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Molecular signaling in feather morphogenesis.

机译:羽毛形态发生中的分子信号传导。

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The development and regeneration of feathers have gained much attention recently because of progress in the following areas. First, pattern formation. The exquisite spatial arrangement provides a simple model for decoding the rules of morphogenesis. Second, stem cell biology. In every molting, a few stem cells have to rebuild the entire epithelial organ, providing much to learn on how to regenerate an organ physiologically. Third, evolution and development ('Evo-Devo'). The discovery of feathered dinosaur fossils in China prompted enthusiastic inquiries about the origin and evolution of feathers. Progress has been made in elucidating feather morphogenesis in five successive phases: macro-patterning, micro-patterning, intra-bud morphogenesis, follicle morphogenesis and regenerative cycling.
机译:由于在以下方面的进展,羽毛的开发和再生近来引起了很多关注。首先,图案形成。精致的空间排列为解码形态发生的规律提供了一个简单的模型。第二,干细胞生物学。在每次蜕皮中,一些干细胞必须重建整个上皮器官,这为如何在生理上再生器官提供了很多知识。第三,进化与发展(“ Evo-Devo”)。中国发现有羽毛的恐龙化石,引发了对羽毛起源和进化的热烈追问。在五个连续阶段阐明羽毛形态发生方面已取得进展:宏观模式,微观模式,芽内形态发生,卵泡形态发生和再生循环。

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