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Soil metaproteomics as a tool for monitoring functional microbial communities: promises and challenges

机译:土壤微征谱系作为监测功能微生物社区的工具:承诺和挑战

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摘要

Soil is a complex and dynamic network of different biological processes linked in an intricate manner to facilitate effective ecosystem functioning. Microbial diversity and its functioning are crucial to effective ecosystem working and its sustenance. Metagenomic studies undertaken to-date have illustrated the tremendous diversity of both culturable and unculturable microbiome in specific ecosystems, but their exact role in ecosystem functioning needs to be addressed. This can be undertaken by studying the protein repertoire in the ecosystem, which are the direct and undeviating key players in the ongoing metabolic processes. Metaproteomics, an emerging science, tries to snapshot the entire proteins present in a specific environment at a particular time interval. It links the phylogeny and functionality of soil microorganisms, describing not only at the level of the individual dominant organism, but also at the community level, therefore, profiling microbial enzymes may be a sensitive indicator of the soil ecosystem. With the emergence of high-performance mass spectrometry, the approach to mine these functional complex soil microbiomes became feasible; however, it is hindered by the presence of innumerable interfering molecules present in the soil samples. This review focuses on recent developments in soil metaproteomics, particularly, in terms of protein extraction methodologies and mass spectrometry-based measurements, as well as their applications in soil based approaches to decipher the underlying processes responsible for differential functioning in diverse environments.
机译:土壤是以复杂的方式连接的不同生物过程的复杂和动态网络,以促进有效的生态系统功能。微生物多样性及其功能对于有效的生态系统工作及其寄托至关重要。对迄今为止进行的梅雷群研究已经说明了特定生态系统中培养和不耐药性微生物组的巨大多样性,但需要解决它们在生态系统中的确切作用。这可以通过研究生态系统中的蛋白质曲目来进行,这是正在进行的代谢过程中的直接和不公开的关键球员。 Metaprootomics是一种新兴科学,尝试在特定时间间隔内快照特定环境中存在的整个蛋白质。它将土壤微生物的系统发育和功能联系起来,不仅描述了个体占优势生物的水平,而且在群落水平上描述,因此,分析微生物酶可能是土壤生态系统的敏感指标。随着高性能质谱的出现,挖掘这些功能性复杂土壤微生物的方法变得可行;然而,通过存在于土壤样品中存在的无数干扰分子来阻碍它。本综述侧重于近期土壤微征术的发展,特别是在蛋白质提取方法和基于质谱的测量方面,以及它们在土壤基于土壤中的应用来破译负责不同环境中差分功能的潜在过程。

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