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A simple and effective chromosome modification method for large-scale deletion of genome sequences and identification of essential genes in fission yeast

机译:一种简单有效的染色体修饰方法,用于大规模删除基因组序列和鉴定裂殖酵母中的必需基因

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摘要

The technologies for chromosome modification developed to date are not satisfactorily universal, owing to the typical requirements for special enzymes and sequences. In the present report, we propose a new approach for chromosome modification in Schizosaccharomyces pombe that does not involve any special enzymes or sequences. This method, designated the 'Latour system', has wide applicability with extremely high efficiency, although both the basic principle and the operation are very simple. We demonstrate the ability of the Latour system to discriminate essential genes, with a long chromosomal area of 100 kb containing 33 genes deleted simultaneously and efficiently. Since no foreign sequences are retained after deletion using the Latour system, this system can be repeatedly applied at other sites. Provided that a negative selectable marker is available, the Latour system relies solely upon homologous recombination, which is highly conserved in living organisms. For this reason, it is expected that the system will be applicable to various yeasts.
机译:由于特殊酶和序列的典型要求,迄今为止开发的染色体修饰技术不能令人满意地普及。在本报告中,我们提出了一种新的修饰裂殖酵母的染色体的方法,该方法不涉及任何特殊的酶或序列。尽管基本原理和操作都非常简单,但这种方法被称为“ Latour系统”,具有广泛的适用性和极高的效率。我们证明了拉图尔系统区分基本基因的能力,具有100 kb的长染色体区域,其中包含同时有效地删除的33个基因。由于使用Latour系统删除后没有保留任何外源序列,因此该系统可以在其他位点重复使用。只要有一个阴性选择标记,拉图尔系统就完全依赖于同源重组,而同源重组在生物中是高度保守的。因此,预期该系统将适用于各种酵母。

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