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古湖沼学和地质档案的“组学”工作流程:综述

"-Omics" workflow for paleolimnological and geological archives: A review.

作者信息

Bell Madison, Blais Jules M

机构信息

Laboratory for the Analysis of Natural and Synthetic Environmental Toxicants, Department of Biology, University of Ottawa, Ottawa, ON K1N 6N5, Canada.

Laboratory for the Analysis of Natural and Synthetic Environmental Toxicants, Department of Biology, University of Ottawa, Ottawa, ON K1N 6N5, Canada.

出版信息

Sci Total Environ. 2019 Jul 1;672:438-455. doi: 10.1016/j.scitotenv.2019.03.477. Epub 2019 Apr 2.

Abstract

"-Omics" is a powerful screening method with applications in molecular biology, toxicology, wildlife biology, natural product discovery, and many other fields. Genomics, proteomics, metabolomics, and lipidomics are common examples included under the "-omics" umbrella. This screening method uses combinations of untargeted, semi-targeted, and targeted analyses paired with data mining to facilitate researchers' understanding of the genome, proteins, and small organic molecules in biological systems. Recently, however, the use of "-omics" has expanded into the fields of geology, specifically petrology, and paleolimnology. Specifically, untargeted analyses stand to transform these fields as petroleomics, and sediment-"omics" become more prevalent. "-Omics" facilitates the visualization of small molecule profiles from environmental matrices (i.e. oil and sediment). Small molecule profiles can provide improved understanding of small molecules distributions throughout the environment, and how those compositions can change depending on conditions (i.e. climate change, weathering, etc.). "-Omics" also facilities discovery of next-generation biomarkers that can be used for oil source identification and as proxies for reconstructing past environmental changes. Untargeted analyses paired with data mining and multivariate statistical analyses represents a powerful suite of tools for hypothesis generation, and new method development for environmental reconstructions. Here we present an introduction to "-omics" methodology, technical terms, and examples of applications to paleolimnology and petrology. The purpose of this review is to highlight the important considerations at each step in the "-omics" workflow to produce high quality and statistically powerful data for petrological and paleolimnological applications.

摘要

“组学”是一种强大的筛选方法,应用于分子生物学、毒理学、野生动物生物学、天然产物发现及许多其他领域。基因组学、蛋白质组学、代谢组学和脂质组学是“组学”范畴下常见的例子。这种筛选方法采用非靶向、半靶向和靶向分析相结合的方式,并与数据挖掘配对,以促进研究人员对生物系统中的基因组、蛋白质和小分子的理解。然而,最近“组学”的应用已扩展到地质学领域,特别是岩石学和古湖沼学。具体而言,随着石油组学和沉积物“组学”变得更加普遍,非靶向分析有望改变这些领域。“组学”有助于直观呈现来自环境基质(即石油和沉积物)的小分子谱。小分子谱能够增进对环境中小分子分布的理解,以及这些成分如何随条件(如气候变化、风化等)而变化。“组学”还有助于发现可用于油源识别及作为重建过去环境变化代理指标的下一代生物标志物。非靶向分析与数据挖掘及多元统计分析相结合,构成了一套用于生成假设和开发环境重建新方法的强大工具。在此,我们介绍“组学”方法、技术术语以及在古湖沼学和岩石学中的应用实例。本综述的目的是强调“组学”工作流程中每个步骤的重要注意事项,以便为岩石学和古湖沼学应用生成高质量且具有统计学效力的数据。

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