Fossils document evolutionary changes of jaw joint to mammalian middle ear.

Mao, Fangyuan; Zhang, Chi; Ren, Jicheng; Wang, Tao; Wang, Guofu; Zhang, Fakui; Rich, Thomas; Vickers-Rich, Patricia et al. · Nature · 2024

basic_science · Level V

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Abstract

The dual jaw joint of Morganucodon<sup>1,2</sup> consists of the dentary-squamosal joint laterally and the articular-quadrate one medially. The articular-quadrate joint and its associated post-dentary bones constitute the precursor of the mammalian middle ear. Fossils documenting the transition from such a precursor to the mammalian middle ear are poor, resulting in inconsistent interpretations of this hallmark apparatus in the earliest stage of mammaliaform evolution<sup>1-5</sup>. Here we report mandibular middle ears from two Jurassic mammaliaforms: a new morganucodontan-like species and a pseudotribosphenic shuotheriid species<sup>6</sup>. The morganucodontan-like species shows many previously unknown post-dentary bone morphologies<sup>1,2</sup> and exhibits features that suggest a loss of load-bearing function in its articular-quadrate joint. The middle ear of the shuotheriid approaches the mammalian condition in that it has features that are suitable for an exclusively auditory function, although the post-dentary bones are still attached to the dentary. With size reduction of the jaw-joint bones, the quadrate shifts medially at different degrees in relation to the articular in the two mammaliaforms. These changes provide evidence of a gradual loss of load-bearing function in the articular-quadrate jaw joint-a prerequisite for the detachment of the post-dentary bones from the dentary<sup>7-12</sup> and the eventual breakdown of the Meckel's cartilage<sup>13-15</sup> during the evolution of mammaliaforms.

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