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Valence opponency in peripheral olfactory processing

delete2022-01-28
delete19
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OA
AI
S
Shiuan‐Tze Wu
J
Jen‐Yung Chen
V
V. López Martín
R
Renny Ng
张也 (Ye Zhang)
D
Dhruv Grover
R
Ralph J. Greenspan
J
Johnatan Aljadeff
C
Chih‐Ying Su *
DOI:10.1073/pnas.2120134119delete
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Abstract

Abstract

En 中文
A hallmark of complex sensory systems is the organization of neurons into functionally meaningful maps, which allow for comparison and contrast of parallel inputs via lateral inhibition. However, it is unclear whether such a map exists in olfaction. Here, we address this question by determining the organizing principle underlying the stereotyped pairing of olfactory receptor neurons (ORNs) in Drosophila sensory hairs, wherein compartmentalized neurons inhibit each other via ephaptic coupling. Systematic behavioral assays reveal that most paired ORNs antagonistically regulate the same type of behavior. Such valence opponency is relevant in critical behavioral contexts including place preference, egg laying, and courtship. Odor-mixture experiments show that ephaptic inhibition provides a peripheral means for evaluating and shaping countervailing cues relayed to higher brain centers. Furthermore, computational modeling suggests that this organization likely contributes to processing ratio information in odor mixtures. This olfactory valence map may have evolved to swiftly process ethologically meaningful odor blends without involving costly synaptic computation.
Keywords:
olfactory receptor neurons (ORNs)
sensory map
valence opponency
countervailing cues
olfactory sensilla
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P
Proceedings of the National Academy of Sciences of the United States of America
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University of California System
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University of California San Diego
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