Graduate Program in Organismic and Evolutionary Biology, University of Massachusetts, Amherst, MA 01003, USA.
Biotechniques. 2009 Oct;47(4):857-66. doi: 10.2144/000113219.
PCR-mediated recombination can greatly impact estimates of diversity, both in environmental studies and in analyses of gene family evolution. Here we measure chimera (PCR-mediated recombinant) formation by analyzing a mixture of eight partial actin sequences isolated from the amoeba Arcella hemisphaerica amplified under a variety of conditions that mimic standard laboratory situations. We further compare a new-generation proofreading processivity-enhanced polymerase to both a standard proofreading enzyme and previously published results. Proofreading polymerases are preferred over other polymerases in instances where evolutionary inferences must be made. Our analyses reveal that reducing the initial template concentration is as critical as reducing the number of cycles for decreasing chimera formation and improving accuracy. Furthermore, assessing the efficiency of recovery of original haplotypes demonstrates that multiple PCR reactions are required to capture the actual genetic diversity of a sample. Finally, the experiments confirm that processivity-enhanced polymerases enable a substantial decrease in PCR-mediated recombination through reducing starting template concentration, without compromising the robustness of PCR reactions.
PCR 介导的重组会极大地影响多样性的估计,无论是在环境研究中还是在基因家族进化分析中。在这里,我们通过分析在各种条件下扩增的来自变形虫 Arcella hemisphaerica 的 8 个部分肌动蛋白序列的混合物来衡量嵌合体(PCR 介导的重组)的形成,这些条件模拟了标准实验室情况。我们进一步将一种新一代的校对过程增强聚合酶与标准的校对酶和之前发表的结果进行比较。在必须进行进化推断的情况下,校对聚合酶优于其他聚合酶。我们的分析表明,降低初始模板浓度与减少循环次数同样重要,可以降低嵌合体的形成并提高准确性。此外,评估原始单倍型回收率的效率表明,需要进行多次 PCR 反应才能捕获样本的实际遗传多样性。最后,实验证实,通过降低起始模板浓度,过程增强聚合酶可以大大减少 PCR 介导的重组,而不会影响 PCR 反应的稳健性。