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肠道相关功能在生命的大部分时间里都是微生物组组装过程中的优势功能。

Gut-associated functions are favored during microbiome assembly across a major part of life.

机构信息

Research Group Evolutionary Ecology and Genetics, Zoological Institute, Kiel University, Kiel, Germany.

Max Planck Fellow Group Antibiotic Resistance Evolution, Max Planck Institute for Evolutionary Biology, Ploen, Germany.

出版信息

mBio. 2024 May 8;15(5):e0001224. doi: 10.1128/mbio.00012-24. Epub 2024 Apr 18.

Abstract

UNLABELLED

The microbiome expresses a variety of functions that influence host biology. The range of functions depends on the microbiome's composition, which can change during the host's lifetime due to neutral assembly processes, host-mediated selection, and environmental conditions. To date, the exact dynamics of microbiome assembly, the underlying determinants, and the effects on host-associated functions remain poorly understood. Here, we used the nematode and a defined community of fully sequenced, naturally associated bacteria to study microbiome dynamics and functions across a major part of the worm's lifetime of hosts under controlled experimental conditions. Bacterial community composition initially shows strongly declining levels of stochasticity, which increases during later time points, suggesting selective effects in younger animals as opposed to more random processes in older animals. The adult microbiome is enriched in genera and compared to the direct substrate and a host-free control environment. Using pathway analysis, metabolic, and ecological modeling, we further find that the lifetime assembly dynamics increase competitive strategies and gut-associated functions in the host-associated microbiome, indicating that the colonizing bacteria benefit the worm. Overall, our study introduces a framework for studying microbiome assembly dynamics based on stochastic, ecological, and metabolic models, yielding new insights into the processes that determine host-associated microbiome composition and function.

IMPORTANCE

The microbiome plays a crucial role in host biology. Its functions depend on the microbiome composition that can change during a host's lifetime. To date, the dynamics of microbiome assembly and the resulting functions still need to be better understood. This study introduces a new approach to characterize the functional consequences of microbiome assembly by modeling both the relevance of stochastic processes and metabolic characteristics of microbial community changes. The approach was applied to experimental time-series data obtained for the microbiome of the nematode across the major part of its lifetime. Stochastic processes played a minor role, whereas beneficial bacteria as well as gut-associated functions enriched in hosts. This indicates that the host might actively shape the composition of its microbiome. Overall, this study provides a framework for studying microbiome assembly dynamics and yields new insights into microbiome functions.

摘要

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微生物组表达了多种影响宿主生物学的功能。功能的范围取决于微生物组的组成,由于中性组装过程、宿主介导的选择和环境条件,微生物组的组成在宿主的一生中会发生变化。迄今为止,微生物组组装的确切动态、潜在决定因素以及对宿主相关功能的影响仍知之甚少。在这里,我们使用线虫和一个完全测序的、自然相关的细菌定义群落,在受控实验条件下研究了宿主一生中微生物组动态和功能的主要部分。细菌群落组成最初表现出强烈的随机水平下降,随后在后期时间点增加,这表明在年轻动物中存在选择效应,而不是在老年动物中更随机的过程。与直接基质和无宿主的对照环境相比,成年微生物组富含属和属。通过途径分析、代谢和生态建模,我们进一步发现,终生组装动态增加了宿主相关微生物组中的竞争策略和肠道相关功能,表明定植细菌使蠕虫受益。总的来说,我们的研究基于随机、生态和代谢模型为研究微生物组组装动态引入了一个框架,为决定宿主相关微生物组组成和功能的过程提供了新的见解。

重要性

微生物组在宿主生物学中起着至关重要的作用。其功能取决于微生物组的组成,而微生物组的组成在宿主的一生中会发生变化。到目前为止,微生物组组装的动态和由此产生的功能仍需要更好地理解。本研究通过对微生物群落变化的随机过程和代谢特征的建模,引入了一种新的方法来描述微生物组组装的功能后果。该方法应用于通过实验获得的线虫微生物组的时间序列数据,这些数据涵盖了其一生中的主要部分。随机过程的作用较小,而有益细菌以及在宿主中富集的肠道相关功能则较多。这表明宿主可能主动塑造其微生物组的组成。总的来说,本研究为研究微生物组组装动态提供了一个框架,并为微生物组功能提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/235a/11077962/91ed04627d27/mbio.00012-24.f001.jpg

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