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胞外 DNA 会干扰土壤细菌群落的评估,但这种影响因微尺度空间分布而异。

The extracellular DNA can baffle the assessment of soil bacterial community, but the effect varies with microscale spatial distribution.

机构信息

Dipartimento di Scienze e Tecnologie Agrarie, Alimentari, Ambientali e Forestali, Università degli Studi di Firenze, Piazzale delle Cascine 28, 50144 Florence, Italy.

Department for Sustainable Food Process, Università Cattolica del Sacro Cuore, Via Emilia Parmense 84, 29122 Piacenza, Italy.

出版信息

FEMS Microbiol Lett. 2021 Jun 24;368(12). doi: 10.1093/femsle/fnab074.

Abstract

Environmental DNA is made-up of intracellular (iDNA) and extracellular (eDNA) pools. In soils, eDNA can be present up to 40% and could distort the assessment of living microorganisms. Distribution of microbial community is inconsistent among different size-aggregates, and the persistence and turnover of eDNA are thus uneven. Uneven persistence and distribution of eDNA could lead to heterogeneity in community analysis biases that arise due to eDNA sequences at micro-scale distribution. Here, we investigated the diversity and structure of eDNA and iDNA bacterial communities in bulk soil and different size-aggregates. Significant differences were observed between eDNA and iDNA bacterial diversity and composition. Changes in community composition are more important than the amount of eDNA to assess the biases caused by eDNA in community analysis. Furthermore, variations were also observed in aggregates-levels for eDNA and iDNA community which indicates that colonization pattern of iDNA community and protection of eDNA through absorbance on particle surface within soil-matrix is heterogeneous. Our work provides empirical evidence that eDNA presence could mask the detection of aggregates-level spatial dynamics in soil microbial community and have potential to qualitatively baffle observed live effects of given treatment by adequately muting the actual response dynamics of the soil microbiome.

摘要

环境 DNA 由细胞内 (iDNA) 和细胞外 (eDNA) 池组成。在土壤中,eDNA 的含量可高达 40%,并可能扭曲对活体微生物的评估。微生物群落的分布在不同大小的团聚体之间不一致,因此 eDNA 的持久性和周转率也不均匀。eDNA 的不均匀持久性和分布可能导致由于微尺度分布的 eDNA 序列而引起的群落分析偏差的异质性。在这里,我们研究了土壤和不同大小团聚体中总 DNA 和不同大小团聚体中 eDNA 和 iDNA 细菌群落的多样性和结构。eDNA 和 iDNA 细菌多样性和组成之间存在显著差异。群落组成的变化比 eDNA 的数量更重要,这可以评估 eDNA 在群落分析中引起的偏差。此外,在 eDNA 和 iDNA 群落的聚集水平也观察到了变化,这表明 iDNA 群落的定殖模式和 eDNA 通过在土壤基质中颗粒表面的吸收得到保护是不均匀的。我们的工作提供了经验证据,表明 eDNA 的存在可能掩盖了土壤微生物群落中聚集水平空间动态的检测,并有可能通过充分抑制土壤微生物组的实际响应动态,定性地干扰给定处理的观察到的活体效应。

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