Cargando…

Complete Connectomic Reconstruction of Olfactory Projection Neurons in the Fly Brain

Nervous systems contain sensory neurons, local neurons, projection neurons, and motor neurons. To understand how these building blocks form whole circuits, we must distil these broad classes into neuronal cell types and describe their network connectivity. Using an electron micrograph dataset for an...

Descripción completa

Detalles Bibliográficos
Autores principales: Bates, Alexander S., Schlegel, Philipp, Roberts, Ruairi J.V., Drummond, Nikolas, Tamimi, Imaan F.M., Turnbull, Robert, Zhao, Xincheng, Marin, Elizabeth C., Popovici, Patricia D., Dhawan, Serene, Jamasb, Arian, Javier, Alexandre, Serratosa Capdevila, Laia, Li, Feng, Rubin, Gerald M., Waddell, Scott, Bock, Davi D., Costa, Marta, Jefferis, Gregory S.X.E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7443706/
https://www.ncbi.nlm.nih.gov/pubmed/32619485
http://dx.doi.org/10.1016/j.cub.2020.06.042
_version_ 1783573677700284416
author Bates, Alexander S.
Schlegel, Philipp
Roberts, Ruairi J.V.
Drummond, Nikolas
Tamimi, Imaan F.M.
Turnbull, Robert
Zhao, Xincheng
Marin, Elizabeth C.
Popovici, Patricia D.
Dhawan, Serene
Jamasb, Arian
Javier, Alexandre
Serratosa Capdevila, Laia
Li, Feng
Rubin, Gerald M.
Waddell, Scott
Bock, Davi D.
Costa, Marta
Jefferis, Gregory S.X.E.
author_facet Bates, Alexander S.
Schlegel, Philipp
Roberts, Ruairi J.V.
Drummond, Nikolas
Tamimi, Imaan F.M.
Turnbull, Robert
Zhao, Xincheng
Marin, Elizabeth C.
Popovici, Patricia D.
Dhawan, Serene
Jamasb, Arian
Javier, Alexandre
Serratosa Capdevila, Laia
Li, Feng
Rubin, Gerald M.
Waddell, Scott
Bock, Davi D.
Costa, Marta
Jefferis, Gregory S.X.E.
author_sort Bates, Alexander S.
collection PubMed
description Nervous systems contain sensory neurons, local neurons, projection neurons, and motor neurons. To understand how these building blocks form whole circuits, we must distil these broad classes into neuronal cell types and describe their network connectivity. Using an electron micrograph dataset for an entire Drosophila melanogaster brain, we reconstruct the first complete inventory of olfactory projections connecting the antennal lobe, the insect analog of the mammalian olfactory bulb, to higher-order brain regions in an adult animal brain. We then connect this inventory to extant data in the literature, providing synaptic-resolution “holotypes” both for heavily investigated and previously unknown cell types. Projection neurons are approximately twice as numerous as reported by light level studies; cell types are stereotyped, but not identical, in cell and synapse numbers between brain hemispheres. The lateral horn, the insect analog of the mammalian cortical amygdala, is the main target for this olfactory information and has been shown to guide innate behavior. Here, we find new connectivity motifs, including axo-axonic connectivity between projection neurons, feedback, and lateral inhibition of these axons by a large population of neurons, and the convergence of different inputs, including non-olfactory inputs and memory-related feedback onto third-order olfactory neurons. These features are less prominent in the mushroom body calyx, the insect analog of the mammalian piriform cortex and a center for associative memory. Our work provides a complete neuroanatomical platform for future studies of the adult Drosophila olfactory system.
format Online
Article
Text
id pubmed-7443706
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Cell Press
record_format MEDLINE/PubMed
spelling pubmed-74437062020-08-28 Complete Connectomic Reconstruction of Olfactory Projection Neurons in the Fly Brain Bates, Alexander S. Schlegel, Philipp Roberts, Ruairi J.V. Drummond, Nikolas Tamimi, Imaan F.M. Turnbull, Robert Zhao, Xincheng Marin, Elizabeth C. Popovici, Patricia D. Dhawan, Serene Jamasb, Arian Javier, Alexandre Serratosa Capdevila, Laia Li, Feng Rubin, Gerald M. Waddell, Scott Bock, Davi D. Costa, Marta Jefferis, Gregory S.X.E. Curr Biol Article Nervous systems contain sensory neurons, local neurons, projection neurons, and motor neurons. To understand how these building blocks form whole circuits, we must distil these broad classes into neuronal cell types and describe their network