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一种用于在丝状子囊菌嗜热栖热放线菌中高效删除基因的两步方案。

A two-step protocol for efficient deletion of genes in the filamentous ascomycete Podospora anserina.

作者信息

Hamann Andrea, Krause Kristin, Werner Alexandra, Osiewacz Heinz D

机构信息

Biozentrum, Botanisches Institut, Marie-Curie-Str. 9, 60439, Frankfurt, Germany.

出版信息

Curr Genet. 2005 Oct;48(4):270-5. doi: 10.1007/s00294-005-0018-1. Epub 2005 Nov 4.

Abstract

Deletion of genes in Podospora anserina via conventional methods is an inefficient and time-consuming process since homologous recombination occurs normally only at low frequency (about 1%). To improve the efficiency of replacement, we adopted the two-step protocol developed for Aspergillus nidulans (Chaveroche et al. in Nucleic Acids Res 28:E97, 2000). As a prerequisite, a vector was generated containing a blasticidin resistance cassette for selection in the Escherichia coli host strain KS272 (pKOBEG) and a phleomycin resistance cassette for selection in P. anserina. A derivative of this vector, into which short ( approximately 250 bp) PCR-generated sequences flanking the gene to be deleted have been integrated, is introduced into the E. coli host strain which contains a cosmid with the gene of interest and long 5' and 3' flanking sequences. Subsequently, a cosmid is reisolated from E. coli in which the gene of interest is replaced by the resistance cassette. This construct is used to transform P. anserina. The long stretches flanking the resistance cassette facilitate recombination with homologous sequences in the fungal genome and increase the efficiency of gene deletion up to 100%. The procedure is not dependent on the availability of specific auxotrophic mutant strains and may be applicable to other fungi.

摘要

通过传统方法删除嗜热栖热放线菌中的基因是一个低效且耗时的过程,因为同源重组通常仅以低频率(约1%)发生。为了提高替换效率,我们采用了为构巢曲霉开发的两步法方案(Chaveroche等人,《核酸研究》28:E97,2000)。作为前提条件,构建了一个载体,其包含用于在大肠杆菌宿主菌株KS272中进行选择的杀稻瘟菌素抗性盒(pKOBEG)和用于在嗜热栖热放线菌中进行选择的博来霉素抗性盒。该载体的一个衍生物,其中整合了待删除基因两侧的短(约250 bp)PCR产生的序列,被引入到含有带有感兴趣基因以及长的5'和3'侧翼序列的黏粒的大肠杆菌宿主菌株中。随后,从大肠杆菌中重新分离出黏粒,其中感兴趣的基因被抗性盒所取代。该构建体用于转化嗜热栖热放线菌。抗性盒两侧的长片段促进了与真菌基因组中同源序列的重组,并将基因删除效率提高到100%。该方法不依赖于特定营养缺陷型突变菌株的可用性,并且可能适用于其他真菌。

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