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MDN brain descending neurons coordinately activate backward and inhibit forward locomotion.

Journal articles  - Journal Article
Carreira-Rosario, A; Zarin, AA; Clark, MQ; Manning, L; Fetter, RD; Cardona, A; Doe, CQ
Published in: eLife
August 2018

Command-like descending neurons can induce many behaviors, such as backward locomotion, escape, feeding, courtship, egg-laying, or grooming (we define 'command-like neuron' as a neuron whose activation elicits or 'commands' a specific behavior). In most animals, it remains unknown how neural circuits switch between antagonistic behaviors: via top-down activation/inhibition of antagonistic circuits or via reciprocal inhibition between antagonistic circuits. Here, we use genetic screens, intersectional genetics, circuit reconstruction by electron microscopy, and functional optogenetics to identify a bilateral pair of Drosophila larval 'mooncrawler descending neurons' (MDNs) with command-like ability to coordinately induce backward locomotion and block forward locomotion; the former by stimulating a backward-active premotor neuron, and the latter by disynaptic inhibition of a forward-specific premotor neuron. In contrast, direct monosynaptic reciprocal inhibition between forward and backward circuits was not observed. Thus, MDNs coordinate a transition between antagonistic larval locomotor behaviors. Interestingly, larval MDNs persist into adulthood, where they can trigger backward walking. Thus, MDNs induce backward locomotion in both limbless and limbed animals.

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Published In

eLife

DOI

EISSN

2050-084X

ISSN

2050-084X

Publication Date

August 2018

Volume

7

Start / End Page

e38554

Related Subject Headings

  • Motor Neurons
  • Models, Biological
  • Locomotion
  • Larva
  • Drosophila melanogaster
  • Drosophila Proteins
  • Connectome
  • Brain
  • Animals
  • 42 Health sciences
 

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Carreira-Rosario, A., Zarin, A. A., Clark, M. Q., Manning, L., Fetter, R. D., Cardona, A., & Doe, C. Q. (2018). MDN brain descending neurons coordinately activate backward and inhibit forward locomotion. ELife, 7, e38554. https://doi.org/10.7554/elife.38554
Carreira-Rosario, Arnaldo, Aref Arzan Zarin, Matthew Q. Clark, Laurina Manning, Richard D. Fetter, Albert Cardona, and Chris Q. Doe. “MDN brain descending neurons coordinately activate backward and inhibit forward locomotion.ELife 7 (August 2018): e38554. https://doi.org/10.7554/elife.38554.
Carreira-Rosario A, Zarin AA, Clark MQ, Manning L, Fetter RD, Cardona A, et al. MDN brain descending neurons coordinately activate backward and inhibit forward locomotion. eLife. 2018 Aug;7:e38554.
Carreira-Rosario, Arnaldo, et al. “MDN brain descending neurons coordinately activate backward and inhibit forward locomotion.ELife, vol. 7, Aug. 2018, p. e38554. Epmc, doi:10.7554/elife.38554.
Carreira-Rosario A, Zarin AA, Clark MQ, Manning L, Fetter RD, Cardona A, Doe CQ. MDN brain descending neurons coordinately activate backward and inhibit forward locomotion. eLife. 2018 Aug;7:e38554.

Published In

eLife

DOI

EISSN

2050-084X

ISSN

2050-084X

Publication Date

August 2018

Volume

7

Start / End Page

e38554

Related Subject Headings

  • Motor Neurons
  • Models, Biological
  • Locomotion
  • Larva
  • Drosophila melanogaster
  • Drosophila Proteins
  • Connectome
  • Brain
  • Animals
  • 42 Health sciences