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Spatially varying cis-regulatory divergence in Drosophila embryos elucidates cis-regulatory logic

机译:果蝇胚胎中空间变化的顺式调节差异阐明了顺式调节逻辑

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摘要

Spatial patterning of gene expression is a key process in development, yet how it evolves is still poorly understood. Both cis- and trans-acting changes could participate in complex interactions, so to isolate the cis-regulatory component of patterning evolution, we measured allele-specific spatial gene expression patterns in D. melanogaster × simulans hybrid embryos. RNA-seq of cryo-sectioned slices revealed 66 genes with strong spatially varying allele-specific expression. We found that hunchback, a major regulator of developmental patterning, had reduced expression of the D. simulans allele specifically in the anterior tip of hybrid embryos. Mathematical modeling of hunchback cis-regulation suggested a candidate transcription factor binding site variant, which we verified as causal using CRISPR-Cas9 genome editing. In sum, even comparing morphologically near-identical species we identified surprisingly extensive spatial variation in gene expression, suggesting not only that development is robust to many such changes, but also that natural selection may have ample raw material for evolving new body plans via changes in spatial patterning.
机译:基因表达的空间模式是发展的关键过程,但其发展方式仍知之甚少。顺式和反式变化都可能参与复杂的相互作用,因此,为了分离图案进化的顺式调控成分,我们测量了D. melanogaster×simulans杂种胚中的等位基因特异性空间基因表达模式。冷冻切片的RNA序列显示66个基因具有强烈的空间变化的等位基因特异性表达。我们发现驼背是发育模式的主要调节剂,它已经降低了拟南芥等位基因的表达,特别是在杂交胚胎的前尖端。驼背顺式调控的数学模型表明了候选转录因子结合位点变异,我们使用CRISPR-Cas9基因组编辑证实了其为因果关系。总之,即使比较形态上几乎相同的物种,我们也发现了基因表达中令人惊讶的广泛空间变化,这不仅表明发育对许多此类变化具有鲁棒性,而且还表明自然选择可能具有充足的原材料,可通过改变人类身体计划来发展新的身体计划。空间图案。

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