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“同一个健康”框架下的宏蛋白质组学用于揭示微生物群落中的微生物效应物

Metaproteomics in the One Health framework for unraveling microbial effectors in microbiomes.

作者信息

Heyer Robert, Wolf Maximilian, Benndorf Dirk, Uzzau Sergio, Seifert Jana, Grenga Lucia, Pabst Martin, Schmitt Heike, Mesuere Bart, Van Den Bossche Tim, Haange Sven-Bastiaan, Jehmlich Nico, Di Luca Mariagrazia, Ferrer Manuel, Serrano-Villar Sergio, Armengaud Jean, Bode Helge B, Hellwig Patrick, Masselot Catherine Robbe, Léonard Renaud, Wilmes Paul

机构信息

Multidimensional Omics Analyses Group, Leibniz-Institut für Analytische Wissenschaften - ISAS - e.V., Bunsen-Kirchhoff-Straße 11, 44139, Dortmund, Germany.

Multidimensional Omics Analyses Group, Faculty of Technology, Bielefeld University, Universitätsstraße 25, 33615, Bielefeld, Germany.

出版信息

Microbiome. 2025 May 23;13(1):134. doi: 10.1186/s40168-025-02119-5.

Abstract

One Health seeks to integrate and balance the health of humans, animals, and environmental systems, which are intricately linked through microbiomes. These microbial communities exchange microbes and genes, influencing not only human and animal health but also key environmental, agricultural, and biotechnological processes. Preventing the emergence of pathogens as well as monitoring and controlling the composition of microbiomes through microbial effectors including virulence factors, toxins, antibiotics, non-ribosomal peptides, and viruses holds transformative potential. However, the mechanisms by which these microbial effectors shape microbiomes and their broader functional consequences for host and ecosystem health remain poorly understood. Metaproteomics offers a novel methodological framework as it provides insights into microbial dynamics by quantifying microbial biomass composition, metabolic functions, and detecting effectors like viruses, antimicrobial resistance proteins, and non-ribosomal peptides. Here, we highlight the potential of metaproteomics in elucidating microbial effectors and their impact on microbiomes and discuss their potential for modulating microbiomes to foster desired functions.

摘要

“同一健康”理念旨在整合并平衡人类、动物和环境系统的健康,这些系统通过微生物群落紧密相连。这些微生物群落会交换微生物和基因,不仅影响人类和动物健康,还会影响关键的环境、农业和生物技术过程。通过包括毒力因子、毒素、抗生素、非核糖体肽和病毒在内的微生物效应物来预防病原体的出现以及监测和控制微生物群落的组成具有变革潜力。然而,这些微生物效应物塑造微生物群落的机制及其对宿主和生态系统健康更广泛的功能影响仍知之甚少。宏蛋白质组学提供了一个新颖的方法框架,因为它通过量化微生物生物量组成、代谢功能以及检测病毒、抗微生物抗性蛋白和非核糖体肽等效应物来洞察微生物动态。在此,我们强调宏蛋白质组学在阐明微生物效应物及其对微生物群落的影响方面的潜力,并讨论它们调节微生物群落以促进所需功能的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d510/12100821/d19d44eef296/40168_2025_2119_Fig1_HTML.jpg

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