Campbell N J, Harriss F C, Elphinstone M S, Baverstock P R
Centre for Conservation Technology, Faculty of Resource Science and Management, Southern Cross University, Lismore, NSW, Australia.
Mol Ecol. 1995 Aug;4(4):407-18. doi: 10.1111/j.1365-294x.1995.tb00234.x.
The ability of DNA screening techniques such as Temperature Gradient Gel Electrophoresis (TGGE) and Heteroduplex Analysis to provide resolution approaching that provided by DNA sequencing for a fraction of the time, effort and expense point to them as the logical successor to allozyme electrophoresis for population genetics. Here we present a novel alternative to the standard TGGE/Heteroduplex Analysis protocol - Outgroup Heteroduplex Analysis (OHA). We assess this technique's sensitivity in comparison to previous screening approaches using a known hierarchy of sequence differences. Our data show that Outgroup Heteroduplex Analysis has greatly increased sensitivity for screening DNA variants from that of TGGE used alone and is easily applicable to large numbers of samples. Using this technique we can consistently detect differences of as small as one base change in a 433-base-pair fragment of Control Region mitochondrial DNA from Melomys cervinipes (an Australian rodent). The approach should easily be extendable to nuclear loci and is not necessarily dependent on the use of a denaturing gradient. When combined with a targeted sequencing effort, OHA provides a sensitive and simple means of obtaining allele/haplotype frequencies and their phylogenies for population and phylogeographic studies in molecular ecology.
诸如温度梯度凝胶电泳(TGGE)和异源双链分析等DNA筛选技术,能够在所需时间、精力和费用仅为DNA测序几分之一的情况下,提供接近DNA测序的分辨率,这表明它们是群体遗传学中同工酶电泳的合理继任者。在此,我们提出了一种标准TGGE/异源双链分析方案的新替代方法——外群异源双链分析(OHA)。我们使用已知的序列差异层次结构,将该技术的灵敏度与先前的筛选方法进行了比较评估。我们的数据表明,外群异源双链分析相比单独使用TGGE筛选DNA变异体的灵敏度有了极大提高,并且很容易应用于大量样本。使用该技术,我们能够始终如一地检测到来自Melomys cervinipes(一种澳大利亚啮齿动物)的控制区线粒体DNA 433个碱基对片段中仅一个碱基变化的差异。该方法应能轻松扩展到核基因座,且不一定依赖于变性梯度的使用。当与有针对性的测序工作相结合时,OHA为分子生态学中的群体和系统地理学研究提供了一种获取等位基因/单倍型频率及其系统发育的灵敏且简单的方法。