connectivity. Using an electron micrograph dataset for an entire Drosophila melanogaster brain, we reconstruct the first complete inventory of olfactory projections connecting the antennal lobe, the insect analog of the mammalian olfactory bulb, to higher-order brain regions in an adult animal brain. We then connect this inventory to extant data in the literature, providing synaptic-resolution “holotypes” both for heavily investigated and previously unknown cell types. Projection neurons are approximately twice as numerous as reported by light level studies; cell types are stereotyped, but not identical, in cell and synapse numbers between brain hemispheres. The lateral horn, the insect analog of the mammalian cortical amygdala, is the main target for this olfactory information and has been shown to guide innate behavior. Here, we find new connectivity motifs, including axo-axonic connectivity between projection neurons, feedback, and lateral inhibition of these axons by a large population of neurons, and the convergence of different inputs, including non-olfactory inputs and memory-related feedback onto third-order olfactory neurons. These features are less prominent in the mushroom body calyx, the insect analog of the mammalian piriform cortex and a center for associative memory. Our work provides a complete neuroanatomical platform for future studies of the adult Drosophila olfactory system. Cell Press 2020-08-17 /pmc/articles/PMC7443706/ /pubmed/32619485 http://dx.doi.org/10.1016/j.cub.2020.06.042 Text en © 2020 MRC Laboratory of Molecular Biology http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bates, Alexander S.
Schlegel, Philipp
Roberts, Ruairi J.V.
Drummond, Nikolas
Tamimi, Imaan F.M.
Turnbull, Robert
Zhao, Xincheng
Marin, Elizabeth C.
Popovici, Patricia D.
Dhawan, Serene
Jamasb, Arian
Javier, Alexandre
Serratosa Capdevila, Laia
Li, Feng
Rubin, Gerald M.
Waddell, Scott
Bock, Davi D.
Costa, Marta
Jefferis, Gregory S.X.E.
Complete Connectomic Reconstruction of Olfactory Projection Neurons in the Fly Brain
title Complete Connectomic Reconstruction of Olfactory Projection Neurons in the Fly Brain
title_full Complete Connectomic Reconstruction of Olfactory Projection Neurons in the Fly Brain
title_fullStr Complete Connectomic Reconstruction of Olfactory Projection Neurons in the Fly Brain
title_full_unstemmed Complete Connectomic Reconstruction of Olfactory Projection Neurons in the Fly Brain
title_short Complete Connectomic Reconstruction of Olfactory Projection Neurons in the Fly Brain
title_sort complete connectomic reconstruction of olfactory projection neurons in the fly brain
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7443706/
https://www.ncbi.nlm.nih.gov/pubmed/32619485
http://dx.doi.org/10.1016/j.cub.2020.06.042
work_keys_str_mv AT batesalexanders completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT schlegelphilipp completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT robertsruairijv completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT drummondnikolas completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT tamimiimaanfm completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT turnbullrobert completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT zhaoxincheng completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT marinelizabethc completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT popovicipatriciad completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT dhawanserene completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT jamasbarian completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT javieralexandre completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT serratosacapdevilalaia completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT lifeng completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT rubingeraldm completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT waddellscott completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT bockdavid completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT costamarta completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain
AT jefferisgregorysxe completeconnectomicreconstructionofolfactoryprojectionneuronsintheflybrain