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肠道微生物群落演替:西班牙婴儿出生队列中分类学和功能变化的方向性趋势

Microbial succession in the gut: directional trends of taxonomic and functional change in a birth cohort of Spanish infants.

作者信息

Vallès Yvonne, Artacho Alejandro, Pascual-García Alberto, Ferrús Maria Loreto, Gosalbes María José, Abellán Juan José, Francino M Pilar

机构信息

Unidad Mixta de Investigación en Genómica y Salud, Fundación para el Fomento de la Investigación Sanitaria y Biomédica de la Comunitat Valenciana (FISABIO)-Salud Pública/Institut Cavanilles de Biodiversitat i Biologia Evolutiva (Universitat de València), València, Spain.

Centro de Biología Molecular "Severo Ochoa" (CSIC-Universidad Autónoma de Madrid), Madrid, Spain.

出版信息

PLoS Genet. 2014 Jun 5;10(6):e1004406. doi: 10.1371/journal.pgen.1004406. eCollection 2014 Jun.

Abstract

In spite of its major impact on life-long health, the process of microbial succession in the gut of infants remains poorly understood. Here, we analyze the patterns of taxonomic and functional change in the gut microbiota during the first year of life for a birth cohort of 13 infants. We detect that individual instances of gut colonization vary in the temporal dynamics of microbiota richness, diversity, and composition at both functional and taxonomic levels. Nevertheless, trends discernible in a majority of infants indicate that gut colonization occurs in two distinct phases of succession, separated by the introduction of solid foods to the diet. This change in resource availability causes a sharp decrease in the taxonomic richness of the microbiota due to the loss of rare taxa (p = 2.06e-9), although the number of core genera shared by all infants increases substantially. Moreover, although the gut microbial succession is not strictly deterministic, we detect an overarching directionality of change through time towards the taxonomic and functional composition of the maternal microbiota. Succession is however not complete by the one year mark, as significant differences remain between one-year-olds and their mothers in terms of taxonomic (p = 0.009) and functional (p = 0.004) microbiota composition, and in taxonomic richness (p = 2.76e-37) and diversity (p = 0.016). Our results also indicate that the taxonomic composition of the microbiota shapes its functional capacities. Therefore, the observed inter-individual variability in taxonomic composition during succession is not fully compensated by functional equivalence among bacterial genera and may have important physiological consequences. Finally, network analyses suggest that positive interactions among core genera during community assembly contribute to ensure their permanence within the gut, and highlight an expansion of complexity in the interactions network as the core of taxa shared by all infants grows following the introduction of solid foods.

摘要

尽管微生物在婴儿肠道中的演替过程对终生健康具有重大影响,但人们对此仍知之甚少。在此,我们分析了13名婴儿出生队列在生命第一年期间肠道微生物群的分类和功能变化模式。我们发现,在功能和分类水平上,肠道定植的个体实例在微生物群丰富度、多样性和组成的时间动态方面存在差异。然而,大多数婴儿中可辨别的趋势表明,肠道定植发生在两个不同的演替阶段,以固体食物引入饮食为分隔。资源可用性的这种变化导致微生物群的分类丰富度急剧下降,原因是稀有分类群的丧失(p = 2.06e - 9),尽管所有婴儿共有的核心属数量大幅增加。此外,尽管肠道微生物演替并非严格确定,但我们检测到随着时间推移,朝着母体微生物群的分类和功能组成存在总体变化方向。然而,到一岁时演替尚未完成,因为一岁婴儿与其母亲在分类(p = 0.009)和功能(p = 0.004)微生物群组成方面,以及在分类丰富度(p = 2.76e - 37)和多样性(p = 0.016)方面仍存在显著差异。我们的结果还表明,微生物群的分类组成塑造了其功能能力。因此,在演替过程中观察到的分类组成个体间变异性并未完全由细菌属间的功能等效性补偿,可能具有重要的生理后果。最后,网络分析表明,群落组装过程中核心属之间的正相互作用有助于确保它们在肠道内的持久性,并突出了随着固体食物引入后所有婴儿共有的分类群核心增加,相互作用网络的复杂性扩大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0dec/4046925/100fc667090e/pgen.1004406.g001.jpg

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