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首页> 外文期刊>Eukaryotic cell >Identification of Essential Genes in the Human Fungal Pathogen Aspergillus fumigatus by Transposon Mutagenesis
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Identification of Essential Genes in the Human Fungal Pathogen Aspergillus fumigatus by Transposon Mutagenesis

机译:转座子诱变鉴定人类真菌病原烟曲霉中的必需基因

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The opportunistic pathogen Aspergillus fumigatus is the most frequent cause of deadly airborne fungal infections in developed countries. In order to identify novel antifungal-drug targets, we investigated the genome of A. fumigatus for genes that are necessary for efficient fungal growth. An artificial A. fumigatus diploid strain with one copy of an engineered impala160 transposon from Fusarium oxysporum integrated into its genome was used to generate a library of diploid strains by random in vivo transposon mutagenesis. Among 2,386 heterozygous diploid strains screened by parasexual genetics, 1.2% had a copy of the transposable element integrated into a locus essential for A. fumigatus growth. Comparison of genomic sequences flanking impala160 in these mutants with that of the genome of A. fumigatus allowed the characterization of 20 previously uncharacterized A. fumigatus genes. Among these, homologues of genes essential for Saccharomyces cerevisiae growth have been identified, as well as genes that do not have homologues in other fungal species. These results confirm that heterologous transposition using the transposable element impala is a powerful tool for functional genomics in ascomycota, and they pave the way for defining the complete set of essential genes in A. fumigatus, the first step toward target-based development of new antifungal drugs.
机译:机会病原体烟曲霉是发达国家中致命的空气传播性真菌感染的最常见原因。为了鉴定新型的抗真菌药物靶标,我们研究了 A的基因组。烟熏表示有效真菌生长所需的基因。人工 A。烟曲霉二倍体菌株及其基因组中整合了一个来自 Fusarium oxysporum 的工程化 impala160 转座子的拷贝,用于通过体内随机转座子生成二倍体菌株库诱变。在通过双性恋遗传学筛选的2,386个杂合二倍体菌株中,有1.2%的转座因子拷贝整合到了 A必需的基因座中。烟熏生长。这些突变体中 impala160 侧翼的基因组序列与 A基因组序列的比较。烟熏允许表征20种以前未表征的 A。烟基因。在这些当中,已经鉴定出酿酒酵母生长必需的基因的同源物,以及在其他真菌物种中没有同源物的基因。这些结果证实,使用转座子 impala 进行异源转座是子囊菌功能基因组学的强大工具,它们为定义 A中完整的必需基因集铺平了道路。烟气,这是基于目标的新抗真菌药物开发的第一步。

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