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通过多重置换扩增(MDA)方法进行基因组DNA扩增。

Genomic DNA amplification by the multiple displacement amplification (MDA) method.

作者信息

Lasken Roger S

机构信息

J Craig Venter Institute, La Jolla, CA 92121, USA.

出版信息

Biochem Soc Trans. 2009 Apr;37(Pt 2):450-3. doi: 10.1042/BST0370450.

Abstract

Large amounts of DNA are frequently required for use in detection assays and genomic analysis. The limited availability of DNA can be a critical obstacle to meeting research and clinical needs. DNA amplification methods are often required to generate sufficient material from small specimens or environmental samples with low DNA content. The MDA (multiple displacement amplification) reaction is increasingly the method of choice for many applications because of its extensive coverage of the genome, the generation of extremely long DNA products compared with older whole genome amplification methods and the high DNA yields, even from exceedingly low amounts of starting material. Remarkably, MDA enables genomic sequencing even from single microbial cells. Some of the uses of MDA and its strengths and limitations will be discussed.

摘要

检测分析和基因组分析常常需要大量的DNA。DNA获取受限可能成为满足研究和临床需求的关键障碍。从小样本或DNA含量低的环境样本中获取足够的材料通常需要DNA扩增方法。由于多重置换扩增(MDA)反应能广泛覆盖基因组,与早期的全基因组扩增方法相比能产生极长的DNA产物,且DNA产量高,即便起始材料量极少,因此在许多应用中它越来越成为首选方法。值得注意的是,MDA甚至能对单个微生物细胞进行基因组测序。本文将讨论MDA的一些用途及其优缺点。

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