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利用进化重演实验探索局部遗传相互作用网络。

Exploring a Local Genetic Interaction Network Using Evolutionary Replay Experiments.

机构信息

Department of Biological Sciences, Lehigh University, Bethlehem, PA, USA.

出版信息

Mol Biol Evol. 2021 Jul 29;38(8):3144-3152. doi: 10.1093/molbev/msab087.

Abstract

Understanding how genes interact is a central challenge in biology. Experimental evolution provides a useful, but underutilized, tool for identifying genetic interactions, particularly those that involve non-loss-of-function mutations or mutations in essential genes. We previously identified a strong positive genetic interaction between specific mutations in KEL1 (P344T) and HSL7 (A695fs) that arose in an experimentally evolved Saccharomyces cerevisiae population. Because this genetic interaction is not phenocopied by gene deletion, it was previously unknown. Using "evolutionary replay" experiments, we identified additional mutations that have positive genetic interactions with the kel1-P344T mutation. We replayed the evolution of this population 672 times from six timepoints. We identified 30 populations where the kel1-P344T mutation reached high frequency. We performed whole-genome sequencing on these populations to identify genes in which mutations arose specifically in the kel1-P344T background. We reconstructed mutations in the ancestral and kel1-P344T backgrounds to validate positive genetic interactions. We identify several genetic interactors with KEL1, we validate these interactions by reconstruction experiments, and we show these interactions are not recapitulated by loss-of-function mutations. Our results demonstrate the power of experimental evolution to identify genetic interactions that are positive, allele specific, and not readily detected by other methods, shedding light on an underexplored region of the yeast genetic interaction network.

摘要

理解基因如何相互作用是生物学中的一个核心挑战。实验进化提供了一种有用但未充分利用的工具,可用于识别遗传相互作用,特别是那些涉及非功能丧失突变或必需基因突变的相互作用。我们之前在实验进化的酿酒酵母群体中发现了 KEL1(P344T)和 HSL7(A695fs)特定突变之间的强烈正遗传相互作用。由于这种遗传相互作用不能被基因缺失模拟,因此以前是未知的。使用“进化重演”实验,我们鉴定了与 kel1-P344T 突变具有正遗传相互作用的其他突变。我们从六个时间点对该群体进行了 672 次重演进化实验。我们鉴定了 30 个 kel1-P344T 突变达到高频率的群体。我们对这些群体进行了全基因组测序,以鉴定在 kel1-P344T 背景下特异性出现突变的基因。我们在祖先和 kel1-P344T 背景中重建了突变,以验证正遗传相互作用。我们确定了几个与 KEL1 相互作用的遗传交互器,通过重建实验验证了这些相互作用,并表明这些相互作用不能通过功能丧失突变来再现。我们的研究结果证明了实验进化在鉴定阳性、等位特异性且不易被其他方法检测到的遗传相互作用方面的强大功能,揭示了酵母遗传相互作用网络中一个未被充分探索的区域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c44/8321538/281d668a2b1b/msab087f1.jpg

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