Zoological letters

Effects of removing period and timeless genes and glowing clock cell tracking in the cricket's daily rhythm system

Updated

Abstract

Timeless knockout crickets exhibited a free-running locomotor period of 23.06 ± 0.20 h under constant darkness.

  • Period knockout crickets and per-minus crickets showed a similar arrhythmic locomotor pattern initially, followed by a complex rhythm with significantly longer free-running periods of 33.35 ± 10.72 h.
  • In per-minus;tim knockout double mutants, about 60% displayed an arrhythmic pattern, while 40% had complex rhythms with free-running periods of 37.0 ± 9.17 h.
  • Results indicate a potential oscillatory mechanism regulating locomotor rhythms that operates independently of the traditional per/tim feedback loop.
  • EGFP expression was observed in three specific clusters of cells in the optic lobe, suggesting their involvement in the circadian clock network that influences locomotor rhythms.

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Competing interests

Declarations. Ethics approval and consent to participate: Not applicable. Consent for publication: Not applicable. Competing interests: The authors declare that they have no competing interests.
PubMed

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