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储存和提取方法对泥炭土微生物群落的影响。

Impact of storage and extraction methods on peat soil microbiomes.

作者信息

Cronin Dylan, Li Yueh-Fen, Evans Paul, Tyson Gene W, Woodcroft Ben J, Rich Virginia I

机构信息

Center of Microbiome Science, Ohio State University, Columbus, Ohio, United States.

Department of Microbiology, Ohio State University, Columbus, Ohio, United States.

出版信息

PeerJ. 2024 Dec 23;12:e18745. doi: 10.7717/peerj.18745. eCollection 2024.

Abstract

Recovered microbial community structure is known to be influenced by sample storage conditions and nucleic acid extraction methods, and the impact varies by sample type. Peat soils store a large portion of soil carbon and their microbiomes mediate climate feedbacks. Here, we tested three storage conditions and five extraction protocols on peat soils from three physicochemically distinct habitats in Stordalen Mire, Sweden, revealing significant methodological impacts on microbial (here, meaning bacteria and archaea) community structure. Initial preservation method impacted alpha but not beta diversity, with in-field storage in LifeGuard buffer yielding roughly two-thirds the richness of in-field flash-freezing or transport from the field on ice (all samples were stored at -80 °C after return from the field). Nucleic acid extraction method impacted both alpha and beta diversity; one method (t) diverged from the others (, and three variations of a modified , capturing more diverse microbial taxa, with divergent community structures. Although habitat and sample depth still consistently dominated community variation, method-based biases in microbiome recovery for these climatologically-relevant soils are significant, and underscore the importance of methodological consistency for accurate inter-study comparisons, long-term monitoring, and consistent ecological interpretations.

摘要

已知恢复的微生物群落结构会受到样品储存条件和核酸提取方法的影响,且这种影响因样品类型而异。泥炭土储存了大部分土壤碳,其微生物群落介导气候反馈。在此,我们对来自瑞典斯托尔达伦泥炭地三个物理化学性质不同栖息地的泥炭土测试了三种储存条件和五种提取方案,揭示了方法对微生物(此处指细菌和古菌)群落结构有显著影响。初始保存方法影响了α多样性但不影响β多样性,在LifeGuard缓冲液中进行现场储存所产生的丰富度约为现场速冻或在冰上从野外运输的三分之二(所有样品从野外返回后均储存在-80°C)。核酸提取方法影响了α和β多样性;一种方法(t)与其他方法不同(以及改良方法的三种变体,捕获了更多样化的微生物分类群,群落结构也不同。尽管栖息地和样品深度仍然始终主导着群落变化,但对于这些与气候相关的土壤,微生物群落恢复中基于方法的偏差是显著的,这突出了方法一致性对于准确的研究间比较、长期监测和一致的生态学解释的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b38b/11670759/b1ffa8390d4f/peerj-12-18745-g001.jpg

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