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使用MinION测序对多个土壤样本进行同步扩增子分析。

Simultaneous amplicon analysis of multiple soil samples using MinION sequencing.

作者信息

Kurokochi Hiroyuki, Yoshitake Kazutoshi, Yonezawa Ryo, Asakawa Shuichi

机构信息

Graduate School of Agricultural and Life Sciences, The University of Tokyo, Yayoi 1-1-1, Bunkyo-ku, Tokyo 113-8657, Japan.

出版信息

MethodsX. 2021 Nov 9;8:101576. doi: 10.1016/j.mex.2021.101576. eCollection 2021.

Abstract

The diversity and composition of soil microorganisms needs to be understood as they influence ecosystem processes. MinION is a relatively recent next-generation sequencer, which provides the advantage of sequencing long reads. In this study, two types of soil were prepared experimentally to investigate the possibility of simultaneously analyzing multiple environmental samples using MinION. The MinION sequencing of amplicons was adjusted by the different rounds of PCR performed. Soil fungi and bacteria were compared using ITS and 16S rRNA amplicons, respectively. For ITS, the number of reads available for MinION sequencing were simply increased by performing two PCRs and purification using Agencourt AMPure XP. However, the effect of performing PCR twice was not high for 16S rRNA. Therefore, performing PCR twice appears to be effective for analyzing ITS regions. Regarding the number of reads obtained using MinION sequencing, clustering the same sample was possible if a read of ∼2000 bases or more was obtained in 16S rRNA and ITS. Further, information on 80 samples was obtained by performing only one round of MinION sequencing. Thus, MinION sequencing can be used to analyze a large number of samples simultaneously, providing a strong tool for amplicon sequencing. • Soil microbial composition before and after treatment was compared between 16S rRNA and ITS amplicons using MinION sequencing • One PCR amplification and two PCR amplifications were also compared • Information on 80 samples was obtained by performing only one round of MinION sequencing.

摘要

由于土壤微生物会影响生态系统过程,因此需要了解其多样性和组成。MinION是一种相对较新的新一代测序仪,具有长读长测序的优势。在本研究中,通过实验制备了两种类型的土壤,以研究使用MinION同时分析多个环境样本的可能性。通过进行不同轮次的PCR来调整MinION对扩增子的测序。分别使用ITS和16S rRNA扩增子对土壤真菌和细菌进行比较。对于ITS,通过进行两次PCR并使用Agencourt AMPure XP进行纯化,可简单地增加用于MinION测序的读段数量。然而,对16S rRNA进行两次PCR的效果并不高。因此,进行两次PCR似乎对分析ITS区域有效。关于使用MinION测序获得的读段数量,如果在16S rRNA和ITS中获得约2000个碱基或更多的读段,则可以对相同样本进行聚类。此外,仅通过一轮MinION测序就获得了80个样本的信息。因此,MinION测序可用于同时分析大量样本,为扩增子测序提供了强大的工具。• 使用MinION测序比较了16S rRNA和ITS扩增子处理前后的土壤微生物组成• 还比较了一次PCR扩增和两次PCR扩增• 仅通过一轮MinION测序就获得了80个样本的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2793/8720897/9c36b9b934ed/ga1.jpg

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