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Cobalt Chloride Treatment Used to Ablate the Lateral Line System Also Impairs the Olfactory System in Three Freshwater Fishes

机译:用于消融侧线系统的氯化钴处理也会损害三只淡水鱼的嗅觉系统

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摘要

Fishes use multimodal signals during both inter- and intra-sexual displays to convey information about their sex, reproductive state, and social status. These complex behavioral displays can include visual, auditory, olfactory, tactile, and hydrodynamic signals, and the relative role of each sensory channel in these complex multi-sensory interactions is a common focus of neuroethology. The mechanosensory lateral line system of fishes detects near-body water movements and is implicated in a variety of behaviors including schooling, rheotaxis, social communication, and prey detection. Cobalt chloride is commonly used to chemically ablate lateral line neuromasts, thereby eliminating water-movement cues to test for mechanosensory-mediated behavioral functions. However, cobalt acts as a nonspecific calcium channel antagonist and could potentially disrupt function of all superficially located sensory receptor cells, including those for chemosensing. Here, we examined whether CoCl2 treatment used to ablate the lateral line system also impairs olfaction in three freshwater fishes, the African cichlid fish Astatotilapia burtoni, goldfish Carassius auratus, and the Mexican blind cavefish Astyanax mexicanus. To examine the impact of CoCl2 on the activity of peripheral receptors, we quantified DASPEI fluorescence intensity of the olfactory epithelium from fish exposed to control and CoCl2 solutions. In addition, we examined brain activation in olfactory processing regions of A. burtoni immersed in either control or cobalt solutions. All three species exposed to CoCl2 had decreased DASPEI staining of the olfactory epithelium, and in A. burtoni, cobalt treatment caused reduced neural activation in olfactory processing regions of the brain. To our knowledge this is the first empirical evidence demonstrating that the same CoCl2 treatment used to ablate the lateral line system also impairs olfactory function. These data have important implications for the use of CoCl2 in future research and suggest that previous studies using CoCl2 should be reinterpreted in the context of both impaired mechanoreception and olfaction.
机译:鱼类在性交和性交过程中都使用多态信号来传达有关其性别,生殖状态和社会地位的信息。这些复杂的行为显示可以包括视觉,听觉,嗅觉,触觉和流体动力信号,并且每个感觉通道在这些复杂的多感觉相互作用中的相对作用是神经行为学的共同焦点。鱼类的机械感测侧向线系统可以检测到人体附近的水运动,并涉及多种行为,包括上学,流变,社交,猎物的发现。氯化钴通常用于化学消融侧线神经瘤,从而消除水运动提示来测试机械感官介导的行为功能。然而,钴起非特异性钙通道拮抗剂的作用,并可能破坏所有位于表面的感觉受体细胞的功能,包括用于化学传感的那些。在这里,我们检查了用于消融侧线系统的CoCl2处理是否还会削弱三种淡水鱼的嗅觉,这三种淡水鱼分别是非洲丽鱼科鱼Astatotilapia burtoni,金鱼Carassius auratus和墨西哥盲cave鱼Astyanax mexicanus。为了检查CoCl2对周围受体活性的影响,我们量化了暴露于对照和CoCl2溶液中的鱼的嗅上皮的DASPEI荧光强度。此外,我们检查了浸泡在对照或钴溶液中的burtoni的嗅觉处理区域中的大脑激活。暴露于CoCl2的所有三个物种的嗅觉上皮细胞的DASPEI染色均降低,并且在Bur。A. burtoni中,钴处理导致大脑嗅觉加工区域神经激活的减少。据我们所知,这是第一个经验证据,表明与消融侧线系统相同的CoCl2处理也会损害嗅觉功能。这些数据对未来研究中使用CoCl2具有重要意义,并建议应在机械感受力和嗅觉受损的情况下重新解释以前使用CoCl2的研究。

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