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Pulsed-field electrophoresis of megabase-sized DNA.

机译:兆碱基大小的DNA的脉冲场电泳。

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Success in constructing a physical map of the human genome will depend on two capabilities: rapid resolution of very large DNA and identification of migration anomalies. To address these issues, a systematic exploration of pulsed-field electrophoresis conditions for separating multimegabase-sized DNA was undertaken. Conditions were found for first liberating and then separating DNA up to 6 megabases at higher field strengths and more rapidly than previously reported. In addition, some conditions for transversely pulsed fields produced mobility inversion, in which increased size was accompanied by faster rather than slower migration. Importantly, anomalous migration could be identified by the presence of lateral band spreading, in which the DNA band remained sharply defined but spread laterally while moving down the gel. These results have implications for both practical applications and theoretical models of pulsed-field electrophoresis.
机译:构建人类基因组物理图谱的成功取决于两个功能:非常大的DNA的快速分辨和迁移异常的识别。为了解决这些问题,对脉冲场电泳条件进行了系统的探索,以分离出数百万碱基大小的DNA。发现了先释放然后以比以前报道的更高的场强和更快的速度分离高达6兆碱基的DNA的条件。此外,某些横向脉冲场条件会引起迁移率反演,在这种情况下,尺寸增加伴随着迁移的加快而不是减慢。重要的是,异常迁移可以通过侧向谱带扩展来识别,其中DNA谱带保持清晰定义,但在向下移动凝胶时横向扩展。这些结果对脉冲场电泳的实际应用和理论模型都有影响。

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