Slater G W, Turmel C, Lalande M, Noolandi J
Biopolymers. 1989 Oct;28(10):1793-9. doi: 10.1002/bip.360281012.
We study the effect of electric field intensity and agarose gel concentration on the anomalous electrophoretic mobility recently predicted by the biased reptation model and experimentally observed for linear DNA fragments electrophoresed in continuous electric fields. We show that high fields and low agarose concentrations eliminate the physical mechanism responsible for anomalous DNA mobility and band inversion, in good agreement with theory, thus restoring the monotonic mobility-size relationship necessary for unambiguous interpretation of the results of DNA gel electrophoresis.
我们研究了电场强度和琼脂糖凝胶浓度对最近由偏向爬行模型预测并在连续电场中电泳的线性DNA片段实验观察到的异常电泳迁移率的影响。我们表明,高电场和低琼脂糖浓度消除了导致DNA异常迁移率和条带反转的物理机制,这与理论高度一致,从而恢复了DNA凝胶电泳结果明确解释所必需的迁移率-大小单调关系。