Seegmiller R E, Fraser F C
J Embryol Exp Morphol. 1977 Apr;38:227-38.
Defective chondrogenesis in C57BL mice homozygous for the chondrodysplasia gene leads to deformity of limbs, ribs, trachea, mandible and palate. Since formation of the secondary palate depends upon coordinated development of several craniofacial structures, the presence of micrognathia and cleft palate in cho/cho newborn mice suggested a cause-and-effect relation between these two deformities. To determine whether or not lower jaw shortening coincided with the time of palate closure, heads from mutant control littermates previously rated morphologically were examined in median sagittal section. Of six parameters analyzed, growth rates for mutant mandible and anterior vertical dimension were significantly less than those of controls from the beginning of control palate closure. Since there is evidence that intrinsic shelf force is normal, these observations suggested that, during palatogenesis, growth retardation of Meckel's cartilage did not allow forward displacement of the tongue, and that the consequent failure to straighten the tongue impaired shelf movement. The data support the concept that growth of Meckel's cartilage is necessary for normal palate formation.
软骨发育不全基因纯合的C57BL小鼠软骨生成缺陷会导致四肢、肋骨、气管、下颌骨和腭部畸形。由于继发腭的形成依赖于几个颅面结构的协调发育,cho/cho新生小鼠出现小颌畸形和腭裂表明这两种畸形之间存在因果关系。为了确定下颌缩短是否与腭部闭合时间一致,对先前经形态学评分的突变对照同窝仔鼠的头部进行正中矢状切面检查。在分析的六个参数中,从对照腭部开始闭合起,突变下颌骨的生长速率和前垂直维度就显著低于对照组。由于有证据表明内在的腭架力是正常的,这些观察结果表明,在腭部发生过程中,梅克尔软骨的生长迟缓不允许舌头向前移位,因此无法伸直舌头会损害腭架运动。这些数据支持了梅克尔软骨的生长对于正常腭部形成是必需的这一观点。