONS: The participants concluded that, although there are hurdles to pass on the road to regulatory acceptance, omics technologies are already useful for elucidating modes of action of toxicants and can contribute to the risk assessment process as part of a weight-of-evidence approach.
机译:背景:在这篇评论中,我们介绍了由英国自然环境研究委员会(鱼毒基因组学-深入研究和监测,于2008年4月21-23日在不列颠哥伦比亚省温哥华市)主办的鱼毒理基因组国际财团的发现。 ,加拿大)。目标:来自政府机构,学术界和工业界的联盟讨论了三个主题:生态毒理基因组学的进展,关于将毒理基因组学实际应用于风险评估的障碍的监管观点以及处理数据集的可变性。讨论:与会者指出,已经确定了成功应用Omic技术的实例,但是需要进行严格的研究才能将分子变化与生态不良后果联系起来。与会者提出了有关技术和生物变异管理的建议。他们还强调需要加强跨学科的培训和交流,并需要大量投资来生成和管理适当的参考眼科数据。结论:参与者得出结论,尽管在接受监管的道路上有障碍,但是组学技术已经对阐明有毒物质的作用方式非常有用,并且可以作为证据权重方法的一部分对风险评估过程做出贡献。

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