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The cellular and circuit basis for evolutionary change in sensory perception in mormyrid fishes

机译:mormyrid鱼感官知觉进化变化的细胞和电路基础

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摘要

Species differences in perception have been linked to divergence in gross neuroanatomical features of sensory pathways. The anatomical and physiological basis of evolutionary change in sensory processing at cellular and circuit levels, however, is poorly understood. Here, we show how specific changes to a sensory microcircuit are associated with the evolution of a novel perceptual ability. In mormyrid fishes, the ability to detect variation in electric communication signals is correlated with an enlargement of the midbrain exterolateral nucleus (EL), and a differentiation into separate anterior (ELa) and posterior (ELp) regions. We show that the same cell types and connectivity are found in both EL and ELa/ELp. The evolution of ELa/ELp, and the concomitant ability to detect signal variation, is associated with a lengthening of incoming hindbrain axons to form delay lines, allowing for fine temporal analysis of signals. The enlargement of this brain region is also likely due to an overall increase in cell numbers, which would allow for processing of a wider range of timing information.
机译:知觉的物种差异与感觉通路的总体神经解剖学特征的差异有关。然而,人们对细胞和电路水平的感觉过程进化变化的解剖学和生理学基础知之甚少。在这里,我们展示了感觉微电路的特定变化如何与新型感知能力的演变相关联。在mormyrid鱼类中,检测电通信信号变化的能力与中脑外侧外侧核(EL)的扩大以及向前(ELa)和后(ELp)区域的分化相关。我们表明,在EL和ELa / ELp中都可以找到相同的小区类型和连通性。 ELa / ELp的进化,以及随之而来的检测信号变化的能力,与传入后脑轴突加长以形成延迟线有关,从而可以对信号进行精细的时间分析。这个大脑区域的扩大也可能是由于细胞数量的整体增加,这将允许处理更广泛的计时信息。

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