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用于构建DNA微阵列的双基因组引物设计

Dual-genome primer design for construction of DNA microarrays.

作者信息

Andersson Anders, Bernander Rolf, Nilsson Peter

机构信息

Department of Biotechnology, KTH-Royal Institute of Technology, SE-106 91 Stockholm, Sweden.

出版信息

Bioinformatics. 2005 Feb 1;21(3):325-32. doi: 10.1093/bioinformatics/bti001. Epub 2004 Aug 27.

Abstract

MOTIVATION

Microarray experiments using probes covering a whole transcriptome are expensive to initiate, and a major part of the costs derives from synthesizing gene-specific PCR primers or hybridization probes. The high costs may force researchers to limit their studies to a single organism, although comparing gene expression in different species would yield valuable information.

RESULTS

We have developed a method, implemented in the software DualPrime, that reduces the number of primers required to amplify the genes of two different genomes. The software identifies regions of high sequence similarity, and from these regions selects PCR primers shared between the genomes, such that either one or, preferentially, both primers in a given PCR can be used for amplification from both genomes. To assure high microarray probe specificity, the software selects primer pairs that generate products of low sequence similarity to other genes within the same genome. We used the software to design PCR primers for 2182 and 1960 genes from the hyperthermophilic archaea Sulfolobus solfataricus and Sulfolobus acidocaldarius, respectively. Primer pairs were shared among 705 pairs of genes, and single primers were shared among 1184 pairs of genes, resulting in a saving of 31% compared to using only unique primers. We also present an alternative primer design method, in which each gene shares primers with two different genes of the other genome, enabling further savings. 3.

AVAILABILITY

The software is freely available at http://www.biotech.kth.se/molbio/microarray/.

摘要

动机

使用覆盖整个转录组的探针进行微阵列实验启动成本高昂,其中很大一部分成本来自于合成基因特异性PCR引物或杂交探针。高昂的成本可能迫使研究人员将研究局限于单一生物体,尽管比较不同物种的基因表达会产生有价值的信息。

结果

我们开发了一种方法,并在软件DualPrime中实现,该方法减少了扩增两个不同基因组基因所需的引物数量。该软件识别高度序列相似性区域,并从这些区域中选择基因组之间共享的PCR引物,这样在给定的PCR中,一个引物或者优先两个引物都可用于两个基因组的扩增。为确保微阵列探针的高特异性,该软件选择能产生与同一基因组内其他基因序列相似性低的产物的引物对。我们使用该软件分别为嗜热古菌嗜热栖热菌和嗜酸热硫化叶菌的2182个和1960个基因设计PCR引物。705对基因共享引物对,1184对基因共享单个引物,与仅使用独特引物相比,节省了31%。我们还提出了一种替代引物设计方法,其中每个基因与另一个基因组的两个不同基因共享引物,可进一步节省成本。

可用性

该软件可从http://www.biotech.kth.se/molbio/microarray/免费获取。

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