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Enhancement of somatic intrachromosomal homologous recombination in Arabidopsis by the HO endonuclease.

机译:HO内切核酸酶增强拟南芥中的体细胞染色体内同源重组。

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摘要

The HO endonuclease promotes gene conversion between mating-type alleles in yeast by a DNA double-strand break at the site of conversion (the MAT-Y/Z site). As a first step toward understanding the molecular basis of homologous recombination in higher plants, we demonstrate that expression of HO in Arabidopsis enhances intrachromosomal recombination between inverted repeats of two defective beta-glucuronidase (gus) genes (GUS- test construct). One of these genes has the Y/Z site. The two genes share 2.5 kb of DNA sequence homology around the HO cut site. Somatic recombination between the two repeats was determined by using a histochemical assay of GUS activity. The frequency of Gus+ sectors in leaves of F1 plants from a cross between parents homozygous for the GUS- test construct and HO, respectively, was 10-fold higher than in F1 plants from a cross between the same plant containing the GUS- test construct and a wild-type parent. Polymerase chain reaction analysis showed restoration of the 5' end of the GUS gene in recombinant sectors. The induction of intrachromosomal gene conversion in Arabidopsis by HO reveals the general utility of site-specific DNA endonucleases in producing targeted homologous recombination in plant genomes.
机译:HO内切核酸酶通过在转化位点(MAT-Y / Z位点)的DNA双链断裂促进酵母中交配型等位基因之间的基因转化。作为了解高等植物同源重组分子基础的第一步,我们证明了拟南芥中HO的表达增强了两个缺陷性β-葡糖醛酸糖苷酶(gus)基因(GUS测试构建体)的反向重复序列之间的染色体内重组。这些基因之一具有Y / Z位点。这两个基因在HO切割位点附近共享2.5 kb的DNA序列同源性。通过使用GUS活性的组织化学测定法确定两个重复之间的体细胞重组。对于GUS-test构建体和HO而言,纯合子亲本杂交后的F1植物叶片中Gus +区段的频率分别比包含GUS-test构建体和HO的相同植物杂交时的F1植物中的Gus +区段高10倍。野生型父母。聚合酶链反应分析显示在重组区段中GUS基因的5'末端的恢复。 HO对拟南芥中染色体内基因转化的诱导揭示了位点特异性DNA核酸内切酶在植物基因组中产生靶向同源重组中的一般用途。

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