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Proteomics and metabolomics: The molecular make-up of toxic aromatic pollutant bioremediation

机译:蛋白质组学和代谢组学:有毒芳香族污染物生物修复的分子组成

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摘要

Microbial-mediated attenuation of toxic aromatic pollutants offers great potential for the restoration of contaminated environments in an ecologically acceptable manner. However, incomplete biological information regarding the regulation of growth and metabolism in many microbial communities restricts progress in the site-specific mineralization process. In the postgenomic era, recent advances in MS have allowed enormous progress in proteomics and elucidated many complex biological interactions. These research forefronts are now expanding toward the analysis of low-molecular-weight primary and secondary metabolites analysis, i.e., metabolomics. The advent of 2-DE in conjunction with MS offers a promising approach to address the molecular mechanisms of bioremediation. The two fields of proteomics and metabolomics have thus far worked separately to identify proteins and primary and secondary metabolites during bioremediation. A simultaneous study combining functional proteomics and metabolomics, i.e., proteometabolomics would create a system-wide approach to studying site-specific microorganisms during active mineralization processes. This article deals with advances in environmental proteomics and metabolomics and advocates the simultaneous study of both technologies to implement cell-free bioremediation.
机译:微生物介导的有毒芳香族污染物的衰减为以生态学上可接受的方式恢复受污染的环境提供了巨大的潜力。但是,有关许多微生物群落中生长和代谢调节的不完整生物学信息限制了特定地点矿化过程的进展。在后基因组时代,MS的最新进展使蛋白质组学取得了巨大进步,并阐明了许多复杂的生物学相互作用。这些研究前沿现在正在向低分子量一级和二级代谢产物分析即代谢组学的分析扩展。 2-DE与MS结合的出现为解决生物修复的分子机理提供了一种有前途的方法。迄今为止,蛋白质组学和代谢组学这两个领域已经分开工作,以在生物修复过程中鉴定蛋白质以及主要和次要代谢产物。结合功能蛋白质组学和代谢组学(即蛋白质组代谢组学)的一项同步研究将创建一种全系统的方法来研究活跃矿化过程中的特定地点微生物。本文介绍了环境蛋白质组学和代谢组学的进展,并主张同时研究两种技术以实现无细胞生物修复。

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