首页> 美国卫生研究院文献>Journal of Anatomy and Physiology >Is salamander hindlimb regeneration similar to that of the forelimb? Anatomical and morphogenetic analysis of hindlimb muscle regeneration in GFP-transgenic axolotls as a basis for regenerative and developmental studies
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Is salamander hindlimb regeneration similar to that of the forelimb? Anatomical and morphogenetic analysis of hindlimb muscle regeneration in GFP-transgenic axolotls as a basis for regenerative and developmental studies

机译:sal的后肢再生与前肢的再生相似吗? GFP转基因genic的后肢肌肉再生的解剖学和形态发生学分析作为再生和发育研究的基础

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摘要

The axolotl Ambystoma mexicanum is one of the most used model organisms in developmental and regenerative studies because it is commonly said that it can reconstitute a normal and fully functional forelimb/hindlimb after amputation. However, there is not a publication that has described in detail the regeneration of the axolotl hindlimb muscles. Here we describe and illustrate, for the first time, the regeneration of the thigh, leg and foot muscles in transgenic axolotls that express green fluorescent protein in muscle fibers and compare our results with data obtained by us and by other authors about axolotl forelimb regeneration and about fore-and hindlimb ontogeny in axolotls, frogs and other tetrapods. Our observations and comparisons point out that: (1) there are no muscle anomalies in any regenerated axolotl hindlimbs, in clear contrast to our previous study of axolotl forelimb regeneration, where we found muscle anomalies in 43% of the regenerated forelimbs; (2) during axolotl hindlimb regeneration there is a proximo-distal and a tibio-fibular morphogenetic gradient in the order of muscle regeneration and differentiation, but not a ventro-dorsal gradient, whereas our previous studies showed that in axolotl forelimb muscle regeneration there are proximo-distal, radio-ulnar and ventro-dorsal morphogenetic gradients. We discuss the broader implications of these observations for regenerative, evolutionary, developmental and morphogenetic studies.
机译:x虫Ambystoma mexicanum是发育和再生研究中最常用的模型生物之一,因为通常认为它可以在截肢后重建正常且功能齐全的前肢/后肢。但是,没有出版物详细描述a的后肢肌肉的再生。在这里,我们首次描述和说明了在肌肉纤维中表达绿色荧光蛋白的转基因a的大腿,腿和足部肌肉的再生,并将我们的结果与我们和其他作者获得的关于x前肢再生和关于a,青蛙和其他四足动物的前肢和后肢个体。我们的观察和比较指出:(1)任何再生的x后肢均无肌肉异常,这与我们先前对previous的前肢再生的研究形成鲜明对比,后者在43%的再生前肢中发现了肌肉异常; (2)在a的后肢再生过程中,按肌肉再生和分化的顺序存在一个近端-远端和一个胫腓骨形态发生梯度,而不是腹-背梯度,而我们以前的研究表明,在a的前肢肌肉中存在近端,尺骨和腹背的形态发生梯度。我们讨论了这些观察对再生,进化,发育和形态发生研究的更广泛意义。

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