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Rhodopsin 7 is Indispensable for Regulating the Firing Rates of Olfactory Sensory Neurons in Response to
Masaki Kataoka1,2, Keisuke Saito3,4, Kazuaki Ikeda1,2
1Division of Biology, Department of Biological Sciences, School of Science, Hokkaido University, Sapporo, Japan.
Abstract:
Although extracellular field potential changes are commonly observed in the nervous system, it remains controversial if extracellular electrical activity contributes to neural processing or whether it is an epiphenomenon associated with neural activity. We previously reported that the extracellular field potential change in compound eyes in response to light stimulation induces firing rate changes in olfactory sensory neurons in female Drosophila melanogaster. Through further investigation, we found that the extracellular field potential within the olfactory sensillum is regulated by octopaminergic neurons in response to light stimulation and that rhodopsin 7 mediates the firing rate changes in the olfactory sensory neurons in response to field potential changes in a light-independent manner. Structural analysis suggests a voltage-dependent gating mechanism for rhodopsin 7 to respond to the field potential change. This study reveals that the nervous system actively controls the field potential in response to sensory input, resulting in the alteration of behavioral patterns as well as neural firing patterns in a context-dependent manner.

