An Improved In Silico Algorithm for Output Visualization of DNA Computing Based on Real-Time PCR

M. F. Saaid, Z. Ibrahim, N. Sarmin
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Abstract

In the previous paper, a readout approach for the Hamiltonian Path Problem (HPP) in DNA computing based on the real-time polymerase chain reaction (PCR) was proposed. Based on this approach, realtime amplification was performed with the TaqMan probes and the TaqMan detection mechanism was exploited for the design and development of the proposed readout approach. The readout approach consists of two steps: real-time amplification in vitro using TaqMan-based real-time PCR, followed by information processing in silico to assess the results of real-time amplification, which in turn, enables extraction of the Hamiltonian path. The in silico information processing consists an algorithm to extract the Hamiltonian path based on result of in vitro realtime PCR experiment. However, this algorithm indirectly shows the Hamitonian path by only showing the location of each node for the HPP. Thus, in this paper, we modified the previous in silico algorithm such that the Hamiltonian path can be viewed directly after the in silico information processing of the TaqMan reactions based on real-time PCR is implemented. The modified algorithm can be easily implemented in the computerized application.
一种基于实时荧光定量PCR的DNA计算输出可视化改进算法
在之前的文章中,提出了一种基于实时聚合酶链反应(PCR)的DNA计算中哈密顿路径问题(HPP)的读出方法。基于该方法,利用TaqMan探针进行实时扩增,并利用TaqMan检测机制设计和开发了所提出的读出方法。读出方法包括两个步骤:使用基于taqman的实时PCR进行体外实时扩增,然后进行计算机信息处理以评估实时扩增结果,进而提取哈密顿路径。计算机信息处理包括基于体外实时PCR实验结果提取哈密顿路径的算法。然而,该算法通过仅显示HPP的每个节点的位置来间接显示Hamitonian路径。因此,本文对之前的计算机算法进行了改进,实现了基于实时PCR的TaqMan反应的计算机信息处理后,可以直接看到哈密顿路径。改进后的算法易于在计算机应用中实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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