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不同分类阶元下,实际 DNA 提取中土壤样本量对土壤微生物多样性的影响。

The effect of soil sample size, for practical DNA extraction, on soil microbial diversity in different taxonomic ranks.

机构信息

Graduate School of Science and Engineering, Doshisha University, Kyotanabe, Kyoto, Japan.

出版信息

PLoS One. 2021 Nov 18;16(11):e0260121. doi: 10.1371/journal.pone.0260121. eCollection 2021.

Abstract

To determine the optimal soil sample size for microbial community structure analysis, DNA extraction, microbial composition analysis, and diversity assessments were performed using soil sample sizes of 0.2, 1, and 5 g. This study focused on the relationship between soil amount and DNA extraction container volume and the alteration in microbial composition at different taxonomic ranks (order, class, and phylum). Horizontal (0.2 and 1 g) and vertical (5 g) shaking were applied during DNA extraction for practical use in a small laboratory. In the case of the 5 g soil sample, DNA extraction efficiency and the value of α-diversity index fluctuated severely, possibly because of vertical shaking. Regarding the 0.2 and 1 g soil samples, the number of taxa, Shannon-Wiener index, and Bray-Curtis dissimilarity were stable and had approximately the same values at each taxonomic rank. However, non-metric multidimensional scaling showed that the microbial compositions of these two sample sizes were different. The higher relative abundance of taxa in the case of the 0.2 g soil sample might indicate that cell wall compositions differentiated the microbial community structures in these two sample sizes due to high shear stress tolerance. The soil sample size and tube volume affected the estimated microbial community structure. A soil sample size of 0.2 g would be preferable to the other sample sizes because of the possible higher shearing force for DNA extraction and lower experimental costs due to smaller amounts of consumables. When the taxonomic rank was changed from order to phylum, some minor taxa identified at the order rank were integrated into major taxa at the phylum rank. The integration affected the value of the β-diversity index; therefore, the microbial community structure analysis, reproducibility of structures, diversity assessment, and detection of minor taxa would be influenced by the taxonomic rank applied.

摘要

为了确定微生物群落结构分析的最佳土壤样本量,使用 0.2、1 和 5 g 的土壤样本量进行了 DNA 提取、微生物组成分析和多样性评估。本研究侧重于土壤量与 DNA 提取容器体积之间的关系,以及不同分类等级(目、纲和门)下微生物组成的变化。在 DNA 提取过程中应用了水平(0.2 和 1 g)和垂直(5 g)摇动,以便在小型实验室中实际使用。在 5 g 土壤样本的情况下,由于垂直摇动,DNA 提取效率和α多样性指数的值波动剧烈。对于 0.2 和 1 g 的土壤样本,分类单元数量、香农-威纳指数和布雷-柯蒂斯不相似性稳定,在每个分类等级的数值大致相同。然而,非度量多维标度显示,这两种样本大小的微生物组成不同。0.2 g 土壤样本中分类单元的相对丰度较高,可能表明由于高剪切应力耐受性,细胞壁组成区分了这两种样本大小的微生物群落结构。土壤样本量和管体积影响估计的微生物群落结构。由于 DNA 提取的可能更高剪切力和由于消耗品数量较少而导致的更低实验成本,0.2 g 的土壤样本量将是优选的其他样本量。当分类等级从目变为门时,在目等级确定的一些次要分类单元被整合到门等级的主要分类单元中。这种整合会影响β多样性指数的值;因此,微生物群落结构分析、结构的可重复性、多样性评估和次要分类单元的检测都会受到应用的分类等级的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1bc8/8601499/0ef81bdc70ba/pone.0260121.g001.jpg

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