Deciphering a Beetle Clock: Individual and Sex-Dependent Variation in Daily Activity Patterns

J Biol Rhythms. 2024 Oct;39(5):484-501. doi: 10.1177/07487304241263619. Epub 2024 Jul 31.

Abstract

Circadian clocks are inherent to most organisms, including cryptozoic animals that seldom encounter direct light, and regulate their daily activity cycles. A conserved suite of clock genes underpins these rhythms. In this study, we explore the circadian behaviors of the red flour beetle Tribolium castaneum, a significant pest impacting stored grain globally. We report on how daily light and temperature cues synchronize distinct activity patterns in these beetles, characterized by reduced morning activity and increased evening activity, anticipating the respective environmental transitions. Although less robust, rhythmicity in locomotor activity is maintained in constant dark and constant light conditions. Notably, we observed more robust rhythmic behaviors in males than females with individual variation exceeding those previously reported for other insect species. RNA interference targeting the Clock gene weakened locomotor activity rhythms. Our findings demonstrate the existence of a circadian clock and of clock-controlled behaviors in T. castaneum. Furthermore, they highlight substantial individual differences in circadian activity, laying the groundwork for future research on the relevance of individual variation in circadian rhythms in an ecological and evolutionary context.

Keywords: Clock; RNAi; circadian rhythm; cryptozoic; diurnal; individual variation; light entrainment; locomotor activity patterns; temperature entrainment.

MeSH terms

  • Animals
  • Circadian Clocks* / genetics
  • Circadian Clocks* / physiology
  • Circadian Rhythm*
  • Female
  • Light
  • Locomotion
  • Male
  • Motor Activity
  • Photoperiod
  • RNA Interference
  • Sex Factors
  • Temperature
  • Tribolium* / genetics
  • Tribolium* / physiology