Department of Earth and Environmental Sciences, Ludwig-Maximilians-University, Munich, Germany.
PLoS One. 2011;6(11):e27734. doi: 10.1371/journal.pone.0027734. Epub 2011 Nov 15.
Fishes show an amazing diversity in hearing abilities, inner ear structures, and otolith morphology. Inner ear morphology, however, has not yet been investigated in detail in any member of the diverse order Cyprinodontiformes. We, therefore, studied the inner ear of the cyprinodontiform freshwater fish Poecilia mexicana by analyzing the position of otoliths in situ, investigating the 3D structure of sensory epithelia, and examining the orientation patterns of ciliary bundles of the sensory hair cells, while combining μ-CT analyses, scanning electron microscopy, and immunocytochemical methods. P. mexicana occurs in different ecotypes, enabling us to study the intra-specific variability (on a qualitative basis) of fish from regular surface streams, and the Cueva del Azufre, a sulfidic cave in southern Mexico.
The inner ear of Poecilia mexicana displays a combination of several remarkable features. The utricle is connected rostrally instead of dorso-rostrally to the saccule, and the macula sacculi, therefore, is very close to the utricle. Moreover, the macula sacculi possesses dorsal and ventral bulges. The two studied ecotypes of P. mexicana showed variation mainly in the shape and curvature of the macula lagenae, in the curvature of the macula sacculi, and in the thickness of the otolithic membrane.
Our study for the first time provides detailed insights into the auditory periphery of a cyprinodontiform inner ear and thus serves a basis--especially with regard to the application of 3D techniques--for further research on structure-function relationships of inner ears within the species-rich order Cyprinodontiformes. We suggest that other poeciliid taxa, or even other non-poeciliid cyprinodontiforms, may display similar inner ear morphologies as described here.
鱼类在听觉能力、内耳结构和耳石形态方面表现出惊人的多样性。然而,在多种多样的鲤形目鱼类中,内耳形态尚未得到详细研究。因此,我们通过分析耳石的原位位置、研究感觉上皮的 3D 结构以及检查感觉毛细胞纤毛束的取向模式,结合 μ-CT 分析、扫描电子显微镜和免疫细胞化学方法,研究了淡水鱼胎鱂属墨西哥胎鱂的内耳。墨西哥胎鱂存在不同的生态型,使我们能够研究来自常规地表溪流的鱼类的种内变异性(定性基础),以及墨西哥南部硫磺洞穴的硫磺洞。
墨西哥胎鱂的内耳显示出几种显著特征的组合。耳囊与球状囊相连而不是与背-额状相连,因此,球状囊斑非常接近耳囊。此外,球状囊斑有背侧和腹侧隆起。研究的两种生态型的墨西哥胎鱂主要在斑氏囊斑的形状和曲率、斑氏囊的曲率以及耳石膜的厚度上表现出差异。
我们的研究首次提供了关于鲤形目内耳听觉外围的详细见解,因此为进一步研究物种丰富的鲤形目内耳的结构-功能关系提供了基础,特别是在 3D 技术的应用方面。我们建议,其他胎鱂类群,甚至其他非胎鱂类鲤形目鱼类,可能表现出与这里描述的相似的内耳形态。