Review on Classification and Nomenclature of Viruses

Solomon Bimrew, Merkuz Abera
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Abstract

: Viruses are subcellular, infectious, non-living creatures that can only replicate and metabolize inside the cells of living hosts. Virus taxonomy is the classification of viruses into categories called taxa. The classification and nomenclature recently gained importance due to the exponentially increasing number of new viruses discovered. Hence the current review on classification and nomenclature of virus aimed to provide sufficient and updated information to readers. Current virus classification is increasingly performed using more complex phylogenetic approaches that move researchers closer to a rudimentary understanding of the origin, evolution, relatedness, and diversification of viruses. In the taxonomic hierarchy of virus, the highest taxa are real and the lowest rank is species. To categorize viruses, phenotypic traits like morphology, nucleic acid type, and mechanism of replication, host organisms, and the sort of disease they cause are taken into consideration. Mostly based on 1. Classical-e.g. Animal, plant, or bacterial virus system-e.g. Naked or enveloped virus. 2. Genomic-Baltimore classification by seven categories: I: dsDNA viruses (e.g. Adeno viruses, Herpes viruses, Pox viruses) II: ssDNA viruses (+ strand or "sense") DNA (e.g. Parvo viruses) III: dsRNA viruses (e.g. Reo viruses) IV: (+) ssRNA viruses (+ strand or sense) RNA (e.g. Corona viruses, Picorna viruses, Toga viruses) V: (−) ssRNA viruses (− strand or antisense) RNA (e.g. Orthomyxo viruses, Rhabdo viruses). VI: ssRNA-RT viruses (+ strand or sense) RNA with DNA intermediate in life-cycle (e.g. Retro viruses). VII: dsDNA-RT viruses DNA with RNA intermediate in life-cycle (e.g. Hepadna viruses). 3. Serology (a corona virus). There isn't a standardized format for virus species names yet, in contrast to the binomial nomenclature used for cellular species. The ICTV now requires that a species name comprise as few words as possible while still being distinct, and must not merely contain the term virus and the host. By responding to a series of questions based on contrasting traits, a species can be identified using the dichotomous key method.
病毒分类与命名研究进展
病毒是亚细胞的、传染性的、无生命的生物,只能在活体宿主的细胞内复制和代谢。病毒分类学是将病毒划分为分类群。由于发现的新病毒数量呈指数增长,分类和命名最近变得重要起来。因此,本文对病毒的分类和命名进行综述,旨在为读者提供充分和最新的信息。目前的病毒分类越来越多地使用更复杂的系统发育方法,使研究人员更接近于对病毒的起源、进化、相关性和多样化的基本理解。在病毒的分类等级中,最高的分类群是真实的,最低的分类群是种。为了对病毒进行分类,要考虑到病毒的表型特征,如形态、核酸类型、复制机制、宿主生物以及它们引起的疾病类型。主要基于1。Classical-e.g。动物、植物或细菌病毒系统裸露或包膜的病毒。2. 基因组-巴尔的摩按七类分类:I: dsDNA病毒(例如腺病毒、疱疹病毒、痘病毒)II: ssDNA病毒(+链或“感”)DNA(例如细小病毒)III: dsRNA病毒(例如Reo病毒)IV: (+) ssRNA病毒(+链或“感”)RNA(例如冠状病毒、Picorna病毒、Toga病毒)V:(−)ssRNA病毒(-链或反义)RNA(例如Orthomyxo病毒、Rhabdo病毒)。VI: ssRNA-RT病毒(+链或感觉)RNA,在生命周期中含有DNA中间体(如逆转录病毒)。七、dsDNA-RT病毒生命周期中含有中间RNA的DNA(如肝病毒)。3.血清学(冠状病毒)。与细胞物种使用的二项式命名法相比,病毒物种的命名还没有标准化的格式。ICTV现在要求一个物种名称包含尽可能少的单词,同时仍然是不同的,而且不能仅仅包含术语病毒和宿主。通过回答一系列基于对比特征的问题,可以使用二分类键法识别物种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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