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用于同源基因定量回收的基因捕获和随机扩增。

Gene capture and random amplification for quantitative recovery of homologous genes.

作者信息

Crosby Laurel D, Criddle Craig S

机构信息

Environmental Engineering & Science Program, Stanford University, Stanford, CA 94305, USA.

出版信息

Mol Cell Probes. 2007 Apr;21(2):140-7. doi: 10.1016/j.mcp.2006.09.003. Epub 2006 Sep 30.

Abstract

The polymerase chain reaction (PCR) is instrumental in molecular analysis of microorganisms, allowing for the selective amplification of nucleic acids directly from clinical and environmental samples. However, the principles that allow for targeted amplification of DNA become a hindrance when attempting to simultaneously discriminate and quantify complex mixtures of homologous genes. Here we present a simple solution to the quantitative problem by separating the enrichment and amplification aspects of a conventional PCR reaction. In this assay, genes are enriched using a DNA oligonucleotide capture probe and subsequently amplified in a two-step random amplification protocol. In order to evaluate the quantitative aspects of the gene capture assay, we used real-time quantitative-PCR to measure initial and final concentrations of homologous genes from constructed mixtures of genomes. Upon sampling for the universal DNA-dependent RNA polymerase gene, rpoC, we were able to demonstrate quantitative recoveries from a mixed DNA sample despite differences in gene copy number ranging up to 4 orders of magnitude. This suggests that minority populations as low as 0.01% of the total community are represented as accurately as populations at higher abundance. These results offer new possibilities for accurately and quantitatively monitoring diverse mixtures of microorganisms.

摘要

聚合酶链反应(PCR)在微生物的分子分析中发挥着重要作用,它能够直接从临床和环境样本中选择性地扩增核酸。然而,当试图同时区分和定量同源基因的复杂混合物时,实现DNA靶向扩增的原理却成为了一个障碍。在此,我们提出了一个简单的解决方案来解决定量问题,即将传统PCR反应的富集和扩增环节分开。在这个检测方法中,基因先用DNA寡核苷酸捕获探针进行富集,随后通过两步随机扩增方案进行扩增。为了评估基因捕获检测的定量效果,我们使用实时定量PCR来测量构建的基因组混合物中同源基因的初始和最终浓度。在对通用的依赖DNA的RNA聚合酶基因rpoC进行采样时,尽管基因拷贝数相差高达4个数量级,我们仍能够证明从混合DNA样本中实现了定量回收。这表明低至占群落总数0.01%的少数群体与高丰度群体一样能够被准确地呈现出来。这些结果为准确和定量监测微生物的多样混合物提供了新的可能性。

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