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首页> 外文期刊>Journal of proteomics >Omics technologies and their applications to evaluate metal toxicity in mice M. spretus as a bioindicator
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Omics technologies and their applications to evaluate metal toxicity in mice M. spretus as a bioindicator

机译:Omics技术及其在评估作为生物指示物的小鼠链霉菌中的金属毒性中的应用

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摘要

Metals are important components of living organisms since many biological functions critically depend on their interaction with some metal in the cell. However, human activities have increased toxic metal levels in the terrestrial and aquatic ecosystems affecting living organisms. The impact of metals on cellular metabolism and global homeostasis has been traditionally assessed in free-living organisms by using conventional biomarkers; however, to obtain a global vision of metal toxicity mechanisms and the responses that metals elicit in the organisms, new analytical methodologies are needed. We review the use of omics approaches to assess the response of living organisms under metal stress illustrating the possibilities of different methodologies on the basis of our previous results. Most of this research has been based on free-living mice Mus spretus, a conventional bioindicator used to monitor metal pollution in Dofiana National Park (DNP) (SW Spain), which is an important European biological reserve for migrating birds affected by agricultural, mining and industrial activities. The benefits of using omic techniques such as heterologous microarrays, proteomics methodologies (2-DE, iTRAQ?), metallomics, ionomics or metabolomics has been remarked; however, the complexity of these areas requires the integration of omics to achieve a comprehensive assessment of their environmental status. This article is part of a Special Issue entitled: Environmental and structural proteomics.
机译:金属是生命有机体的重要组成部分,因为许多生物学功能严重取决于它们与细胞中某些金属的相互作用。但是,人类活动增加了影响生命有机体的陆地和水生生态系统中的有毒金属水平。传统上已经通过使用常规生物标记物在自由生物中评估了金属对细胞代谢和全球动态平衡的影响。然而,为了获得金属毒性机理和金属在生物体内引起的反应的全球视野,需要新的分析方法。我们回顾了使用组学方法评估金属胁迫下活生物体的反应,并基于我们以前的结果说明了不同方法的可能性。这项研究大部分是基于自由活动小鼠Mus spretus进行的,Mus spretus是一种常规的生物指示剂,用于监测Dofiana国家公园(DNP)(西班牙西南部)的金属污染,Dofiana国家公园是欧洲重要的生物保护区,用于迁徙受农业,采矿业影响的鸟类和工业活动。使用诸如异源微阵列,蛋白质组学方法学(2-DE,iTRAQ?),金属学,ionomics或代谢组学之类的组学技术的好处已得到明显体现;然而,这些领域的复杂性要求整合组学技术以对其环境状况进行全面评估。本文是《问题与环境蛋白质组学》特刊的一部分。

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