羊痘初步临床标本的宏基因组分析检测羊痘病毒和新生病毒基因组组装

IF 0.8 Q3 Engineering
D. A. Kwon, E. D. Ryabinkin
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引用次数: 0

摘要

羊痘病毒是家畜最严重的疾病之一。该病毒造成被套损坏,在畜群内迅速传播,并经常导致严重的经济损失。感染暴发期间的一套卫生和流行病学措施在很大程度上取决于病毒株的鉴定和传染性株与疫苗株的明确区分。鉴定病毒株的最现代和最精确的方法是对样本进行全宏基因组测序,然后对样本的病毒组进行组装和分析。我们评估了霰弹枪宏基因组测序的适用性,以准确确认病毒的种类,并利用病毒体的从头组装将其识别到菌株的水平。结果表明,这种方法不仅可以准确地确定感染因子的菌株关系,而且还可以揭示和识别病毒和细菌性质的可能共感染。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Metagenomic Analysis of Primary Clinical Samples of Sheep Pox to Detect Sheep Pox Virus and De Novo Virus Genome Assembly

Metagenomic Analysis of Primary Clinical Samples of Sheep Pox to Detect Sheep Pox Virus and De Novo Virus Genome Assembly

Sheep pox virus is one of the most serious diseases of livestock. The virus causes damage to integuments, spreads rapidly within the herd, and often leads to serious economic losses. The set of sanitary and epidemiological measures during outbreaks of the infection largely depends on identification of the virus strain and unambiguous differentiation of the infectious strain from vaccine ones. The most modern and precise approach to identifying virus strains is the whole metagenome sequencing of samples followed by assembly and analysis of the virome of the sample. We evaluate the applicability of shotgun metagenomic sequencing to accurately confirm the species of the virus and to identify it to the level of the strain using de novo assembly of the virome. It is shown that this approach allows one not only to accurately determine the strain affiliation of an infectious agent, but also to reveal and identify possible coinfections of both viral and bacterial natures.

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来源期刊
Nanotechnologies in Russia
Nanotechnologies in Russia NANOSCIENCE & NANOTECHNOLOGY-
CiteScore
1.20
自引率
0.00%
发文量
0
期刊介绍: Nanobiotechnology Reports publishes interdisciplinary research articles on fundamental aspects of the structure and properties of nanoscale objects and nanomaterials, polymeric and bioorganic molecules, and supramolecular and biohybrid complexes, as well as articles that discuss technologies for their preparation and processing, and practical implementation of products, devices, and nature-like systems based on them. The journal publishes original articles and reviews that meet the highest scientific quality standards in the following areas of science and technology studies: self-organizing structures and nanoassemblies; nanostructures, including nanotubes; functional and structural nanomaterials; polymeric, bioorganic, and hybrid nanomaterials; devices and products based on nanomaterials and nanotechnology; nanobiology and genetics, and omics technologies; nanobiomedicine and nanopharmaceutics; nanoelectronics and neuromorphic computing systems; neurocognitive systems and technologies; nanophotonics; natural science methods in a study of cultural heritage items; metrology, standardization, and monitoring in nanotechnology.
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