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An Automated Hydrodynamic Process for Controlled, Unbiased DNA Shearing

机译:自动化的流体动力学过程,可控制无偏的DNA剪切

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摘要

An automated, inexpensive, easy-to-use, and reproducible technique for controlled, random DNA fragmentation has been developed. The technique is based on point–sink hydrodynamics that result when a DNA sample is forced through a small hole by a syringe pump. Commercially available components are used to reduce the cost and complexity of the instrument. The design is optimized to reduce the volume of sample required and to speed processing time. Shearing of the samples can be completely automated by computer control. Ninety percent of sheared DNA fragments fall within a twofold size distribution that is highly reproducible. Three parameters are critical: the flow geometry, the flow rate, and a minimum number of iterations. Shearing is reproducible over a wide range of temperatures, DNA concentrations, and initial DNA size. The cloning efficiency of the sheared DNA is very good even without end repair, the distribution of assembled sequences is random, and there is no sequence bias at the ends of sheared fragments that have been cloned. The instrument, called the Point–sink Shearer (PtS), has already been exported successfully to many other laboratories.
机译:已经开发了用于受控的随机DNA片段化的自动化,廉价,易于使用和可再现的技术。该技术基于点吸水动力,当注射泵将DNA样品压过一个小孔时,就会产生点水槽流体动力学。使用可商购的组件来降低仪器的成本和复杂性。优化设计以减少所需的样品量并加快处理时间。样品的剪切可以通过计算机控制完全自动化。 90%的剪切DNA片段处于高度可再现的两倍大小分布内。三个参数至关重要:流动的几何形状,流速和最小的迭代次数。在很宽的温度,DNA浓度和初始DNA大小范围内均可进行剪切。即使没有末端修复,剪切的DNA的克隆效率也非常好,装配的序列的分布是随机的,并且在已克隆的剪切片段的末端没有序列偏倚。该仪器被称为点沉式采煤机(PtS),现已成功出口到许多其他实验室。

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