Department of Integrative Biology, Oklahoma State University, Stillwater, OK, USA.
Department of Physiology and Biophysics, University of Colorado Anschutz Medical Campus, Aurora, CO, USA.
Proc Biol Sci. 2022 Aug 10;289(1980):20220878. doi: 10.1098/rspb.2022.0878.
Life underground often leads to animals having specialized auditory systems to accommodate the constraints of acoustic transmission in tunnels. Despite living underground, naked mole-rats use a highly vocal communication system, implying that they rely on central auditory processing. However, little is known about these animals' central auditory system, and whether it follows a similar developmental time course as other rodents. Naked mole-rats show slowed development in the hippocampus suggesting they have altered brain development compared to other rodents. Here, we measured morphological characteristics and voltage-gated potassium channel K3.3 expression and protein levels at different key developmental time points (postnatal days 9, 14, 21 and adulthood) to determine whether the auditory brainstem (lateral superior olive and medial nucleus of the trapezoid body) develops similarly to two common auditory rodent model species: gerbils and mice. Additionally, we measured the hearing onset of naked mole-rats using auditory brainstem response recordings at the same developmental timepoints. In contrast with other work in naked mole-rats showing that they are highly divergent in many aspects of their physiology, we show that naked mole-rats have a similar hearing onset, between postnatal day (P) 9 and P14, to many other rodents. On the other hand, we show some developmental differences, such as a unique morphology and K3.3 protein levels in the brainstem.
地下生活常常导致动物具有专门的听觉系统,以适应隧道中声传输的限制。尽管生活在地下,裸鼹鼠使用高度发声的通讯系统,这意味着它们依赖于中枢听觉处理。然而,人们对这些动物的中枢听觉系统知之甚少,也不知道它是否遵循与其他啮齿动物相似的发育时间过程。裸鼹鼠的海马体发育缓慢,这表明它们的大脑发育与其他啮齿动物不同。在这里,我们在不同的关键发育时间点(出生后第 9、14、21 天和成年期)测量了形态特征和电压门控钾通道 K3.3 的表达和蛋白水平,以确定听觉脑干(外侧上橄榄核和梯形体内侧核)的发育是否与两种常见的听觉啮齿动物模型物种(沙鼠和小鼠)相似。此外,我们还在相同的发育时间点使用听觉脑干反应记录来测量裸鼹鼠的听力起始时间。与其他在许多生理方面表现出高度差异的裸鼹鼠的工作相反,我们表明,裸鼹鼠的听力起始时间与许多其他啮齿动物相似,在出生后第 9 天到第 14 天之间。另一方面,我们显示出一些发育差异,例如脑干的独特形态和 K3.3 蛋白水平。