首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Multiple-complete-digest restriction fragment mapping: Generating sequence-ready maps for large-scale DNA sequencing
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Multiple-complete-digest restriction fragment mapping: Generating sequence-ready maps for large-scale DNA sequencing

机译:多个完全消化的限制性片段图谱:生成用于大型DNA测序的序列就绪图谱

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摘要

Multiple-complete-digest mapping is a DNA mapping technique based on complete-restriction-digest fingerprints of a set of clones that provides highly redundant coverage of the mapping target. The maps assembled from these fingerprints order both the clones and the restriction fragments. Maps are coordinated across three enzymes in the examples presented. Starting with yeast artificial chromosome contigs from the 7q31.3 and 7p14 regions of the human genome, we have produced cosmid-based maps spanning more than one million base pairs. Each yeast artificial chromosome is first subcloned into cosmids at a redundancy of ×15–30. Complete-digest fragments are electrophoresed on agarose gels, poststained, and imaged on a fluorescent scanner. Aberrant clones that are not representative of the underlying genome are rejected in the map construction process. Almost every restriction fragment is ordered, allowing selection of minimal tiling paths with clone-to-clone overlaps of only a few thousand base pairs. These maps demonstrate the practicality of applying the experimental and software-based steps in multiple-complete-digest mapping to a target of significant size and complexity. We present evidence that the maps are sufficiently accurate to validate both the clones selected for sequencing and the sequence assemblies obtained once these clones have been sequenced by a “shotgun” method.
机译:多重完全消化图谱是一种DNA定位技术,它基于一组克隆的完全限制性消化图谱指纹,这些指纹提供了高度冗余的覆盖图靶。由这些指纹组装而成的图谱对克隆和限制性片段进行排序。在给出的实施例中,图谱在三种酶之间协调。从人类基因组7q31.3和7p14区域的酵母人工染色体重叠群开始,我们已经产生了基于粘粒的图谱,涵盖了超过一百万个碱基对。每个酵母人工染色体首先被亚克隆到粘粒中,冗余度为15–30。完全消化的片段在琼脂糖凝胶上电泳,后染色,并在荧光扫描仪上成像。不代表基础基因组的异常克隆在图谱构建过程中被拒绝。几乎每个限制片段都是有序的,从而允许选择具有几千个碱基对的克隆到克隆重叠的最小拼接路径。这些图展示了在多个完全消化的映射中将实验步骤和基于软件的步骤应用于具有较大大小和复杂性的目标的实用性。我们提供的证据表明,这些图谱足够准确,足以验证选择用于测序的克隆以及通过“ shot弹枪”方法对这些克隆进行测序后获得的序列装配。

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