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Condition-dependent auditory processing in the round goby (Neogobius melanostomus): Links to sex, reproductive condition and female estrogen levels

机译:虾虎鱼(Neogobius melanostomus)中取决于条件的听觉处理:与性别,生殖条件和女性雌激素水平的联系

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摘要

Neural responses to sensory stimuli often differ between sexes, vary seasonally, and can be regulated by endocrine activity, but the ecological and physiological mechanisms driving such patterns are not well understood. The current study examined how auditory function in the round goby (Neogobius melanostomus), a vocal teleost, co-varied with sex, reproductive condition and female plasma 17β-estradiol level. Auditory evoked potentials were collected in response to tone pips (100–600Hz) and a natural round goby pulse vocalization. Additionally, saccule hair cell densities were compared across reproductive groups. Auditory threshold was evaluated in terms of pressure and particle acceleration, and response amplitude and onset latency were measured at 10dB above threshold. Relative to males, females displayed lower auditory thresholds in response to the natural vocalization and to tones at 300–600Hz, and had a higher density of saccule hair cells. The 17β-estradiol level was positively associated with amplitude and latency for the pulse stimulus and with both threshold and amplitude for tones at 100–200Hz in females. Relative to non-reproductive males, reproductive males exhibited longer response latencies at 100–200Hz. The results demonstrate sexual dimorphism in auditory function in a teleost fish as well as intra-sexual variation, partially based on hormone levels. The current research further identifies links between auditory function and reproductive behaviors in fishes and provides a finer-scaled analysis of how this behavior is reflected at the level of the sensory systems facilitating signal reception.
机译:男女对感觉刺激的神经反应通常不同,随季节变化,并且可以通过内分泌活动调节,但是驱动这种模式的生态和生理机制尚不十分清楚。本研究检查了伴生硬骨鱼Ne鱼(Neogobius melanostomus)的听觉功能如何,与性别,生殖状况和女性血浆17β-雌二醇水平相关。听觉诱发电位是根据音调点(100-600 Hz)和自然的虾虎鱼脉动发声而收集的。此外,比较了各生殖组的囊毛细胞密度。根据压力和粒子加速度评估听觉阈值,并在阈值以上10 dB处测量响应幅度和发作潜伏期。相对于雄性,雌性在自然发声和300-600Hz的音调下表现出较低的听觉阈值,并且囊泡毛细胞的密度更高。女性的17β-雌二醇水平与脉冲刺激的振幅和潜伏期以及音调的阈值和振幅都呈正相关。相对于非生殖雄性,生殖雄性在100-200Hz处表现出更长的响应潜伏期。结果表明,硬骨鱼的听觉功能性两态性以及性内变异部分取决于激素水平。当前的研究进一步确定了听觉功能与鱼类生殖行为之间的联系,并提供了关于这种行为如何在促进信号接收的感觉系统水平上反映的更精细的分析。

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