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Automated DNA mutation detection using universal conditions direct sequencing: application to ten muscular dystrophy genes

机译:使用通用条件直接测序的自动DNA突变检测:应用于十种肌营养不良症基因

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摘要

BackgroundOne of the most common and efficient methods for detecting mutations in genes is PCR amplification followed by direct sequencing. Until recently, the process of designing PCR assays has been to focus on individual assay parameters rather than concentrating on matching conditions for a set of assays. Primers for each individual assay were selected based on location and sequence concerns. The two primer sequences were then iteratively adjusted to make the individual assays work properly. This generally resulted in groups of assays with different annealing temperatures that required the use of multiple thermal cyclers or multiple passes in a single thermal cycler making diagnostic testing time-consuming, laborious and expensive.These factors have severely hampered diagnostic testing services, leaving many families without an answer for the exact cause of a familial genetic disease. A search of GeneTests for sequencing analysis of the entire coding sequence for genes that are known to cause muscular dystrophies returns only a small list of laboratories that perform comprehensive gene panels.The hypothesis for the study was that a complete set of universal assays can be designed to amplify and sequence any gene or family of genes using computer aided design tools. If true, this would allow automation and optimization of the mutation detection process resulting in reduced cost and increased throughput.
机译:背景技术检测基因突变的最常见和最有效的方法之一是PCR扩增,然后直接测序。直到最近,设计PCR分析的过程一直专注于各个分析参数,而不是集中于一组分析的匹配条件。根据位置和序列问题选择每个单独测定的引物。然后反复调整两个引物序列,以使各个测定正常进行。通常这会导致使用不同退火温度的化验组,这需要在单个热循环仪中使用多个热循环仪或多次通过,使得诊断测试既耗时,费力又昂贵。没有给出家族遗传病确切原因的答案。搜索GeneTests以对导致肌肉营养不良的基因的整个编码序列进行测序分析只能返回一小部分进行全面基因检测的实验室。研究的假设是可以设计一套完整的通用检测方法使用计算机辅助设计工具扩增和测序任何基因或基因家族。如果为真,这将允许突变检测过程的自动化和优化,从而降低成本并提高通量。

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