The problem of (thermal) band broadening during DNA gel electrophoresis is studied analytically and numerically using the reptation model. It is shown that the orientation of the end-to-end vector of the molecules leads to increased diffusion and even to molecular size-independent band broadening. Thus, the Einstein relation between mobility and diffusion holds for only very small molecules. Also, "self-trapped" molecules are predicted to give fuzzy bands, as observed experimentally. Finally, megabase molecules are discussed and the consequences of our predictions for the improvement of sequencing are considered.
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Gary W. Slater (1993) studied this question.
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