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A conserved Shh cis-regulatory module highlights a common developmental origin of unpaired and paired fins

机译:保守的Shh顺式调节模块突出了未配对和配对鳍的共同发育起源

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摘要

Despite their evolutionary, developmental, and functional importance the origin of vertebrate paired appendages remains uncertain. In mice, a single enhancer termed ZRS is solely responsible for Shh expression in limbs. Here, zebrafish and mouse transgenic assays trace the functional equivalence of ZRS across the gnathostome phylogeny. CRISPR/Cas9-mediated deletion of the medaka-ZRS and enhancer assays reveal the existence of ZRS shadow enhancers in both teleost and human genomes. Deletion of both ZRS and shadow ZRS abolish shh expression and completely truncate pectoral fin formation. Strikingly, deletion of ZRS results in an almost complete ablation of the dorsal fin. This finding indicates that a ZRS-Shh regulatory module is shared by paired and median fins, and that paired fins likely emerged by the co‐option of developmental programs established in the median fins of stem gnathostomes. Shh function was later reinforced in pectoral fin development with the recruitment of shadow enhancers, conferring additional robustness.
机译:尽管它们具有进化,发展和功能上的重要性,但脊椎动物配对附件的起源仍然不确定。在小鼠中,称为ZRS的单一增强剂仅负责肢体Shh表达。在这里,斑马鱼和小鼠转基因检测可追溯到整个gnathostome系统发育中ZRS的功能等效性。 CRISPR / Cas9介导的medaka-ZRS缺失和增强子检测揭示了硬骨鱼和人类基因组中ZRS阴影增强子的存在。 ZRS和阴影ZRS的删除均取消了shh表达,并完全截断了胸鳍的形成。令人惊讶的是,ZRS的缺失导致背鳍几乎完全消融。这一发现表明,成对的鳍和中鳍共享一个ZRS-Shh调节模块,而成对的鳍可能是由在干咬足动物的成鳍中建立的发展计划的共同选择而出现的。 Shh功能后来通过募集阴影增强剂而在胸鳍发育中得到增强,从而增强了鲁棒性。

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