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来自坦桑尼亚的小反刍兽疫病毒野外分离株的全基因组测序显示,其与Ⅲ型小反刍兽疫病毒具有高度核苷酸同一性。

Complete Genome Sequencing of Field Isolates of Peste des Petits Ruminants Virus from Tanzania Revealed a High Nucleotide Identity with Lineage III PPR Viruses.

作者信息

Kinimi Edson, Mahapatra Mana, Kgotlele Tebogo, Makange Mariam R, Tennakoon Chandana, Njeumi Felix, Odongo Steven, Muyldermans Serge, Kock Richard, Parida Satya, Rweyemamu Mark, Misinzo Gerald

机构信息

SACIDS Africa Centre of Excellence for Infectious Diseases, SACIDS Foundation for One Health, Sokoine University of Agriculture, P.O. Box 3297, Morogoro 67125, Tanzania.

Department of Veterinary Physiology, Biochemistry and Pharmacology, College of Veterinary Medicine and Biomedical Sciences, Sokoine University of Agriculture, P.O. Box 3017, Morogoro 67125, Tanzania.

出版信息

Animals (Basel). 2021 Oct 15;11(10):2976. doi: 10.3390/ani11102976.

Abstract

Peste des petits ruminants virus (PPRV) causes a highly devastating disease of sheep and goats that threatens food security, small ruminant production and susceptible endangered wild ruminants. With policy directed towards achieving global PPR eradication, the establishment of cost-effective genomic surveillance tools is critical where PPR is endemic. Genomic data can provide sufficient in-depth information to identify the pockets of endemicity responsible for PPRV persistence and viral evolution, and direct an appropriate vaccination response. Yet, access to the required sequencing technology is low in resource-limited settings and is compounded by the difficulty of transporting clinical samples from wildlife across international borders due to the Convention on International Trade in Endangered Species (CITES) of Wild Fauna and Flora, and Nagoya Protocol regulations. Oxford nanopore MinION sequencing technology has recently demonstrated an extraordinary performance in the sequencing of PPRV due to its rapidity, utility in endemic countries and comparatively low cost per sample when compared to other whole-genome (WGS) sequencing platforms. In the present study, Oxford nanopore MinION sequencing was utilised to generate complete genomes of PPRV isolates collected from infected goats in Ngorongoro and Momba districts in the northern and southern highlands of Tanzania during 2016 and 2018, respectively. The tiling multiplex polymerase chain reaction (PCR) was carried out with twenty-five pairs of long-read primers. The resulting PCR amplicons were used for nanopore library preparation and sequencing. The analysis of output data was complete genomes of PPRV, produced within four hours of sequencing (accession numbers: MW960272 and MZ322753). Phylogenetic analysis of the complete genomes revealed a high nucleotide identity, between 96.19 and 99.24% with lineage III PPRV currently circulating in East Africa, indicating a common origin. The Oxford nanopore MinION sequencer can be deployed to overcome diagnostic and surveillance challenges in the PPR Global Control and Eradication program. However, the coverage depth was uneven across the genome and amplicon dropout was observed mainly in the GC-rich region between the matrix (M) and fusion (F) genes of PPRV. Thus, larger field studies are needed to allow the collection of sufficient data to assess the robustness of nanopore sequencing technology.

摘要

小反刍兽疫病毒(PPRV)引发一种对绵羊和山羊极具毁灭性的疾病,威胁着粮食安全、小反刍动物生产以及易感染的濒危野生反刍动物。随着旨在实现全球根除小反刍兽疫的政策出台,在小反刍兽疫流行地区建立具有成本效益的基因组监测工具至关重要。基因组数据能够提供足够深入的信息,以识别导致PPRV持续存在和病毒进化的地方流行区域,并指导采取适当的疫苗接种应对措施。然而,在资源有限的环境中,获得所需测序技术的机会较少,而且由于《濒危野生动植物种国际贸易公约》(CITES)和名古屋议定书的规定,将野生动物的临床样本跨境运输存在困难,这使得情况更加复杂。牛津纳米孔MinION测序技术最近在PPRV测序方面展现出非凡性能,因为它速度快、在流行国家实用,且与其他全基因组(WGS)测序平台相比,每个样本的成本相对较低。在本研究中,牛津纳米孔MinION测序被用于分别生成2016年和2018年从坦桑尼亚北部和南部高地的恩戈罗恩戈罗和蒙巴地区感染山羊中分离出的PPRV毒株的完整基因组。使用25对长读引物进行平铺多重聚合酶链反应(PCR)。所得PCR扩增产物用于纳米孔文库制备和测序。对输出数据的分析得到了PPRV的完整基因组,测序后4小时内产出(登录号:MW960272和MZ322753)。对完整基因组的系统发育分析显示,与目前在东非流行的III型PPRV的核苷酸同一性很高,在96.19%至99.24%之间,表明有共同起源。牛津纳米孔MinION测序仪可用于克服小反刍兽疫全球控制和根除计划中的诊断和监测挑战。然而,基因组的覆盖深度不均匀,并且在PPRV的基质(M)基因和融合(F)基因之间富含GC的区域主要观察到扩增子缺失。因此,需要进行更大规模的实地研究,以便收集足够的数据来评估纳米孔测序技术的稳健性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00f6/8532778/8069e98126bf/animals-11-02976-g001.jpg

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