Reverse-correlation analysis of navigation dynamics in Drosophila larva using optogenetics

Author:

Hernandez-Nunez Luis12,Belina Jonas3,Klein Mason2,Si Guangwei2,Claus Lindsey2,Carlson John R3,Samuel Aravinthan DT2

Affiliation:

1. Center for Systems Biology, Harvard University, Cambridge, United States

2. Department of Physics and Center for Brain Science, Harvard University, Cambridge, United States

3. Department of Molecular, Cellular, and Developmental Biology, Yale University, New Haven, United States

Abstract

Neural circuits for behavior transform sensory inputs into motor outputs in patterns with strategic value. Determining how neurons along a sensorimotor circuit contribute to this transformation is central to understanding behavior. To do this, a quantitative framework to describe behavioral dynamics is needed. In this study, we built a high-throughput optogenetic system for Drosophila larva to quantify the sensorimotor transformations underlying navigational behavior. We express CsChrimson, a red-shifted variant of channelrhodopsin, in specific chemosensory neurons and expose large numbers of freely moving animals to random optogenetic activation patterns. We quantify their behavioral responses and use reverse-correlation analysis to uncover the linear and static nonlinear components of navigation dynamics as functions of optogenetic activation patterns of specific sensory neurons. We find that linear–nonlinear models accurately predict navigational decision-making for different optogenetic activation waveforms. We use our method to establish the valence and dynamics of navigation driven by optogenetic activation of different combinations of bitter-sensing gustatory neurons. Our method captures the dynamics of optogenetically induced behavior in compact, quantitative transformations that can be used to characterize circuits for sensorimotor processing and their contribution to navigational decision making.

Funder

National Institutes of Health (NIH)

Publisher

eLife Sciences Publications, Ltd

Subject

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

Reference33 articles.

1. A circuit supporting concentration-invariant odor perception in Drosophila;Asahina;Journal of Biology,2009

2. Optogenetically induced olfactory stimulation in Drosophila larvae reveals the neuronal basis of odor-aversion behavior;Bellmann;Frontiers in Behavioral Neuroscience,2010

3. Impulse responses in bacterial chemotaxis;Block;Cell,1982

4. Targeted gene expression as a means of altering cell fates and generating dominant phenotypes;Brand;Development,1993

5. A putative Drosophila pheromone receptor expressed in male-specific taste neurons is required for efficient courtship;Bray;Neuron,2003

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