School of Integrative Plant Science, Cornell University, Ithaca, NY, 14853, USA.
Microb Ecol. 2017 Oct;74(3):701-708. doi: 10.1007/s00248-017-0968-0. Epub 2017 Apr 7.
The measurement of functional gene abundance in diverse microbial communities often employs quantitative PCR (qPCR) with highly degenerate oligonucleotide primers. While degenerate PCR primers have been demonstrated to cause template-specific bias in PCR applications, the effect of such bias on qPCR has been less well explored. We used a set of diverse, full-length nifH gene standards to test the performance of several universal nifH primer sets in qPCR. We found significant template-specific bias in all but the PolF/PolR primer set. Template-specific bias caused more than 1000-fold mis-estimation of nifH gene copy number for three of the primer sets and one primer set resulted in more than 10,000-fold mis-estimation. Furthermore, such template-specific bias will cause qPCR estimates to vary in response to beta-diversity, thereby causing mis-estimation of changes in gene copy number. A reduction in bias was achieved by increasing the primer concentration. We conclude that degenerate primers should be evaluated across a range of templates, annealing temperatures, and primer concentrations to evaluate the potential for template-specific bias prior to their use in qPCR.
在不同的微生物群落中测量功能基因丰度时,通常采用高度简并寡核苷酸引物的定量 PCR(qPCR)。虽然已证明简并 PCR 引物在 PCR 应用中会引起模板特异性偏差,但这种偏差对 qPCR 的影响尚未得到充分探索。我们使用了一组多样化的全长 nifH 基因标准品,来测试几种通用 nifH 引物对在 qPCR 中的性能。我们发现,除了 PolF/PolR 引物对之外,所有引物对都存在显著的模板特异性偏差。对于其中三个引物对,模板特异性偏差导致 nifH 基因拷贝数的估计值出现了 1000 倍以上的偏差,而对于一个引物对,其估计值出现了 10000 倍以上的偏差。此外,这种模板特异性偏差会导致 qPCR 估计值随β多样性而变化,从而导致基因拷贝数变化的估计值出现偏差。通过增加引物浓度,可以降低偏差。我们得出结论,在将简并引物用于 qPCR 之前,应在一系列模板、退火温度和引物浓度下对其进行评估,以评估潜在的模板特异性偏差。