Office of the Vice President for Research, Northern Arizona University, Flagstaff, AZ 86011, USA.
Department of Biological Sciences, Northern Arizona University, Flagstaff, AZ 86011, USA.
Int J Mol Sci. 2021 Mar 27;22(7):3472. doi: 10.3390/ijms22073472.
Forward genetic screens have shown the consequences of deleterious mutations; however, they are best suited for model organisms with fast reproductive rates and large broods. Furthermore, investigators must faithfully identify changes in phenotype, even if subtle, to realize the full benefit of the screen. Reverse genetic approaches also probe genotype to phenotype relationships, except that the genetic targets are predefined. Until recently, reverse genetic approaches relied on non-genomic gene silencing or the relatively inefficient, homology-dependent gene targeting for loss-of-function generation. Fortunately, the flexibility and simplicity of the clustered regularly interspaced short palindromic repeats (CRISPR)/Cas system has revolutionized reverse genetics, allowing for the precise mutagenesis of virtually any gene in any organism at will. The successful integration of insertions/deletions (INDELs) and nonsense mutations that would, at face value, produce the expected loss-of-function phenotype, have been shown to have little to no effect, even if other methods of gene silencing demonstrate robust loss-of-function consequences. The disjunction between outcomes has raised important questions about our understanding of genotype to phenotype and highlights the capacity for compensation in the central dogma. This review describes recent studies in which genomic compensation appears to be at play, discusses the possible compensation mechanisms, and considers elements important for robust gene loss-of-function studies.
正向遗传学筛选揭示了有害突变的后果;然而,它们最适合于具有快速繁殖率和大种群的模式生物。此外,研究人员必须忠实地识别表型变化,即使是细微的变化,才能充分利用筛选结果。反向遗传学方法也探究基因型与表型的关系,但遗传靶标是预先定义的。直到最近,反向遗传学方法还依赖于非基因组基因沉默或相对低效的同源依赖性基因靶向作用来实现功能丧失。幸运的是,CRISPR/Cas 系统的灵活性和简单性彻底改变了反向遗传学,允许在任何生物体中随意精确诱变几乎任何基因。已经证明,插入/缺失 (INDEL) 和无义突变的成功整合,从表面上看,会产生预期的功能丧失表型,但几乎没有影响,即使其他基因沉默方法显示出强大的功能丧失后果。这种结果的脱节提出了关于我们对基因型与表型的理解的重要问题,并强调了中心法则中补偿的能力。这篇综述描述了最近的研究,其中基因组补偿似乎在起作用,讨论了可能的补偿机制,并考虑了稳健的基因功能丧失研究的重要因素。