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Technique of laser chromosome welding for chromosome repair and artificial chromosome creation

机译:激光染色体焊接技术用于染色体修复和人工染色体创建

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摘要

Here we report a technique of laser chromosome welding that uses a violet pulse laser micro-beam for welding. The technique can integrate any size of a desired chromosome fragment into recipient chromosomes by combining with other techniques of laser chromosome manipulation such as chromosome cutting, moving, and stretching. We demonstrated that our method could perform chromosomal modifications with high precision, speed and ease of use in the absence of restriction enzymes, DNA ligases and DNA polymerases. Unlike the conventional methods such as de novo artificial chromosome synthesis, our method has no limitation on the size of the inserted chromosome fragment. The inserted DNA size can be precisely defined and the processed chromosome can retain its intrinsic structure and integrity. Therefore, our technique provides a high quality alternative approach to directed genetic recombination, and can be used for chromosomal repair, removal of defects and artificial chromosome creation. The technique may also have applicability on the manipulation and extension of large pieces of synthetic DNA.
机译:在这里,我们报告了一种使用紫光脉冲激光微束进行焊接的激光染色体焊接技术。通过与激光染色体操作的其他技术(例如染色体切割,移动和拉伸)结合,该技术可以将任意大小的所需染色体片段整合到受体染色体中。我们证明了我们的方法可以在不存在限制酶,DNA连接酶和DNA聚合酶的情况下,以高精度,高速度和易用性进行染色体修饰。与传统的方法(例如从头人工染色体合成)不同,我们的方法对插入的染色体片段的大小没有限制。插入的DNA大小可以精确定义,并且加工后的染色体可以保留其固有结构和完整性。因此,我们的技术为定向基因重组提供了高质量的替代方法,可用于染色体修复,缺陷清除和人工染色体创建。该技术还可用于合成DNA大片段的操纵和延伸。

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