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构建人工宿主微生物组的路线图。

Road MAPs to engineer host microbiomes.

机构信息

Bioinformatics Group, Wageningen University, Wageningen, Netherlands; Department of Microbial Ecology, Netherlands Institute of Ecology (NIOO/KNAW), Wageningen, Netherlands.

Bioinformatics Group, Wageningen University, Wageningen, Netherlands.

出版信息

Curr Opin Microbiol. 2018 Jun;43:46-54. doi: 10.1016/j.mib.2017.11.023. Epub 2017 Dec 5.

Abstract

Microbiomes contribute directly or indirectly to host health and fitness. Thus far, investigations into these emergent traits, referred to here as microbiome-associated phenotypes (MAPs), have been primarily qualitative and taxonomy-driven rather than quantitative and trait-based. We present the MAPs-first approach, a theoretical and experimental roadmap that involves quantitative profiling of MAPs across genetically variable hosts and subsequent identification of the underlying mechanisms. We outline strategies for developing 'modular microbiomes'-synthetic microbial consortia that are engineered in concert with the host genotype to confer different but mutually compatible MAPs to a single host or host population. By integrating host and microbial traits, these strategies will facilitate targeted engineering of microbiomes to the benefit of agriculture, human/animal health and biotechnology.

摘要

微生物组直接或间接地影响宿主的健康和适应性。到目前为止,对这些新兴特征的研究主要是定性的和基于分类学的,而不是定量的和基于特征的。我们提出了 MAP 优先方法,这是一种理论和实验路线图,涉及对具有遗传变异性的宿主的 MAP 进行定量分析,然后确定其潜在机制。我们概述了开发“模块化微生物组”的策略——合成微生物群落与宿主基因型协同设计,以赋予单个宿主或宿主群体不同但相互兼容的 MAP。通过整合宿主和微生物特征,这些策略将有助于针对农业、人类/动物健康和生物技术有针对性地设计微生物组。

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