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首页> 外文期刊>Genetics and Molecular Research >Entropy-based approach for selecting informative regions in the L1 gene of bovine papillomavirus for phylogenetic inference and primer design
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Entropy-based approach for selecting informative regions in the L1 gene of bovine papillomavirus for phylogenetic inference and primer design

机译:基于熵的牛乳头瘤病毒L1基因信息区选择方法进行系统发育推断和引物设计

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摘要

Bovine papillomaviruses (BPVs) cause many benign and malignant lesions in cattle and other animals. Twelve BPV types have been identified so far, and several putative novel BPV types have been detected based on the analysis of L1 gene fragments, generated by FAP59/64 and MY11/09 primers. Phylogenetic trees are important in studies that describe novel BPV types. However, topological mistakes could be a problem in such studies. Therefore, we made use of entropy to find phylogenetic informative regions in the BPV L1 gene sequences from all 12 BPVs. Six data sets were created and phylogenetically compared to each other using neighbor-joining and maximum likelihood methods of phylogenetic tree reconstruction. We found two major regions in the L1 gene, using an entropy-based approach, which selects regions with low information complexity. More robust phylogenetic trees were obtained with these regions, when compared to the ones obtained with FAP59/64 and MY11/09 primers. More robust phylogenetic trees are important to accurately position novel BPV types, subtypes and variants. We conclude that an entropy-based approach is a good methodology for selecting regions of the L1 gene of BPVs that could be used to design more specific and sensitive degenerate primers, for the development of improved diagnostic methods.
机译:牛乳头瘤病毒(BPV)在牛和其他动物中引起许多良性和恶性病变。到目前为止,已经鉴定出十二种BPV类型,并且基于对由FAP59 / 64和MY11 / 09引物产生的L1基因片段的分析,已经发现了几种推定的新型BPV类型。系统发育树在描述新型BPV类型的研究中很重要。但是,拓扑错误可能是此类研究中的问题。因此,我们利用熵从所有12个BPV中找到BPV L1基因序列中的系统发育信息区。创建了六个数据集,并使用系统发育树重建的邻域连接和最大似然方法相互进行了系统发育比较。我们使用基于熵的方法在L1基因中发现了两个主要区域,该区域选择信息复杂度较低的区域。与用FAP59 / 64和MY11 / 09引物获得的树相比,在这些区域获得了更坚固的系统树。更健壮的系统树对于准确定位新型BPV类型,亚型和变体很重要。我们得出结论,基于熵的方法是选择BPV L1基因区域的好方法,该区域可用于设计更特异和敏感的简并引物,以开发改进的诊断方法。

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