Wiring variations that enable and constrain neural computation in a sensory microcircuit

Author:

Tobin William F1ORCID,Wilson Rachel I1,Lee Wei-Chung Allen1ORCID

Affiliation:

1. Department of Neurobiology, Harvard Medical School, Boston, United States

Abstract

Neural network function can be shaped by varying the strength of synaptic connections. One way to achieve this is to vary connection structure. To investigate how structural variation among synaptic connections might affect neural computation, we examined primary afferent connections in the Drosophila olfactory system. We used large-scale serial section electron microscopy to reconstruct all the olfactory receptor neuron (ORN) axons that target a left-right pair of glomeruli, as well as all the projection neurons (PNs) postsynaptic to these ORNs. We found three variations in ORN→PN connectivity. First, we found a systematic co-variation in synapse number and PN dendrite size, suggesting total synaptic conductance is tuned to postsynaptic excitability. Second, we discovered that PNs receive more synapses from ipsilateral than contralateral ORNs, providing a structural basis for odor lateralization behavior. Finally, we found evidence of imprecision in ORN→PN connections that can diminish network performance.

Funder

National Institutes of Health

Harvard Brain Initiative Collaborative Seed Grant

Bertarelli Program in Translational Neuroscience and Neuroengineering

Edward R. and Anne G. Lefler Center

Theodora Feldberg Fund

Howard Hughes Medical Institute

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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