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高效引物设计算法

Efficient primer design algorithms.

作者信息

Kämpke T, Kieninger M, Mecklenburg M

机构信息

Forschungsinstitut für anwendungsorientierte Wissensverarbeitung FAW, Helmholtzstr. 16, 89081 Ulm, Germany.

出版信息

Bioinformatics. 2001 Mar;17(3):214-25. doi: 10.1093/bioinformatics/17.3.214.

Abstract

MOTIVATION

Primer design involves various parameters such as string-based alignment scores, melting temperature, primer length and GC content. This entails a design approach from multicriteria decision making. Values of some of the criteria are easy to compute while others require intense calculations.

RESULTS

The reference point method was found to be tractable for trading-off between deviations from ideal values of all the criteria. Some criteria computations are based on dynamic programs with value iteration whose run time can be bounded by a low-degree polynomial. For designing standard PCR primers, the scheme offers in a relative gain in computing speed of up to 50: 1 over ad-hoc computational methods. Single PCR primer pairs have been used as model systems in order to simplify the quantization of the computational acceleration factors. The program has been structured so as to facilitate the analysis of large numbers of primer pairs with minor modifications. The scheme significantly increases primer design throughput which in turn facilitates the use of oligonucleotides in a wide range of applications including: multiplex PCR and other nucleic acid-based amplification systems, as well as in zip code targeting, oligonucleotide microarrays and nucleic acid-based nanoengineering.

摘要

动机

引物设计涉及多种参数,如基于字符串的比对分数、熔解温度、引物长度和GC含量。这需要一种多标准决策的设计方法。一些标准的值易于计算,而其他标准则需要大量计算。

结果

发现参考点方法对于权衡所有标准的理想值偏差是可行的。一些标准计算基于具有值迭代的动态程序,其运行时间可以由低阶多项式界定。对于设计标准PCR引物,该方案与临时计算方法相比,计算速度相对提高了50:1。单对PCR引物已被用作模型系统,以简化计算加速因子的量化。该程序的结构便于对大量引物对进行分析,只需进行少量修改。该方案显著提高了引物设计通量,进而促进了寡核苷酸在广泛应用中的使用,包括:多重PCR和其他基于核酸的扩增系统,以及邮政编码靶向、寡核苷酸微阵列和基于核酸的纳米工程。

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