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Developmental genetic bases behind the independent origin of the tympanic membrane in mammals and diapsids

机译:鼓膜和哺乳动物的鼓膜独立起源背后的发育遗传基础

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摘要

The amniote middle ear is a classical example of the evolutionary novelty. Although paleontological evidence supports the view that mammals and diapsids (modern reptiles and birds) independently acquired the middle ear after divergence from their common ancestor, the developmental bases of these transformations remain unknown. Here we show that lower-to-upper jaw transformation induced by inactivation of the Endothelin1-Dlx5/6 cascade involving Goosecoid results in loss of the tympanic membrane in mouse, but causes duplication of the tympanic membrane in chicken. Detailed anatomical analysis indicates that the relative positions of the primary jaw joint and first pharyngeal pouch led to the coupling of tympanic membrane formation with the lower jaw in mammals, but with the upper jaw in diapsids. We propose that differences in connection and release by various pharyngeal skeletal elements resulted in structural diversity, leading to the acquisition of the tympanic membrane in two distinct manners during amniote evolution.
机译:羊膜中耳是进化新奇的经典例子。尽管古生物学证据支持哺乳动物和双足类动物(现代爬行动物和鸟类)与共同祖先分开后独立获得中耳的观点,但这些转化的发育基础仍然未知。在这里,我们显示了由失活的鹅胶蛋白引起的内皮素Dlx5 / 6级联失活引起的下颌上颌转化导致小鼠鼓膜丢失,但导致鸡的鼓膜重复。详细的解剖学分析表明,在哺乳动物中,主颚关节和第一咽袋的相对位置导致鼓膜形成与下颌的耦合,而在双足动物中与上颌的耦合。我们提出,各种咽部骨骼元素在连接和释放上的差异导致结构多样性,从而导致羊膜进化过程中以两种不同方式获得鼓膜。

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