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Head regeneration in hemichordates is not a strict recapitulation of development

机译:半草酸盐中的头部再生并不是对发育的严格概括

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Background: Head or anterior body part regeneration is commonly associated with protostome, but not deuterostome invertebrates. However, it has been shown that the solitary hemichordate Ptychodera flava possesses the remarkable capacity to regenerate their entire nervous system, including their dorsal neural tube and their anterior head-like structure, or proboscis. Hemichordates, also known as acorn worms, are marine invertebrate deuterostomes that have retained chordate traits that were likely present in the deuterostome ancestor, placing these animals in a vital position to study regeneration and chordate evolution. All acorn worms have a tripartite body plan, with an anterior proboscis, middle collar region, and a posterior trunk. The collar houses a hollow, dorsal neural tube in ptychoderid hemichordates and numerous chordate genes involved in brain and spinal cord development are expressed in a similar anterior-posterior spatial arrangement along the body axis. Results: We have examined anterior regeneration in the hemichordate Ptychodera flava and report the spatial and temporal morphological changes that occur. Additionally, we have sequenced, assembled, and analyzed the transcriptome for eight stages of regenerating P. flava, revealing significant differential gene expression between regenerating and control animals. Conclusions: Importantly, we have uncovered developmental steps that are regeneration-specific and do not strictly follow the embryonic program. Developmental Dynamics 245:1159-1175, 2016. (c) 2016 The Authors. Developmental Dynamics published by Wiley Periodicals, Inc. on behalf of American Association of Anatomists
机译:背景:头部或身体前部的再生通常与原生动物相关,而与氘骨无脊椎动物无关。然而,已经表明,孤立的半酸盐类Ptychodera flava具有显着的能力来再生其整个神经系统,包括其背神经管和其前部头状结构或长鼻。半酸盐,也被称为橡子蠕虫,是海洋无脊椎动物氘代动物,具有保留在氘代动物祖先中可能存在的氯酸盐特征,使这些动物处于研究再生和脊索动物进化的重要位置。所有的橡子虫都有一个三方的身体计划,有一个长鼻,中间的颈圈区域和一个后躯干。衣领中有一个空心的,背侧神经管,其分布在球状鳞茎中,沿大脑轴的前后空间排列方式表达了许多与大脑和脊髓发育有关的胆酸盐基因。结果:我们检查了半透明的Ptychodera flava的前部再生,并报告了发生的时空形态变化。此外,我们已经测序,组装和分析转录组的八个阶段的再生P. flava,揭示了再生和对照动物之间的显着差异基因表达。结论:重要的是,我们发现了发育步骤,这些步骤是再生特异性的,并不严格遵循胚胎程序。 Developmental Dynamics 245:1159-1175,2016.(c)2016作者。 Wiley Periodicals,Inc.代表美国解剖学家协会出版的《发展动力学》

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