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DNA双链体热稳定性变化及碱基对错配程度的校准。

Calibration of the change in thermal stability of DNA duplexes and degree of base pair mismatch.

作者信息

Caccone A, DeSalle R, Powell J R

机构信息

Department of Biology, Yale University, New Haven, Connecticut 06511.

出版信息

J Mol Evol. 1988;27(3):212-6. doi: 10.1007/BF02100076.

Abstract

One method of determining the degree of base pair divergence between two sources of DNA (different strains, species, etc.) is to determine the decrease in thermal stability of hybrid duplex DNA due to mismatching of base pairs. Attempts to calibrate the change in median melting temperature (delta Tm) to base pair mismatch have led to conflicting results. We have studied the delta Tm between DNAs of known sequence over a range of from 0.55% to 7.2% base pair mismatch. The relationship of delta Tm and percent base pair mismatch is remarkably linear over this range with a correlation coefficient greater than 0.98. A delta Tm of 1 degree C corresponds to 1.7% base pair mismatch. This conversion is higher than that usually assumed and, therefore, rates of DNA evolution estimated by DNA-DNA hybridization studies are likely faster than previously thought.

摘要

确定两个DNA来源(不同菌株、物种等)之间碱基对差异程度的一种方法是,测定由于碱基对错配导致的杂交双链DNA热稳定性的降低。尝试将中位解链温度的变化(ΔTm)校准为碱基对错配,结果却相互矛盾。我们研究了碱基对错配范围在0.55%至7.2%之间的已知序列DNA之间的ΔTm。在这个范围内,ΔTm与碱基对错配百分比的关系非常线性,相关系数大于0.98。1℃的ΔTm相当于1.7%的碱基对错配。这种换算比通常假设的要高,因此,通过DNA-DNA杂交研究估算的DNA进化速率可能比之前认为的要快。

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