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Specific PCR Product Primer Design Using Memetic Algorithm

机译:使用Memetic算法的特定PCR产物引物设计

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摘要

To provide feasible primer sets for performing a polymerase chain reaction (PCR) experiment,many primer design methods have been proposed. However,the majority of these methods require a relatively long time to obtain an optimal solution since large quantities of template DNA need to be analyzed. Furthermore,the designed primer sets usually do not provide a specific PCR product size. In recent years,evolutionary computation has been applied to PCR primer design and yielded promising results. In this article,a memetic algorithm (MA) is proposed to solve primer design problems associated with providing a specific product size for PCR experiments. The MA is compared with a genetic algorithm (GA) using an accuracy formula to estimate the quality of the primer design and test the running time. Overall,50 accession nucleotide sequences were sampled for the comparison of the accuracy of the GA and MA for primer design. Five hundred runs of the GA and MA primer design were performed with PCR product lengths of 150-300 bps and 500-800 bps,and two different methods of calculating T_m for each accession nucleotide sequence were tested. A comparison of the accuracy results for the GA and MA primer design showed that the MA primer design yielded better results than the GA primer design. The results further indicate that the proposed method finds optimal or near-optimal primer sets and effective PCR products in a dry dock experiment. Related materials are available online at http:llbio.kuas.e-du.twlma-pdl.
机译:为了提供用于进行聚合酶链反应(PCR)实验的可​​行引物组,已经提出了许多引物设计方法。但是,由于需要分析大量模板DNA,因此大多数这些方法都需要相对较长的时间才能获得最佳解决方案。此外,设计的引物组通常不提供特定的PCR产物大小。近年来,进化计算已应用于PCR引物设计,并产生了可喜的结果。在本文中,提出了一种模因算法(MA),以解决与为PCR实验提供特定产物大小有关的引物设计问题。使用精度公式将MA与遗传算法(GA)进行比较,以估算引物设计的质量并测试运行时间。总体上,对50个登录核苷酸序列进行了采样,以比较GA和MA用于引物设计的准确性。使用150-300 bps和500-800 bps的PCR产物长度进行了500次GA和MA引物设计,并测试了两种不同的计算每个登录核苷酸序列T_m的方法。比较GA和MA引物设计的准确性结果表明,MA引物设计比GA引物设计产生更好的结果。结果进一步表明,所提出的方法在干船坞实验中找到了最佳或接近最佳的引物组和有效的PCR产物。相关材料可从http://llbio.kuas.e-du.twlma-pdl在线获得。

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