首页> 外文期刊>Journal of Microbiological Methods >The effect of multiple primer-template mismatches on quantitative PCR accuracy and development of a multi-primer set assay for accurate quantification of pcrA gene sequence variants
【24h】

The effect of multiple primer-template mismatches on quantitative PCR accuracy and development of a multi-primer set assay for accurate quantification of pcrA gene sequence variants

机译:多个引物-模板错配对定量PCR准确性的影响以及用于精确定量pcrA基因序列变体的多引物组测定的发展

获取原文
获取原文并翻译 | 示例
       

摘要

Quantitative PCR (qPCR) is a critical tool for quantifying the abundance of specific organisms and the level or expression of target genes in medically and environmentally relevant systems. However, often the power of this tool has been limited because primer-template mismatches, due to sequence variations of targeted genes, can lead to inaccuracies in measured gene quantities, detection failures, and spurious conclusions. Currently available primer design guidelines for qPCR were developed for pure culture applications, and available primer design strategies for mixed cultures were developed for detection rather than accurate quantification. Furthermore, past studies examining the impact of mismatches have focused only on single mismatches while instances of multiple mismatches are common. There are currently no appropriate solutions to overcome the challenges posed by sequence variations. Here, we report results that provide a comprehensive, quantitative understanding of the impact of multiple primer-template mismatches on qPCR accuracy and demonstrate a multi-primer set approach to accurately quantify a model gene perA (encoding perchlorate reductase) that has substantial sequence variation. Results showed that for multiple mismatches (up to 3 mismatches) in primer regions where mismatches were previously considered tolerable (middle and 5' end), quantification accuracies could be as low as similar to 0.1%. Furthermore, tests were run using a published perA primer set with mixtures of genomic DNA from strains known to harbor the target gene, and for some mixtures quantification accuracy was as low as similar to 0.8% or was non-detect. To overcome these limitations, a multiple primer set assay including minimal degeneracies was developed for perA genes. This assay resulted in nearly 100% accurate detection for all mixed microbial communities tested. The multi-primer set approach demonstrated herein can be broadly applied to other genes with known sequences
机译:定量PCR(qPCR)是量化特定生物体以及医学和环境相关系统中靶基因水平或表达的关键工具。但是,该工具的功能通常受到限制,因为由于目标基因的序列变异而导致的引物-模板错配可能导致测量的基因数量不准确,检测失败和虚假结论。为纯培养应用开发了当前可用的qPCR引物设计指南,为混合培养开发了可用的引物设计策略以进行检测,而不是精确定量。此外,过去研究不匹配影响的研究仅集中于单个不匹配,而多个不匹配的情况则很常见。当前没有合适的解决方案来克服序列变异带来的挑战。在这里,我们报告的结果提供了对多个引物模板错配对qPCR准确性的影响的全面,定量的理解,并展示了一种多引物组方法来准确定量模型基因perA(编码高氯酸盐还原酶)的序列,该序列具有实质性的变异。结果表明,对于以前被认为是可以容许的错配(中端和5'端)的引物区域中的多个错配(最多3个错配),定量精度可能低至0.1%。此外,使用公开的perA引物组与已知带有目标基因的菌株的基因组DNA混合物进行测试,对于某些混合物,定量准确性低至接近0.8%或无法检测。为了克服这些限制,针对perA基因开发了包括最小简并性的多重引物组测定法。该测定法可对所有测试的混合微生物群落进行近100%的准确检测。本文证明的多引物组方法可广泛应用于具有已知序列的其他基因

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号