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首页> 外文期刊>World Journal of Microbiology & Biotechnology >An efficient gene disruption method using a positive-negative split-selection marker and Agrobacterium tumefaciens-mediated transformation for Nomuraea rileyi
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An efficient gene disruption method using a positive-negative split-selection marker and Agrobacterium tumefaciens-mediated transformation for Nomuraea rileyi

机译:一种高效的基因破坏方法,使用阳性阴性分裂标记和土壤杆菌介导的Nomuraea Rileyi转化

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Targeted gene disruption via Agrobacterium tumefaciens-mediated transformation (ATMT) and homologous recombination is the most common method used to identify and investigate the functions of genes in fungi. However, the gene disruption efficiency of this method is low due to ectopic integration. In this study, a high-efficiency gene disruption strategy based on ATMT and the split-marker method was developed for use in Nomuraea rileyi. The beta-glucuronidase (gus) gene was used as a negative selection marker to facilitate the screening of putative transformants. We assessed the efficacy of this gene disruption method using the NrCat1, NrCat4, and NrPex16 genes and found that the targeting efficiency was between 36.2 and 60.7%, whereas the targeting efficiency using linear cassettes was only 1.0-4.2%. The efficiency of negative selection assays was between 64.1 and 82.3%. Randomly selected deletion mutants exhibited a single copy of the hph cassette. Therefore, high-throughput gene disruption could be possible using the split-marker method and the majority of ectopic integration transformants can be eliminated using negative selection markers. This study provides a platform to study the function of genes in N. rileyi.
机译:靶向基因破坏通过土壤杆菌癌介导的转化(ATMT)和同源重组是用于鉴定和研究真菌基因的功能的最常见方法。然而,由于异位整合,该方法的基因破坏效率低。在本研究中,基于ATMT和分裂标记法的高效基因破坏策略用于Nomuraea Rileyi。 β-血糖醛酸酶(GUS)基因被用作负选择标记,以促进推定转化体的筛选。我们评估了使用NRCAT1,NRCAT4和NRPEX16基因的该基因破坏方法的功效,发现靶向效率在36.2和60.7%之间,而使用线性盒的靶向效率仅为1.0-4.2%。阴性选择测定的效率在64.1和82.3%之间。随机选择的删除突变体表现出HPH盒的单个拷贝。因此,可以使用分裂标记法可以使用高通量基因破坏,并且可以使用负选择标记消除大部分异位一体化转化体。本研究提供了研究基因在N. Rileyi的功能的平台。

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