Vasconcelos Raquel O, Alderks Peter W, Sisneros Joseph A
Institute of Science and Environment, University of Saint Joseph, Macau, S.A.R., China.
Department of Psychology, University of Washington, Seattle, WA, 98195, USA.
Adv Exp Med Biol. 2016;877:291-318. doi: 10.1007/978-3-319-21059-9_14.
Fish represent the largest group of vertebrates and display the greatest diversity of auditory structures. However, studies addressing how the form and function of the auditory system change during development to enhance perception of the acoustic environment are rather sparse in this taxon compared to other vertebrate groups. An ontogenetic perspective of the auditory system in fishes provides a readily testable framework for understanding structure-function relationships. Additionally, studying ancestral models such as fish can convey valuable comparable information across vertebrates, as early developmental events are often evolutionary conserved. This chapter reviews the literature on the morphological development of the fish auditory system, with particular focus on the inner ear structures that evolve from an otic placode during early embryonic development and then continue to undergo differentiation and maturation in the postembryonic phase. Moreover, the chapter provides a systematic overview of how auditory sensitivity develops during ontogeny. Although most studies indicate a developmental improvement in auditory sensitivity, there is considerably species-specific variation. Lastly, the paucity of information and literature concerning the development of auditory capabilities for social communication in fishes is also discussed. Further investigation on the development of structure and function of the fish auditory system is recommended in order to obtain a deeper understanding of how ontogenetic morphological changes in the auditory pathway relate to modifications in acoustic reception, auditory processing, and the capacity to communicate acoustically.
鱼类是脊椎动物中最大的群体,其听觉结构具有最大的多样性。然而,与其他脊椎动物类群相比,关于该类群中听觉系统的形态和功能在发育过程中如何变化以增强对声学环境的感知的研究相当稀少。从个体发育的角度研究鱼类的听觉系统,为理解结构与功能的关系提供了一个易于测试的框架。此外,研究像鱼类这样的祖先模型可以在整个脊椎动物中传递有价值的可比信息,因为早期发育事件通常在进化过程中是保守的。本章回顾了关于鱼类听觉系统形态发育的文献,特别关注内耳结构,这些结构在胚胎早期发育过程中从耳基板演化而来,然后在胚胎后期继续进行分化和成熟。此外,本章还系统概述了听觉敏感性在个体发育过程中是如何发展的。虽然大多数研究表明听觉敏感性在发育过程中有所提高,但存在相当大的物种特异性差异。最后,还讨论了关于鱼类社会交流听觉能力发展的信息和文献的匮乏。建议进一步研究鱼类听觉系统的结构和功能发展,以便更深入地了解听觉通路中的个体发育形态变化如何与声学接收、听觉处理以及声学交流能力的变化相关。