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通过宏基因组学进行新型病毒鉴定:一项系统综述。

Novel Virus Identification through Metagenomics: A Systematic Review.

作者信息

Bassi Cristian, Guerriero Paola, Pierantoni Marina, Callegari Elisa, Sabbioni Silvia

机构信息

Department of Translational Medicine, University of Ferrara, 44121 Ferrara, Italy.

Laboratorio per Le Tecnologie delle Terapie Avanzate (LTTA), University of Ferrara, 44121 Ferrara, Italy.

出版信息

Life (Basel). 2022 Dec 7;12(12):2048. doi: 10.3390/life12122048.

Abstract

Metagenomic Next Generation Sequencing (mNGS) allows the evaluation of complex microbial communities, avoiding isolation and cultivation of each microbial species, and does not require prior knowledge of the microbial sequences present in the sample. Applications of mNGS include virome characterization, new virus discovery and full-length viral genome reconstruction, either from virus preparations enriched in culture or directly from clinical and environmental specimens. Here, we systematically reviewed studies that describe novel virus identification through mNGS from samples of different origin (plant, animal and environment). Without imposing time limits to the search, 379 publications were identified that met the search parameters. Sample types, geographical origin, enrichment and nucleic acid extraction methods, sequencing platforms, bioinformatic analytical steps and identified viral families were described. The review highlights mNGS as a feasible method for novel virus discovery from samples of different origins, describes which kind of heterogeneous experimental and analytical protocols are currently used and provides useful information such as the different commercial kits used for the purification of nucleic acids and bioinformatics analytical pipelines.

摘要

宏基因组下一代测序(mNGS)可用于评估复杂的微生物群落,无需对每种微生物进行分离和培养,也无需事先了解样本中存在的微生物序列。mNGS的应用包括病毒组特征分析、新病毒发现以及全长病毒基因组重建,既可以从富集培养的病毒制剂中进行,也可以直接从临床和环境样本中进行。在此,我们系统地回顾了通过mNGS从不同来源(植物、动物和环境)样本中鉴定新型病毒的研究。在不设搜索时间限制的情况下,共识别出379篇符合搜索参数的出版物。描述了样本类型、地理来源、富集和核酸提取方法、测序平台、生物信息学分析步骤以及鉴定出的病毒科。该综述强调了mNGS是一种从不同来源样本中发现新型病毒的可行方法,描述了目前使用的各种异质实验和分析方案,并提供了有用信息,如用于核酸纯化的不同商业试剂盒和生物信息学分析流程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4423/9784588/e7a94274ef7e/life-12-02048-g001.jpg

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