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Robust Sequence Selection Method Used To Develop the FluChip Diagnostic Microarray for Influenza Virus

机译:用于开发流感病毒的FluChip诊断芯片的稳健序列选择方法

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摘要

DNA microarrays have proven to be powerful tools for gene expression analyses and are becoming increasingly attractive for diagnostic applications, e.g., for virus identification and subtyping. The selection of appropriate sequences for use on a microarray poses a challenge, particularly for highly mutable organisms such as influenza viruses, human immunodeficiency viruses, and hepatitis C viruses. The goal of this work was to develop an efficient method for mining large databases in order to identify regions of conservation in the influenza virus genome. From these regions of conservation, capture and label sequences capable of discriminating between different viral types and subtypes were selected. The salient features of the method were the use of phylogenetic trees for data reduction and the selection of a relatively small number of capture and label sequences capable of identifying a broad spectrum of influenza viruses. A detailed experimental evaluation of the selected sequences is described in a companion paper. The software is freely available under the General Public License at http://www.colorado.edu/chemistry/RGHP/software/.
机译:DNA微阵列已被证明是用于基因表达分析的有力工具,并且对于诊断应用例如病毒鉴定和亚型化正变得越来越有吸引力。选择用于微阵列的合适序列提出了挑战,特别是对于高度易变的生物,例如流感病毒,人类免疫缺陷病毒和丙型肝炎病毒。这项工作的目的是开发一种用于挖掘大型数据库的有效方法,以识别流感病毒基因组中的保守区域。从这些保守区域,选择了能够区分不同病毒类型和亚型的捕获和标记序列。该方法的显着特征是使用系统发育树进行数据缩减,并选择了能够识别广谱流感病毒的相对少量的捕获和标记序列。随附论文中描述了对所选序列的详细实验评估。该软件可以根据http://www.colorado.edu/chemistry/RGHP/software/上的General Public License免费获得。

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