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The regeneration blastema of lizards: an amniote model for the study of appendage replacement

机译:蜥蜴的再生母细胞:羊膜模型用于阑尾置换的研究

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摘要

Although amniotes (reptiles, including birds, and mammals) are capable of replacing certain tissues, complete appendage regeneration is rare. Perhaps the most striking example is the lizard tail. Tail loss initiates a spontaneous epimorphic (blastema‐mediated) regenerative program, resulting in a fully functional but structurally non‐identical replacement. Here we review lizard tail regeneration with a particular focus on the blastema. In many lizards, the original tail has evolved a series of fracture planes, anatomical modifications that permit the tail to be self‐detached or autotomized. Following tail loss, the wound site is covered by a specialized wound epithelium under which the blastema develops. An outgrowth of the spinal cord, the ependymal tube, plays a key role in governing growth (and likely patterning) of the regenerate tail. In some species (e.g., geckos), the blastema forms as an apical aggregation of proliferating cells, similar to that of urodeles and teleosts. For other species (e.g., anoles) the identification of a proliferative blastema is less obvious, suggesting an unexpected diversity in regenerative mechanisms among tail‐regenerating lizards.
机译:尽管羊膜动物(包括鸟类和哺乳动物在内的爬行动物)能够替代某些组织,但是完整的肢体再生却很少。也许最醒目的例子是蜥蜴尾巴。尾巴脱落会启动自发的上胚性(胚芽介导的)再生程序,从而导致功能齐全但结构上不完全相同的替换。在这里,我们回顾了蜥蜴尾巴的再生,尤其着眼于胚泡。在许多蜥蜴中,原始的尾巴已经演化出一系列骨折平面,其解剖学上的改变使尾巴能够自分离或自动切开。失去尾巴后,伤口部位被特殊的伤口上皮所覆盖,在其下形成了胚细胞。脊髓的生长物,室管,在控制再生尾巴的生长(和可能的模式)中起关键作用。在某些物种(例如壁虎)中,胚泡形成为增殖细胞的顶端聚集体,类似于小鳍和硬骨鱼的胚泡。对于其他物种(例如,Anoles),增生性胚瘤的鉴定不太明显,这表明在尾部再生蜥蜴的再生机制中出乎意料的多样性。

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