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解析微生物组:整合理论、新技术和包容性科学。

Deciphering the Microbiome: Integrating Theory, New Technologies, and Inclusive Science.

机构信息

Department of Molecular and Cell Biology, University of Connecticutgrid.63054.34, Storrs, Connecticut, USA.

Department of Biology and Chemistry, California State University Monterey Bay, Seaside, California, USA.

出版信息

mSystems. 2022 Oct 26;7(5):e0058322. doi: 10.1128/msystems.00583-22. Epub 2022 Sep 8.

Abstract

The diversity and functional significance of microbiomes have become increasingly clear through the extensive sampling of Earth's many habitats and the rapid adoption of new sequencing technologies. However, much remains unknown about what makes a "healthy" microbiome, how to restore a disrupted microbiome, and how microbiomes assemble. In December 2019, we convened a workshop that focused on how to identify potential "rules of life" that govern microbiome structure and function. This collection of mSystems Perspective pieces reflects many of the main challenges and opportunities in the field identified by both in-person and virtual workshop participants. By borrowing conceptual and theoretical approaches from other fields, including economics and philosophy, these pieces suggest new ways to dissect microbiome patterns and processes. The application of conceptual advances, including trait-based theory and community coalescence, is providing new insights on how to predict and manage microbiome diversity and function. Technological and analytical advances, including deep transfer learning, metabolic models, and advances in analytical chemistry, are helping us sift through complex systems to pinpoint mechanisms of microbiome assembly and dynamics. Integration of all of these advancements (theory, concepts, technology) across biological and spatial scales is providing dramatically improved temporal and spatial resolution of microbiome dynamics. This integrative microbiome research is happening in a new moment in science where academic institutions, scientific societies, and funding agencies must act collaboratively to support and train a diverse and inclusive community of microbiome scientists.

摘要

通过对地球众多栖息地的广泛采样和新测序技术的快速采用,微生物组的多样性和功能意义变得越来越明显。然而,对于什么构成“健康”的微生物组、如何恢复失调的微生物组以及微生物组如何组装,仍有许多未知之处。2019 年 12 月,我们召开了一次研讨会,重点讨论如何确定控制微生物组结构和功能的潜在“生命规则”。这组 mSystems 观点文章反映了现场和虚拟研讨会参与者确定的该领域的许多主要挑战和机遇。通过借鉴包括经济学和哲学在内的其他领域的概念和理论方法,这些文章提出了剖析微生物组模式和过程的新方法。概念上的进步的应用,包括基于特征的理论和群落凝聚,为如何预测和管理微生物组的多样性和功能提供了新的见解。技术和分析方法的进步,包括深度迁移学习、代谢模型和分析化学的进步,正在帮助我们筛选复杂系统,以确定微生物组组装和动态的机制。所有这些(理论、概念、技术)方面的综合进展都在跨越生物和空间尺度提供了对微生物组动态的极大改善的时间和空间分辨率。这种综合的微生物组研究正在科学的一个新时刻发生,在这个时刻,学术机构、科学协会和资助机构必须合作,支持和培训一个多样化和包容的微生物组科学家社区。

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