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Determining lineage-specific bacterial growth curves with a novel approach based on amplicon reads normalization using internal standard (ARNIS)

机译:使用基于内标(ARNIS)的扩增子读取归一化的新方法确定谱系特异性细菌生长曲线

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摘要

The growth rate is a fundamental characteristic of bacterial species, determining its contributions to the microbial community and carbon flow. High-throughput sequencing can reveal bacterial diversity, but its quantitative inaccuracy precludes estimation of abundances and growth rates from the read numbers. Here, we overcame this limitation by normalizing Illumina-derived amplicon reads using an internal standard: a constant amount of Escherichia coli cells added to samples just before biomass collection. This approach made it possible to reconstruct growth curves for 319 individual OTUs during the grazer-removal experiment conducted in a freshwater reservoir Římov. The high resolution data signalize significant functional heterogeneity inside the commonly investigated bacterial groups. For instance, many Actinobacterial phylotypes, a group considered to harbor slow-growing defense specialists, grew rapidly upon grazers’ removal, demonstrating their considerable importance in carbon flow through food webs, while most Verrucomicrobial phylotypes were particle associated. Such differences indicate distinct life strategies and roles in food webs of specific bacterial phylotypes and groups. The impact of grazers on the specific growth rate distributions supports the hypothesis that bacterivory reduces competition and allows existence of diverse bacterial communities. It suggests that the community changes were driven mainly by abundant, fast, or moderately growing, and not by rare fast growing, phylotypes. We believe amplicon read normalization using internal standard (ARNIS) can shed new light on in situ growth dynamics of both abundant and rare bacteria.
机译:生长速率是细菌物种的基本特征,它决定了细菌对微生物群落和碳流量的贡献。高通量测序可以揭示细菌的多样性,但其定量误差会排除从读数中估算丰度和生长速率的可能性。在这里,我们通过使用内标对来自Illumina的扩增子读数进行标准化来克服了这一限制:在生物质收集之前,将恒定量的大肠杆菌细胞添加到样品中。这种方法使得在淡水库西莫夫进行的除草试验中,可以重建319个OTU的生长曲线。高分辨率数据表明,在通常研究的细菌群内部存在明显的功能异质性。例如,许多放线菌属系统型,被认为是防御专家成长缓慢的一个群体,在放牧者移走后迅速增长,表明它们在通过食物网的碳流中具有相当重要的作用,而大多数疣疣系统型是与颗粒相关的。这些差异表明特定细菌系统型和群体在食物网中的独特生活策略和作用。放牧者对特定生长率分布的影响支持了细菌减少竞争并允许存在各种细菌群落的假说。这表明群落的变化主要是由丰富,快速或适度的生长驱动的,而不是由稀有的快速生长的系统型驱动的。我们相信使用内标(ARNIS)进行的扩增子读取标准化可为丰富细菌和稀有细菌的原位生长动力学提供新的思路。

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