Author: Xu, Lili; Zhu, Yun; Ren, Lili; Xu, Baoping; Liu, Chunyan; Xie, Zhengde; Shen, Kunling
Title: Characterization of the nasopharyngeal viral microbiome from children with communityâ€acquired pneumonia but negative for Luminex xTAG respiratory viral panel assay detection Cord-id: qw7gcrqa Document date: 2017_7_25
ID: qw7gcrqa
Snippet: In the present study, 50 nasopharyngeal swabs from children with communityâ€acquired pneumonia (CAP) but negative for 18 common respiratory viruses, as measured by the Luminex xTAG Respiratory Viral Panel Assay, were subjected to multiplex metagenomic analyses using a nextâ€generation sequencing platform. Taxonomic analysis showed that all sequence reads could be assigned to a specific species. An average of 95.13% were assigned to the Bacteria kingdom, whereas, only 0.72% were potentially vir
Document: In the present study, 50 nasopharyngeal swabs from children with communityâ€acquired pneumonia (CAP) but negative for 18 common respiratory viruses, as measured by the Luminex xTAG Respiratory Viral Panel Assay, were subjected to multiplex metagenomic analyses using a nextâ€generation sequencing platform. Taxonomic analysis showed that all sequence reads could be assigned to a specific species. An average of 95.13% were assigned to the Bacteria kingdom, whereas, only 0.72% were potentially virus derived. This snapshot of the respiratory tract virome revealed most viral reads to be respiratory tract related, classified into four known virus families: Paramyxoviridae, Herpesviridae, Anelloviridae, and Polyomaviridae. Importantly, we detected a novel human parainfluenza virus 3 (HPIV 3) strain with a 32â€bp insertion in the haemagglutininâ€neuraminidase (HN) gene that produced a negative result in the Luminex assay, highlighting the strength of virome metagenomic analysis to identify not only novel viruses but also viruses likely to be missed by ordinary clinical tests. Thus, virome metagenomic analysis could become a viable clinical diagnostic method.
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