Regulatory and Systems Genomics, Earlham Institute (EI), Norwich, UK.
Bioinformatics Department, Silence Therapeutics GmbH, Robert-Rössle-Straße 10, Germany.
Mol Biol Evol. 2022 Jul 2;39(7). doi: 10.1093/molbev/msac146.
The divergence of regulatory regions and gene regulatory network (GRN) rewiring is a key driver of cichlid phenotypic diversity. However, the contribution of miRNA-binding site turnover has yet to be linked to GRN evolution across cichlids. Here, we extend our previous studies by analyzing the selective constraints driving evolution of miRNA and transcription factor (TF)-binding sites of target genes, to infer instances of cichlid GRN rewiring associated with regulatory binding site turnover. Comparative analyses identified increased species-specific networks that are functionally associated to traits of cichlid phenotypic diversity. The evolutionary rewiring is associated with differential models of miRNA- and TF-binding site turnover, driven by a high proportion of fast-evolving polymorphic sites in adaptive trait genes compared with subsets of random genes. Positive selection acting upon discrete mutations in these regulatory regions is likely to be an important mechanism in rewiring GRNs in rapidly radiating cichlids. Regulatory variants of functionally associated miRNA- and TF-binding sites of visual opsin genes differentially segregate according to phylogeny and ecology of Lake Malawi species, identifying both rewired, for example, clade-specific and conserved network motifs of adaptive trait associated GRNs. Our approach revealed several novel candidate regulators, regulatory regions, and three-node motifs across cichlid genomes with previously reported associations to known adaptive evolutionary traits.
调控区域和基因调控网络(GRN)的分化是丽鱼科鱼类表型多样性的关键驱动因素。然而,miRNA 结合位点的转变对丽鱼科鱼类 GRN 进化的贡献尚未被联系起来。在这里,我们通过分析驱动 miRNA 和靶基因转录因子(TF)结合位点进化的选择约束,扩展了我们之前的研究,以推断与调控结合位点转变相关的丽鱼科 GRN 重排实例。比较分析确定了增加的种特异性网络,这些网络与丽鱼科鱼类表型多样性的特征功能相关。进化重排与 miRNA 和 TF 结合位点转变的不同模型有关,这是由适应性特征基因中快速进化的多态性位点与随机基因子集相比的高比例驱动的。在这些调控区域中的离散突变上的正选择可能是快速辐射的丽鱼科鱼类中重排 GRN 的重要机制。视觉视蛋白基因的功能相关 miRNA 和 TF 结合位点的调控变体根据马拉维湖物种的系统发育和生态情况差异分离,确定了重排的,例如,与适应性特征相关的 GRN 的特定于分支和保守的网络基序。我们的方法揭示了几个新的候选调节剂、调控区域和三个节点基序,这些在丽鱼科基因组中与先前报道的与已知适应性进化特征相关的基序有关。