Horton Brooke N, Kumar Anuj
Department of Molecular, Cellular, and Developmental Biology, University of Michigan, Ann Arbor, MI, 48109-1048, USA.
Methods Mol Biol. 2015;1279:125-35. doi: 10.1007/978-1-4939-2398-4_8.
Transposon-based mutagenesis is an effective method for genetic screening on a genome-wide scale, with particular applicability in organisms possessing compact genomes where transforming DNA tends to integrate by homologous recombination. Methods for transposon mutagenesis have been applied with great success in the budding yeast Saccharomyces cerevisiae and in the related pathogenic yeast Candida albicans. In C. albicans, we have implemented transposon mutagenesis to generate heterozygous mutations for the analysis of complex haploinsufficiency, a type of synthetic genetic interaction wherein a pair of non-complementing heterozygous mutations results in a stronger phenotype then either individual mutation in isolation. Genes exhibiting complex haploinsufficiency typically function within a regulatory pathway, in parallel pathways, or in parallel branches within a single pathway. Here, we present protocols to implement transposon mutagenesis for complex haploinsufficiency screening in C. albicans, indicating methods for transposon construction, mutagenesis, phenotypic screening, and identification of insertion sites in strains of interest. In total, the approach is a useful means to implement large-scale synthetic genetic screening in the diploid C. albicans.
基于转座子的诱变是一种在全基因组范围内进行遗传筛选的有效方法,特别适用于基因组紧凑的生物体,在这类生物体中,转化DNA倾向于通过同源重组进行整合。转座子诱变方法已在芽殖酵母酿酒酵母和相关致病酵母白色念珠菌中取得了巨大成功。在白色念珠菌中,我们已实施转座子诱变以产生杂合突变,用于分析复杂的单倍体不足,这是一种合成遗传相互作用,其中一对非互补杂合突变导致的表型比单独的任何一个突变更强。表现出复杂单倍体不足的基因通常在调控途径、平行途径或单个途径内的平行分支中发挥作用。在这里,我们介绍了在白色念珠菌中实施转座子诱变以进行复杂单倍体不足筛选的方案,包括转座子构建、诱变、表型筛选以及在感兴趣菌株中鉴定插入位点的方法。总的来说,该方法是在二倍体白色念珠菌中进行大规模合成遗传筛选的有用手段。