Connectomic reconstruction of a female Drosophila ventral nerve cord.
Anthony W AzevedoEllen LesserJasper S PhelpsBrandon MarkLeila ElabbadySumiya KurodaAnne SustarAnthony MoussaAvinash KhandelwalChris J DallmannSweta AgrawalSu-Yee J LeeBrandon PrattAndrew CookKyobi Skutt-KakariaStephan GerhardRan LuNico KemnitzKisuk LeeAkhilesh HalageriManuel CastroDodam IhJay GagerMarwan TammamSven DorkenwaldForrest C CollmanCasey Schneider-MizellDerrick BrittainChris S JordanMichael H DickinsonAlexandra PacureanuH Sebastian SeungThomas MacrinaWei-Chung Allen LeeJohn C TuthillPublished in: Nature (2024)
A deep understanding of how the brain controls behaviour requires mapping neural circuits down to the muscles that they control. Here, we apply automated tools to segment neurons and identify synapses in an electron microscopy dataset of an adult female Drosophila melanogaster ventral nerve cord (VNC) 1 , which functions like the vertebrate spinal cord to sense and control the body. We find that the fly VNC contains roughly 45 million synapses and 14,600 neuronal cell bodies. To interpret the output of the connectome, we mapped the muscle targets of leg and wing motor neurons using genetic driver lines 2 and X-ray holographic nanotomography 3 . With this motor neuron atlas, we identified neural circuits that coordinate leg and wing movements during take-off. We provide the reconstruction of VNC circuits, the motor neuron atlas and tools for programmatic and interactive access as resources to support experimental and theoretical studies of how the nervous system controls behaviour.
Keyphrases
- spinal cord
- drosophila melanogaster
- electron microscopy
- single cell
- neuropathic pain
- spinal cord injury
- high resolution
- resting state
- high throughput
- cerebral ischemia
- peripheral nerve
- skeletal muscle
- deep learning
- cell therapy
- white matter
- mass spectrometry
- deep brain stimulation
- copy number
- multiple sclerosis
- computed tomography
- high density
- gene expression
- prefrontal cortex
- brain injury
- bone marrow