Department of Biology, University of Ottawa, Ottawa, Ontario, Canada K1N 6N5
Center for Neural Dynamics, University of Ottawa, Ottawa, Ontario, Canada K1N 6N5.
J R Soc Interface. 2018 Jan;15(138). doi: 10.1098/rsif.2017.0633.
Sensory systems encode environmental information that is necessary for adaptive behavioural choices, and thus greatly influence the evolution of animal behaviour and the underlying neural circuits. Here, we evaluate how the quality of sensory information impacts the jamming avoidance response (JAR) in weakly electric fish. To sense their environment, these fish generate an oscillating electric field: the electric organ discharge (EOD). Nearby fish with similar EOD frequencies perform the JAR to increase the difference between their EOD frequencies, i.e. their difference frequency (DF). The fish determines the sign of the DF: when it has a lower frequency (DF > 0), EOD frequency is decreased and vice versa We study the sensory basis of the JAR in two species: have a high frequency ( 1000 Hz), spatio-temporally heterogeneous electric field, whereas sp. have a low frequency ( 300 Hz), spatially uniform field. We show that the increased complexity of the field decreases the reliability of sensory cues used to determine the DF. Interestingly, responds to all JAR stimuli by increasing EOD frequency, having lost the neural pathway that produces JAR-related decreases in EOD frequency. Our results suggest that electric field complexity may have influenced the evolution of the JAR by degrading the related sensory information.
感觉系统对环境信息进行编码,这些信息对动物的适应性行为选择至关重要,因此极大地影响了动物行为和潜在神经回路的进化。在这里,我们评估了感觉信息的质量如何影响电鱼的避扰反应(JAR)。为了感知周围环境,这些鱼类会产生一个振荡电场:电器放电(EOD)。具有相似 EOD 频率的附近鱼类会执行 JAR,以增加它们的 EOD 频率之间的差异,即它们的差频(DF)。鱼类会确定 DF 的符号:当 DF 频率较低(DF>0)时,EOD 频率会降低,反之亦然。我们在两个物种中研究了 JAR 的感觉基础:具有高频(1000 Hz)、时空异质的电场,而 sp. 具有低频(300 Hz)、空间均匀的电场。我们表明,电场复杂性的增加降低了用于确定 DF 的感觉线索的可靠性。有趣的是,对所有 JAR 刺激的反应都是增加 EOD 频率,失去了产生与 JAR 相关的 EOD 频率降低的神经通路。我们的结果表明,电场复杂性可能通过降低相关感觉信息而影响 JAR 的进化。