Department of Genome Sciences, University of Washington, Seattle, Washington 98195, USA.
Molecular and Cellular Biology Program, University of Washington, Seattle, Washington 98195, USA.
Genome Res. 2019 Mar;29(3):396-406. doi: 10.1101/gr.232330.117. Epub 2019 Jan 11.
To understand how complex genetic networks perform and regulate diverse cellular processes, the function of each individual component must be defined. Comprehensive phenotypic studies of mutant alleles have been successful in model organisms in determining what processes depend on the normal function of a gene. These results are often ported to newly sequenced genomes by using sequence homology. However, sequence similarity does not always mean identical function or phenotype, suggesting that new methods are required to functionally annotate newly sequenced species. We have implemented comparative analysis by high-throughput experimental testing of gene dispensability in , a sister species of We created haploid and heterozygous diploid Tn7 insertional mutagenesis libraries in to identify species-dependent essential genes, with the goal of detecting genes with divergent functions and/or different genetic interactions. Comprehensive gene dispensability comparisons with predicted diverged dispensability at 12% of conserved orthologs, and validation experiments confirmed 22 differentially essential genes. Despite their differences in essentiality, these genes were capable of cross-species complementation, demonstrating that acting factors that are background-dependent contribute to differential gene essentiality. This study shows that direct experimental testing of gene disruption phenotypes across species can inform comparative genomic analyses and improve gene annotations. Our method can be widely applied in microorganisms to further our understanding of genome evolution.
为了了解复杂的遗传网络如何发挥作用并调节多种细胞过程,必须定义每个单个组件的功能。在模式生物中,对突变等位基因进行全面的表型研究已成功确定了哪些过程依赖于基因的正常功能。这些结果通常通过序列同源性被移植到新测序的基因组中。然而,序列相似性并不总是意味着相同的功能或表型,这表明需要新的方法来对新测序的物种进行功能注释。我们通过在 的姐妹种 中进行高通量实验测试基因可 dispensability 实施了比较分析。我们在 中创建了单倍体和杂合二倍体 Tn7 插入诱变文库,以鉴定物种特异性必需基因,目标是检测具有不同功能和/或不同遗传相互作用的基因。与 的综合基因 dispensability 比较预测保守直系同源物中有 12%的 dispensability 存在分歧,验证实验证实了 22 个差异必需基因。尽管它们在必需性上存在差异,但这些基因能够进行种间互补,表明依赖背景的作用因素导致基因必需性的差异。这项研究表明,跨物种直接测试基因敲除表型的实验可以为比较基因组分析提供信息,并改善基因注释。我们的方法可以广泛应用于微生物,以进一步了解基因组进化。