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IDV Typer:一种基于返回时间分布的流感 D 病毒谱系分型自动化工具。

IDV Typer: An Automated Tool for Lineage Typing of Influenza D Viruses Based on Return Time Distribution.

机构信息

Bioinformatics Centre, Savitribai Phule Pune University (Formerly University of Pune), Pune 411007, India.

Department of Statistics, Savitribai Phule Pune University (Formerly University of Pune), Pune 411007, India.

出版信息

Viruses. 2024 Feb 28;16(3):373. doi: 10.3390/v16030373.

Abstract

Influenza D virus (IDV) is the most recent addition to the family and cattle serve as the primary reservoir. IDV has been implicated in Bovine Respiratory Disease Complex (BRDC), and there is serological evidence of human infection of IDV. Evolutionary changes in the IDV genome have resulted in the expansion of genetic diversity and the emergence of multiple lineages that might expand the host tropism and potentially increase the pathogenicity to animals and humans. Therefore, there is an urgent need for automated, accurate and rapid typing tools for IDV lineage typing. Currently, IDV lineage typing is carried out using BLAST-based searches and alignment-based molecular phylogeny of the hemagglutinin-esterase fusion (HEF) gene sequences, and lineage is assigned to query sequences based on sequence similarity (BLAST search) and proximity to the reference lineages in the tree topology, respectively. To minimize human intervention and lineage typing time, we developed IDV Typer server, implementing alignment-free method based on return time distribution (RTD) of k-mers. Lineages are assigned using HEF gene sequences. The server performs with 100% sensitivity and specificity. The IDV Typer server is the first application of an RTD-based alignment-free method for typing animal viruses.

摘要

D 型流感病毒(IDV)是该家族的最新成员,牛是其主要的宿主。IDV 被认为与牛呼吸道疾病复合症(BRDC)有关,有血清学证据表明人类也感染了 IDV。IDV 基因组的进化变化导致了遗传多样性的扩展和多个谱系的出现,这可能扩大了宿主的嗜性,并可能增加对动物和人类的致病性。因此,迫切需要用于 IDV 谱系分型的自动化、准确和快速的分型工具。目前,IDV 谱系分型是通过基于 BLAST 的搜索和血凝素酯酶融合(HEF)基因序列的基于比对的分子系统发育进行的,根据序列相似性(BLAST 搜索)和与树拓扑中参考谱系的接近程度,将谱系分配给查询序列。为了最大限度地减少人为干预和谱系分型时间,我们开发了 IDV Typer 服务器,该服务器实现了基于 k-mer 返回时间分布(RTD)的无比对方法。使用 HEF 基因序列进行谱系分配。该服务器的灵敏度和特异性均为 100%。IDV Typer 服务器是第一个将基于 RTD 的无比对方法应用于动物病毒分型的应用程序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20c1/10976072/417b54cbf6dd/viruses-16-00373-g001.jpg

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