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A binary vector evaluated particle swarm optimization based method for DNA sequence design problem

机译:基于二元载体评估的DNA序列设计问题的粒子群优化方法

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Deoxyribonucleic Acid (DNA) has certain unique properties such as self-assembly and self-complementary in hybridization, which are important in many DNA-based technologies. Hybridization of DNA can be controlled by properly designing DNA sequences. In this study, sequences are designed such that each sequence uniquely hybridizes to its complementary sequence, but not to any other sequences. Vector evaluated particle swarm optimization (VEPSO) is employed to solve the DNA sequence design problem by minimizing four objective functions, namely similarity, Hmeasure, continuity, and hairpin, subjected to two constraints: melting temperature and GCcontent. Non-dominated solutions can be produced, which are better than other research works where only a set of sequences is generated.
机译:脱氧核糖核酸(DNA)具有某些独特的性质,如自组装和杂交中的自互补,这在许多基于DNA的技术中都很重要。可以通过适当设计DNA序列来控制DNA的杂交。在该研究中,设计了序列,使得每个序列唯一地杂交到其互补序列,而不是任何其他序列。矢量评估的粒子群优化(VEPSO)通过最小化四个目标函数,即相似性H 测量,连续性和发夹来解决DNA序列设计问题,经受两个约束:熔化温度和GC 内容。可以生产非主导的解决方案,这比其他研究工作更好,只有一组序列都会产生。

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