首页> 美国卫生研究院文献>Briefings in Functional Genomics >Functional genomics to assess biological responses to marine pollution at physiological and evolutionary timescales: toward a vision of predictive ecotoxicology
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Functional genomics to assess biological responses to marine pollution at physiological and evolutionary timescales: toward a vision of predictive ecotoxicology

机译:功能基因组学用于在生理和进化时间尺度上评估对海洋污染的生物响应:朝着预测性生态毒理学的方向发展

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摘要

Marine pollution is ubiquitous, and is one of the key factors influencing contemporary marine biodiversity worldwide. To protect marine biodiversity, how do we surveil, document and predict the short- and long-term impacts of pollutants on at-risk species? Modern genomics tools offer high-throughput, information-rich and increasingly cost-effective approaches for characterizing biological responses to environmental stress, and are important tools within an increasing sophisticated kit for surveiling and assessing impacts of pollutants on marine species. Through the lens of recent research in marine killifish, we illustrate how genomics tools may be useful for screening chemicals and pollutants for biological activity and to reveal specific mechanisms of action. The high dimensionality of transcriptomic responses enables their usage as highly specific fingerprints of exposure, and these fingerprints can be used to diagnose environmental problems. We also emphasize that molecular pathways recruited to respond at physiological timescales are the same pathways that may be targets for natural selection during chronic exposure to pollutants. Gene complement and sequence variation in those pathways can be related to variation in sensitivity to environmental pollutants within and among species. Furthermore, allelic variation associated with evolved tolerance in those pathways could be tracked to estimate the pace of environmental health decline and recovery. We finish by integrating these paradigms into a vision of how genomics approaches could anchor a modernized framework for advancing the predictive capacity of environmental and ecotoxicological science.
机译:海洋污染无处不在,是影响全球当代海洋生物多样性的关键因素之一。为了保护海洋生物多样性,我们如何监测,记录和预测污染物对高危物种的短期和长期影响?现代基因组学工具提供了高通量,信息量丰富且成本效益更高的方法来表征对环境压力的生物学响应,并且在日益复杂的工具包中成为重要工具,用于监测和评估污染物对海洋物种的影响。通过最近对海洋鱼类的研究,我们说明了基因组学工具如何用于筛选化学和污染物的生物活性并揭示特定的作用机理。转录反应的高度维度使得它们可以用作暴露的高度特定的指纹,并且这些指纹可以用于诊断环境问题。我们还强调,募集来在生理时标上响应的分子途径与可能是长期暴露于污染物期间自然选择的目标的途径相同。这些途径中的基因互补和序列变异可能与物种内部和物种之间对环境污染物敏感性的变化有关。此外,可以追踪与那些途径中的耐受性发展相关的等位基因变异,以估计环境健康下降和恢复的速度。最后,我们将这些范式整合到有关基因组学方法如何锚定现代化框架以提高环境和生态毒理学的预测能力的愿景中。

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