Simultaneous identification of DNA and RNA pathogens using metagenomic sequencing in cases of severe acute respiratory infection

Author:

Xie Nana12,Lin Yanfeng3,Li Peihan2,Zhao Jiachen4,Li Jinhui2,Wang Kaiying2,Yang Lang2,Jia Leili2,Wang Quanyi45ORCID,Li Peng12,Song Hongbin12

Affiliation:

1. AnHui Medical University Hefei China

2. Chinese PLA Center for Disease Control and Prevention of PLA Beijing China

3. Huadong Research Institute for Medicine and Biotechniques Nanjing China

4. Beijing Center for Disease Prevention and Control Beijing China

5. Beijing Research Center for Respiratory Infectious Diseases Beijing China

Abstract

AbstractMetagenomic next‐generation sequencing (mNGS) is a valuable technique for identifying pathogens. However, conventional mNGS requires the separate processing of DNA and RNA genomes, which can be resource‐ and time‐intensive. To mitigate these impediments, we propose a novel method called DNA/RNA cosequencing that aims to enhance the efficiency of pathogen detection. DNA/RNA cosequencing uses reverse transcription of total nucleic acids extracted from samples by using random primers, without removing DNA, and then employs mNGS. We applied this method to 85 cases of severe acute respiratory infections (SARI). Influenza virus was identified in 13 cases (H1N1: seven cases, H3N2: three cases, unclassified influenza type: three cases) and was not detected in the remaining 72 samples. Bacteria were present in all samples. Pseudomonas aeruginosa, Klebsiella pneumoniae, and Acinetobacter baumannii were detected in four influenza‐positive samples, suggesting coinfections. The sensitivity and specificity for detecting influenza A virus were 73.33% and 95.92%, respectively. A κ value of 0.726 indicated a high level of concordance between the results of DNA/RNA cosequencing and SARI influenza virus monitoring. DNA/RNA cosequencing enhanced the efficiency of pathogen detection, providing a novel capability to strengthen surveillance and thereby prevent and control infectious disease outbreaks.

Publisher

Wiley

Reference37 articles.

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