FB2026_01 , released March 12, 2026
FB2026_01 , released March 12, 2026
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Citation
Montanari, M., Manière, G., Berthelot-Grosjean, M., Dusabyinema, Y., Gillet, B., Grosjean, Y., Léopold Kurz, C., Royet, J. (2024). Larval microbiota primes the Drosophila adult gustatory response.  Nat. Commun. 15(1): 1341.
FlyBase ID
FBrf0258748
Publication Type
Research paper
Abstract
The survival of animals depends, among other things, on their ability to identify threats in their surrounding environment. Senses such as olfaction, vision and taste play an essential role in sampling their living environment, including microorganisms, some of which are potentially pathogenic. This study focuses on the mechanisms of detection of bacteria by the Drosophila gustatory system. We demonstrate that the peptidoglycan (PGN) that forms the cell wall of bacteria triggers an immediate feeding aversive response when detected by the gustatory system of adult flies. Although we identify ppk23+ and Gr66a+ gustatory neurons as necessary to transduce fly response to PGN, we demonstrate that they play very different roles in the process. Time-controlled functional inactivation and in vivo calcium imaging demonstrate that while ppk23+ neurons are required in the adult flies to directly transduce PGN signal, Gr66a+ neurons must be functional in larvae to allow future adults to become PGN sensitive. Furthermore, the ability of adult flies to respond to bacterial PGN is lost when they hatch from larvae reared under axenic conditions. Recolonization of germ-free larvae, but not adults, with a single bacterial species, Lactobacillus brevis, is sufficient to restore the ability of adults to respond to PGN. Our data demonstrate that the genetic and environmental characteristics of the larvae are essential to make the future adults competent to respond to certain sensory stimuli such as PGN.
PubMed ID
PubMed Central ID
PMC10864365 (PMC) (EuropePMC)
Related Publication(s)
Erratum

Author Correction: Larval microbiota primes the Drosophila adult gustatory response.
Montanari et al., 2025, Nat. Commun. 16(1): 5311 [FBrf0262662]

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Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    Nat. Commun.
    Title
    Nature communications
    ISBN/ISSN
    2041-1723
    Data From Reference
    Chemicals (1)
    Genes (3)