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Quantitative genome-wide enhancer activity maps for five Drosophila species show functional enhancer conservation and turnover during cis-regulatory evolution

机译:五个果蝇物种的全基因组定量增强子活性图显示了顺式调控进化过程中功能性增强子的保守和更新

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摘要

Phenotypic differences between closely related species are thought to arise primarily from changes in gene expression due to mutations in cis-regulatory sequences (enhancers). However, it has remained unclear how frequently mutations alter enhancer activity or create functional enhancers de novo. Here we use STARR-seq, a recently developed quantitative enhancer assay, to determine genome-wide enhancer activity profiles for five Drosophila species in the constant trans-regulatory environment of Drosophila melanogaster S2 cells. We find that the functions of a large fraction of D. melanogaster enhancers are conserved for their orthologous sequences owing to selection and stabilizing turnover of transcription factor motifs. Moreover, hundreds of enhancers have been gained since the D. melanogaster–Drosophila yakuba split about 11 million years ago without apparent adaptive selection and can contribute to changes in gene expression in vivo. Our finding that enhancer activity is often deeply conserved and frequently gained provides functional insights into regulatory evolution.
机译:人们认为,密切相关物种之间的表型差异主要是由于顺式调控序列(增强子)突变而引起的基因表达变化。然而,尚不清楚突变多久改变一次增强子活性或从头产生功能性增强子。在这里,我们使用STARR-seq(一种最近开发的定量增强子测定法)来确定果蝇S2细胞在恒定反调节环境中五个果蝇物种的全基因组增强子活性谱。我们发现,由于选择和稳定转录因子基序的转换,大部分D. melanogaster增强子的功能因其直系同源序列而被保守。此外,自黑腹果蝇-Drosophila yakuba分裂大约1100万年前以来,已经获得了数百种增强剂,而没有明显的适应性选择,并且可以促进体内基因表达的变化。我们的发现促进剂活性通常被深深地保存并经常获得,这为调节进化提供了功能上的见解。

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