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Construction of Multilevel Structure for Avian Influenza Virus System Based on Granular Computing

机译:基于粒度计算的禽流感病毒多层次结构构建

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摘要

Exploring the genetic structure of influenza viruses attracts the attention in the field of molecular ecology and medical genetics, whose epidemics cause morbidity and mortality worldwide. The rapid variations in RNA strand and changes of protein structure of the virus result in low-accuracy subtyping identification and make it difficult to develop effective drugs and vaccine. This paper constructs the evolutionary structure of avian influenza virus system considering both hemagglutinin and neuraminidase protein fragments. An optimization model was established to determine the rational granularity of the virus system for exploring the intrinsic relationship among the subtypes based on the fuzzy hierarchical evaluation index. Thus, an algorithm was presented to extract the rational structure. Furthermore, to reduce the systematic and computational complexity, the granular signatures of virus system were identified based on the coarse-grained idea and then its performance was evaluated through a designed classifier. The results showed that the obtained virus signatures could approximate and reflect the whole avian influenza virus system, indicating that the proposed method could identify the effective virus signatures. Once a new molecular virus is detected, it is efficient to identify the homologous virus hierarchically.
机译:探索流感病毒的遗传结构在分子生态学和医学遗传学领域引起了人们的关注,它们的流行在全世界范围内引起发病和死亡。 RNA链的快速变化和病毒蛋白质结构的变化导致了低准确度的亚型鉴定,并使其难以开发有效的药物和疫苗。本文构建了同时考虑血凝素和神经氨酸酶蛋白片段的禽流感病毒系统的进化结构。建立了基于模糊层次评价指标的优化模型,确定病毒系统的合理粒度,探索亚型之间的内在联系。因此,提出了一种提取有理结构的算法。此外,为了降低系统和计算的复杂性,基于粗粒度思想识别了病毒系统的颗粒特征,然后通过设计的分类器对其性能进行了评估。结果表明,所获得的病毒签名可以近似并反映整个禽流感病毒系统,表明该方法可以识别有效的病毒签名。一旦检测到新的分子病毒,就可以有效地分级识别同源病毒。

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