Wu Jer-Horng, Liu Wen-Tso
Division of Environmental Science and Engineering, National University of Singapore, Singapore 117576.
Nucleic Acids Res. 2007;35(11):e82. doi: 10.1093/nar/gkm413. Epub 2007 Jun 6.
A method, termed hierarchical oligonucleotide primer extension (HOPE), is developed for quantitative, multiplexing detection of DNA targets present in PCR-amplified community 16S rRNA genes. It involves strand extension reaction and multiple oligonucleotide primers modified with different lengths of polyA at the 5' end and targeting 16S rRNA genes at different phylogenetic specificities. On annealing to the targets, these primers are extended with a single fluorescently labeled dideoxynucleoside triphosphate or a dye-terminator. Using a DNA autosequencer, these extended primers are separated and identified by size and dye color, and quantified and normalized based on the fluorescence intensities and internal size standards. Using a primer-to-target ratio >1000, constant primer extension efficiencies can be obtained with individual primers to establish a 'calibration factor' between individual primers and a universal or domain-specific primer, providing the relative abundance of targeted rRNA genes with respect to total rRNA genes. HOPE up to 10-plexing is demonstrated to correctly identify 20 different bacterial strains, and quantify different Bacteroides spp. in 16S rRNA gene amplicons from different model bacteria mixtures and the influent and effluent of a wastewater treatment plant. Single mismatch discrimination with detection sensitivity of a target down to 0.01-0.05% of total DNA template is achieved.
一种称为层次寡核苷酸引物延伸(HOPE)的方法被开发出来,用于对PCR扩增的群落16S rRNA基因中存在的DNA靶标进行定量多重检测。它涉及链延伸反应以及多种在5'端用不同长度的聚腺苷酸修饰且针对不同系统发育特异性的16S rRNA基因的寡核苷酸引物。在与靶标退火时,这些引物用单个荧光标记的双脱氧核苷三磷酸或染料终止剂进行延伸。使用DNA自动测序仪,这些延伸的引物按大小和染料颜色进行分离和鉴定,并根据荧光强度和内部大小标准进行定量和归一化。使用引物与靶标的比例>1000,可以用单个引物获得恒定的引物延伸效率,以建立单个引物与通用或域特异性引物之间的“校准因子”,从而提供目标rRNA基因相对于总rRNA基因的相对丰度。已证明HOPE高达10重可以正确识别20种不同的细菌菌株,并对来自不同模型细菌混合物以及污水处理厂进水和出水的16S rRNA基因扩增子中的不同拟杆菌属进行定量。实现了单碱基错配区分,对靶标的检测灵敏度低至总DNA模板的0.01 - 0.05%。