CIIMAR/CIMAR - Centre of Marine and Environmental Research, University of Porto, Rua dos Bragas 289, 4050-123 Porto, Portugal.
J Proteomics. 2012 Jul 19;75(14):4346-59. doi: 10.1016/j.jprot.2012.04.027. Epub 2012 May 2.
Biomonitoring of aquatic environment and assessment of ecosystem health play essential roles in the development of effective strategies for the protection of the environment, human health and sustainable development. Biomarkers of pollution exposure have been extensively utilized in the last few decades to monitor the health of organisms and hence assess environmental status. However, the use of single biomarkers against biotic or abiotic stressors may be limited by the lack of sensitivity and specificity. Therefore, more recently, the search for novel biomarkers has been focused on the application of OMICS methodologies. Environmental proteomics focuses on the analysis of an organism's proteome and the detection of changes in the level of individual proteins/peptides in response to environmental stressors. Proteomics can provide a more robust approach for the assessment of environmental stress and therefore exposure to pollutants. This review aims to summarize the proteomic research in bivalves, a group of sessile and filter feeding organisms that play an important function as "sentinels" of the aquatic environment. A description of the main proteomic methodologies is provided. The current knowledge in bivalves' toxicology, achieved with proteomics, is reported describing the main biochemical markers identified. A brief discussion regarding future challenges in this area of research emphasizing the development of more descriptive gene/protein databases that could support the OMICs approaches is presented.
生物监测水生环境和评估生态系统健康在制定保护环境、人类健康和可持续发展的有效策略方面发挥着重要作用。在过去几十年中,污染物暴露的生物标志物被广泛用于监测生物的健康状况,从而评估环境状况。然而,由于缺乏敏感性和特异性,单一生物标志物针对生物或非生物胁迫的使用可能受到限制。因此,最近,人们更多地关注于应用组学方法来寻找新的生物标志物。环境蛋白质组学侧重于分析生物体的蛋白质组,并检测个体蛋白质/肽水平在应对环境胁迫时的变化。蛋白质组学可以为评估环境应激和因此暴露于污染物提供更稳健的方法。本综述旨在总结双壳类动物的蛋白质组学研究,双壳类动物是一类固着和滤食性生物,它们作为水生环境的“哨兵”起着重要作用。提供了主要蛋白质组学方法的描述。报告了利用蛋白质组学在双壳类动物毒理学方面取得的现有知识,描述了所确定的主要生化标志物。简要讨论了该研究领域未来的挑战,强调了开发更具描述性的基因/蛋白质数据库的必要性,这将支持组学方法的应用。