Cold Shock Disrupts Massed Training-Elicited Memory in Drosophila

Int J Mol Sci. 2022 Jun 8;23(12):6407. doi: 10.3390/ijms23126407.

Abstract

Memory consolidation is a time-dependent process occurring over hours, days, or longer in different species and requires protein synthesis. An apparent exception is a memory type in Drosophila elicited by a single olfactory conditioning episode, which ostensibly consolidates quickly, rendering it resistant to disruption by cold anesthesia a few hours post-training. This anesthesia-resistant memory (ARM), is independent of protein synthesis. Protein synthesis independent memory can also be elicited in Drosophila by multiple massed cycles of olfactory conditioning, and this led to the prevailing notion that both of these operationally distinct training regimes yield ARM. Significantly, we show that, unlike bona fide ARM, massed conditioning-elicited memory remains sensitive to the amnestic treatment two hours post-training and hence it is not ARM. Therefore, there are two protein synthesis-independent memory types in Drosophila.

Keywords: Drosophila; anesthesia resistant memory; massed conditioning; memory; olfactory conditioning.

MeSH terms

  • Animals
  • Cold-Shock Response*
  • Drosophila*
  • Learning
  • Memory
  • Smell

Grants and funding

This research was supported by a grant from Fondation Santé to EMCS.