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Auditory Activity is Diverse and Widespread Throughout the Central Brain of Drosophila

Diego A Pacheco, Stephan Y Thiberge, Eftychios Pnevmatikakis, View ORCID ProfileMala Murthy
doi: https://doi.org/10.1101/709519
Diego A Pacheco
1Princeton Neuroscience Institute, Princeton University, Princeton, NJ, 08540, USA
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Stephan Y Thiberge
1Princeton Neuroscience Institute, Princeton University, Princeton, NJ, 08540, USA
2Bezos Center for Neural Circuit Dynamics, Princeton Neuroscience Institute, Princeton University, Princeton, NJ, 08540, USA
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Eftychios Pnevmatikakis
3Center for Computational Mathematics, Flatiron Institute, Simons Foundation, New York, NY, 10010, USA
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Mala Murthy
1Princeton Neuroscience Institute, Princeton University, Princeton, NJ, 08540, USA
2Bezos Center for Neural Circuit Dynamics, Princeton Neuroscience Institute, Princeton University, Princeton, NJ, 08540, USA
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  • ORCID record for Mala Murthy
  • For correspondence: mmurthy{at}princeton.edu
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ABSTRACT

Sensory pathways are typically studied by starting at receptor neurons and following postsynaptic neurons into the brain. However, this leads to a bias in analysis of activity towards the earliest layers of processing. Here, we present new methods for volumetric neural imaging with precise across-brain registration, to characterize auditory activity throughout the entire central brain of Drosophila and make comparisons across trials, individuals, and sexes. We discover that auditory activity is present in most central brain regions and in neurons known to carry responses to other modalities. Auditory responses are temporally diverse, but the majority of activity, regardless of brain region, is tuned to aspects of courtship song. We find that auditory responses are stereotyped across trials and animals in early mechanosensory regions, becoming more variable at higher layers of the putative pathway, and that this variability is largely independent of spontaneous movements. This study highlights the power of using an unbiased, brain-wide approach for mapping the functional organization of sensory activity.

Competing Interest Statement

The authors have declared no competing interest.

Footnotes

  • Results and Discussion text, Figures, and Supplemental Figures updated. We added new data and analysis of neural recordings in behaving flies (Figure 6).

  • Abbreviation

    AMMC
    antennal mechanosensory and motor center
    SAD
    saddle
    GNG
    adult gnathal ganglion or SEZ
    WED
    wedge
    AVLP
    anterior ventrolateral protocerebrum
    PVLP
    posterior ventrolateral protocerebrum
    PLP
    posterior lateral protocerebrum
    AOTU
    anterior optic tubercle
    AL
    adult antennal lobe
    MB-VL
    vertical lobe of adult mushroom body
    MB-ML
    medial lobe of adult mushroom body
    MB-PED
    pedunculus of adult mushroom bod
    MB-CA
    calyx of adult mushroom body
    LH
    lateral horn
    EB
    ellipsoid body
    FB
    fan-shaped body
    PB
    protocerebral bridge
    NO
    nodulus
    BU
    bulb
    LAL
    lateral accessory lobe
    SLP
    superior lateral protocerebrum
    SIP
    superior intermediate protocerebrum
    SMP
    superior medial protocerebrum
    CRE
    crepine
    SCL
    superior clamp
    ICL
    inferior clamp
    IB
    inferior bridge
    ATL
    antler
    VES
    vest
    EPA
    epaulette
    GOR
    gorget
    SPS
    superior posterior slope
    IPS
    inferior posterior slope
    FLA
    flange
    CAN
    cantle
    PRW
    prow
  • Copyright 
    The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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    Posted September 01, 2020.
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    Auditory Activity is Diverse and Widespread Throughout the Central Brain of Drosophila
    Diego A Pacheco, Stephan Y Thiberge, Eftychios Pnevmatikakis, Mala Murthy
    bioRxiv 709519; doi: https://doi.org/10.1101/709519
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    Auditory Activity is Diverse and Widespread Throughout the Central Brain of Drosophila
    Diego A Pacheco, Stephan Y Thiberge, Eftychios Pnevmatikakis, Mala Murthy
    bioRxiv 709519; doi: https://doi.org/10.1101/709519

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