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瘤胃宏蛋白质组学:更接近于将瘤胃微生物功能与动物生产性能相关联。

Rumen metaproteomics: Closer to linking rumen microbial function to animal productivity traits.

机构信息

Department of Animal and Aquacultural Sciences, Faculty of Biosciences, Norwegian University of Life Sciences, Ås, Norway.

Luxembourg Centre for Systems Biomedicine, Université du Luxembourg, L-4362 Esch-sur-Alzette, Luxembourg; Faculty of Chemistry, Biotechnology and Food Science, Norwegian University of Life Sciences, Ås, Norway.

出版信息

Methods. 2021 Feb;186:42-51. doi: 10.1016/j.ymeth.2020.07.011. Epub 2020 Aug 3.

Abstract

The rumen microbiome constitutes a dense and complex mixture of anaerobic bacteria, archaea, protozoa, virus and fungi. Collectively, rumen microbial populations interact closely in order to degrade and ferment complex plant material into nutrients for host metabolism, a process which also produces other by-products, such as methane gas. Our understanding of the rumen microbiome and its functions are of both scientific and industrial interest, as the metabolic functions are connected to animal health and nutrition, but at the same time contribute significantly to global greenhouse gas emissions. While many of the major microbial members of the rumen microbiome are acknowledged, advances in modern culture-independent meta-omic techniques, such as metaproteomics, enable deep exploration into active microbial populations involved in essential rumen metabolic functions. Meaningful and accurate metaproteomic analyses are highly dependent on representative samples, precise protein extraction and fractionation, as well as a comprehensive and high-quality protein sequence database that enables precise protein identification and quantification. This review focuses on the application of rumen metaproteomics, and its potential towards understanding the complex rumen microbiome and its metabolic functions. We present and discuss current methods in sample handling, protein extraction and data analysis for rumen metaproteomics, and finally emphasize the potential of (meta)genome-integrated metaproteomics for accurate reconstruction of active microbial populations in the rumen.

摘要

瘤胃微生物组由厌氧细菌、古菌、原生动物、病毒和真菌组成,它们构成了一个密集而复杂的混合物。为了将复杂的植物物质降解并发酵为宿主代谢所需的营养物质,瘤胃微生物群落密切相互作用,这个过程还会产生其他副产品,如甲烷气体。我们对瘤胃微生物组及其功能的了解具有科学和工业意义,因为其代谢功能与动物健康和营养有关,但同时也对全球温室气体排放有重大贡献。虽然已经确认了瘤胃微生物组的许多主要微生物成员,但现代非培养元组学技术(如代谢组学)的进步,使得对参与重要瘤胃代谢功能的活跃微生物种群的深入探索成为可能。有意义和准确的代谢组学分析高度依赖于代表性样本、精确的蛋白质提取和分级,以及一个全面和高质量的蛋白质序列数据库,这可以实现精确的蛋白质鉴定和定量。本综述重点介绍了瘤胃代谢组学的应用及其在理解复杂瘤胃微生物组及其代谢功能方面的潜力。我们介绍和讨论了瘤胃代谢组学中样品处理、蛋白质提取和数据分析的当前方法,最后强调了(宏)基因组整合代谢组学在准确重建瘤胃中活跃微生物种群方面的潜力。

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