While Drosophila melanogaster serves as a crucial model for investigating both the circadian clock and gut microbiome, our understanding of their relationship in this organism is still limited. Recent analyses suggested that the Drosophila gut microbiome modulates the host circadian transcriptome to minimize rapid oscillations in response to changing environments. Here, we examined the composition and abundance of the gut microbiota in wild-type and arrhythmic per01 flies, under 12 h:12 h light: dark (12:12 LD) and constant darkness (DD) conditions. The gut microbiota of wild-type and per01 flies showed differences in composition, suggesting that the D. melanogaster circadian gene per has a role in shaping the gut microbiome. In 12:12 LD and DD conditions, per01 mutants showed significant daily variations in gut bacterial quantity, unlike wild-type flies. This suggests that per is involved in maintaining the daily stability of gut microbiome load in D. melanogaster. Expanding these ana...

The circadian clock gene period regulates the composition and daily bacterial load of the gut microbiome in Drosophila melanogaster

Battistolli M.;Sandrelli F.
2025

Abstract

While Drosophila melanogaster serves as a crucial model for investigating both the circadian clock and gut microbiome, our understanding of their relationship in this organism is still limited. Recent analyses suggested that the Drosophila gut microbiome modulates the host circadian transcriptome to minimize rapid oscillations in response to changing environments. Here, we examined the composition and abundance of the gut microbiota in wild-type and arrhythmic per01 flies, under 12 h:12 h light: dark (12:12 LD) and constant darkness (DD) conditions. The gut microbiota of wild-type and per01 flies showed differences in composition, suggesting that the D. melanogaster circadian gene per has a role in shaping the gut microbiome. In 12:12 LD and DD conditions, per01 mutants showed significant daily variations in gut bacterial quantity, unlike wild-type flies. This suggests that per is involved in maintaining the daily stability of gut microbiome load in D. melanogaster. Expanding these ana...
2025
   Comparative INsect CHRONobiology
   CINCHRON
   European Commission
   Horizon 2020 Framework Programme
   765937

   incrEAsing the immune peRformaNce of black soldier fly larvae: an INNOVATIve and sustainable OpportuNity for the feed market
   EARN INNOVATION
   Finanziamento dell’Unione Europea - NextGenerationEU - PNRR Missione 4, Componente 2, Investimento 1.1
   PRIN 2022 PNRR
   P2022MZAF8
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/3544921
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