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牛奶中的连续发酵会产生功能多样的群落谱系,其结构稳定性程度不同。

Serial fermentation in milk generates functionally diverse community lineages with different degrees of structure stabilization.

机构信息

Université de Lorraine, LIBio, Nancy, France.

Université Clermont Auvergne, INRAE, VetAgro Sup, UMR 0545 Fromage, Aurillac, France.

出版信息

mSystems. 2024 Aug 20;9(8):e0044524. doi: 10.1128/msystems.00445-24. Epub 2024 Jul 23.

Abstract

UNLABELLED

Microbial communities offer considerable potential for tackling environmental challenges by improving the functioning of ecosystems. Top-down community engineering is a promising strategy that could be used to obtain communities of desired function. However, the ecological factors that control the balance between community shaping and propagation are not well understood. Dairy backslopping, which consists of using part of the previous production to inoculate a new one, can be used as a model engineering approach to investigate community dynamics during serial propagations. In this study, 26 raw milk samples were serially propagated 6 times each, giving rise to 26 community lineages. Bacterial community structures were analyzed by metabarcoding, and acidification was recorded by pH monitoring. The results revealed that different types of community lineages could be obtained in terms of taxonomic composition and dynamics. Five lineages reached a repeatable community structure in a few propagation steps, with little variation between the final generations, giving rise to stable acidification kinetics. Moreover, these stabilized communities presented a high variability of structure and diverse acidification properties between community lineages. Besides, the other lineages were characterized by different levels of dynamics leading to parallel or divergent trajectories. The functional properties and dynamics of the communities were mainly related to the relative abundance and the taxonomic composition of lactic acid bacteria within the communities. These findings highlight that short-term schemes of serial fermentation can produce communities with a wide range of dynamics and that the balance between community shaping and propagation is intimately linked to community structure.

IMPORTANCE

Microbiome applications require approaches for shaping and propagating microbial communities. Shaping allows the selection of communities with desired taxonomic and functional properties, while propagation allows the production of the biomass required to inoculate the engineered communities in the target ecosystem. In top-down community engineering, where communities are obtained from a pool of mixed microorganisms by acting on environmental variables, a major challenge is to master the balance between shaping and propagation. However, the ecological factors that favor high dynamics of community structure and, conversely, those that favor stability during propagation are not well understood. In this work, short-term dairy backslopping was used to investigate the key role of the taxonomic composition and structure of bacterial communities on their dynamics. The results obtained open up interesting prospects for the biotechnological use of microbiomes, particularly in the field of dairy fermentation, to diversify approaches for injecting microbial biodiversity into cheesemaking processes.

摘要

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微生物群落通过改善生态系统的功能,为应对环境挑战提供了巨大的潜力。自上而下的群落工程是一种很有前途的策略,可以用来获得具有预期功能的群落。然而,控制群落形成和传播之间平衡的生态因素还没有得到很好的理解。牛奶回灌是指利用前一批生产的一部分来接种新的一批,可以作为一种模型工程方法,用于研究连续繁殖过程中的群落动态。在这项研究中,26 份生牛乳样本被连续繁殖了 6 次,产生了 26 个群落谱系。通过代谢组学分析细菌群落结构,通过 pH 监测记录酸化。结果表明,在分类组成和动态方面,可以获得不同类型的群落谱系。有 5 个谱系在几次繁殖步骤中达到了可重复的群落结构,最终几代之间变化很小,导致稳定的酸化动力学。此外,这些稳定的群落表现出结构高度可变性和群落谱系之间不同的酸化特性。此外,其他谱系的特征是动态程度不同,导致平行或发散的轨迹。群落的功能特性和动态主要与群落中乳酸菌的相对丰度和分类组成有关。这些发现强调了短期连续发酵方案可以产生具有广泛动态范围的群落,并且群落的形成和传播之间的平衡与群落结构密切相关。

意义

微生物组应用需要对微生物群落进行塑造和繁殖的方法。塑造可以选择具有所需分类和功能特性的群落,而繁殖可以生产接种到目标生态系统中工程化群落所需的生物量。在自上而下的群落工程中,通过作用于环境变量从混合微生物池中获得群落,一个主要挑战是掌握形成和传播之间的平衡。然而,有利于群落结构高动态的生态因素,以及相反的,有利于繁殖过程中稳定性的生态因素,还没有得到很好的理解。在这项工作中,短期的牛奶回灌被用来研究细菌群落的分类组成和结构对其动态的关键作用。所获得的结果为微生物组的生物技术应用开辟了有趣的前景,特别是在乳制品发酵领域,为将微生物多样性注入奶酪制作过程的方法多样化提供了可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cec5/11334471/a78a2334528e/msystems.00445-24.f001.jpg

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