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Bioinformatic progress and applications in metaproteogenomics for bridging the gap between genomic sequences and metabolic functions in microbial communities

机译:跨蛋白质组学的生物信息学进展及其在弥合基因组序列与微生物群落代谢功能之间的差距中的应用

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摘要

Metaproteomics of microbial communities promises to add functional information to the blueprint of genes derived from metagenomics. Right from its beginning, the achievements and developments in metaproteomics were closely interlinked with metagenomics. In addition, the evaluation, visualization, and interpretation of metaproteome data demanded for the developments in bioinformatics. This review will give an overview about recent strategies to use genomic data either from public databases or organismal specific genomes/metagenomes to increase the number of identified proteins obtained by mass spectrometric measurements. We will review different published metaproteogenomic approaches in respect to the used MS pipeline and to the used protein identification workflow. Furthermore, different approaches of data visualization and strategies for phylogenetic interpretation of metaproteome data are discussed as well as approaches for functional mapping of the results to the investigated biological systems. This information will in the end allow a comprehensive analysis of interactions and interdependencies within microbial communities.
机译:微生物群落的元蛋白质组学有望为宏基因组学衍生的基因蓝图增加功能性信息。从一开始,元蛋白质组学的成就和发展就与宏基因组学紧密联系在一起。此外,对元蛋白质组数据的评估,可视化和解释要求生物信息学的发展。这篇综述将概述使用公共数据库或有机体特定基因组/基因组学中的基因组数据来增加通过质谱测量获得的已鉴定蛋白质数量的最新策略。我们将回顾有关已使用的MS管道和已使用的蛋白质鉴定工作流程的各种不同的元蛋白质组学方法。此外,讨论了不同的数据可视化方法和元蛋白质组数据系统发育解释的策略,以及将结果功能映射到所研究的生物学系统的方法。最后,该信息将允许对微生物群落内部的相互作用和相互依赖性进行全面分析。

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