首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Genetic Manipulation of the Plant Pathogen Ustilago maydis to Study Fungal Biology and Plant Microbe Interactions
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Genetic Manipulation of the Plant Pathogen Ustilago maydis to Study Fungal Biology and Plant Microbe Interactions

机译:植物病原菌Utilago maydis的遗传操纵以研究真菌生物学和植物微生物的相互作用

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摘要

Gene deletion plays an important role in the analysis of gene function. One of the most efficient methods to disrupt genes in a targeted manner is the replacement of the entire gene with a selectable marker via homologous recombination. During homologous recombination, exchange of DNA takes place between sequences with high similarity. Therefore, linear genomic sequences flanking a target gene can be used to specifically direct a selectable marker to the desired integration site. Blunt ends of the deletion construct activate the cell's DNA repair systems and thereby promote integration of the construct either via homologous recombination or by non-homologous-end-joining. In organisms with efficient homologous recombination, the rate of successful gene deletion can reach more than 50% making this strategy a valuable gene disruption system. The smut fungus Ustilago maydis is a eukaryotic model microorganism showing such efficient homologous recombination. Out of its about 6,900 genes, many have been functionally characterized with the help of deletion mutants, and repeated failure of gene replacement attempts points at essential function of the gene. Subsequent characterization of the gene function by tagging with fluorescent markers or mutations of predicted domains also relies on DNA exchange via homologous recombination. Here, we present the U. maydis strain generation strategy in detail using the simplest example, the gene deletion.
机译:基因缺失在基因功能分析中起着重要作用。以靶向方式破坏基因的最有效方法之一是通过同源重组将整个基因替换为选择标记。在同源重组过程中,DNA之间的交换具有高度相似性。因此,位于靶基因两侧的线性基因组序列可用于将选择标记特异性地引导至所需的整合位点。缺失构建体的平末端激活细胞的DNA修复系统,从而通过同源重组或通过非同源末端连接促进构建体的整合。在具有有效同源重组的生物中,成功的基因删除率可以达到50%以上,从而使该策略成为有价值的基因破坏系统。黑穗病菌Ustilago maydis是一种真核模型微生物,显示出这种有效的同源重组。在其大约6,900个基因中,有许多已在缺失突变体的帮助下进行了功能表征,而基因替换尝试的反复失败指出了该基因的基本功能。通过用荧光标记物标记或预测结构域的突变来标记基因功能的后续特征,也依赖于通过同源重组进行的DNA交换。在这里,我们使用最简单的示例(基因删除)详细介绍美人种菌株的生成策略。

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