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The careg element reveals a common regulation of regeneration in the zebrafish myocardium and fin

机译:该careg元素揭示了斑马鱼心肌和鳍中再生的共同规律。

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摘要

The existence of common mechanisms regulating organ regeneration is an intriguing concept. Here we report on a regulatory element that is transiently activated during heart and fin regeneration in zebrafish. This element contains a ctgfa upstream sequence, called careg, which is induced by TGFβ/Activin-β signalling in the peri-injury zone of the myocardium and the fin mesenchyme. In addition, this reporter demarcates a primordial cardiac layer and intraray osteoblasts. Using genetic fate mapping, we show the regenerative competence of careg-expressing cells. The analysis of the heart reveals that the primordial cardiac layer is incompletely restored after cryoinjury, whereas trabecular and cortical cardiomyocytes contribute to myocardial regrowth. In regenerating fins, the activated mesenchyme of the stump gives rise to the blastema. Our findings provide evidence of a common regenerative programme in cardiomyocytes and mesenchyme that opens the possibility to further explore conserved mechanisms of the cellular plasticity in diverse vertebrate organs.
机译:调节器官再生的共同机制的存在是一个有趣的概念。在这里,我们报告了在斑马鱼的心脏和鳍再生期间被短暂激活的调控元件。该元件包含称为careg的ctgfa上游序列,该序列由心肌和鳍间充质的周围损伤区域中的TGFβ/激活素-β信号传导诱导。此外,本报导者划定了原始心脏层和射线内成骨细胞的界限。使用遗传命运图谱,我们显示了表达careg的细胞的再生能力。心脏分析显示,冷冻损伤后原始心脏层未完全恢复,而小梁和皮质心肌细胞促成心肌再生。在再生鳍中,残端的活化的间充质引起胚泡。我们的发现提供了心肌细胞和间充质中常见的再生程序的证据,这为进一步探索各种脊椎动物器官中细胞可塑性的保守机制提供了可能性。

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