Adaptive significance of a circadian clock: temporal segregation of activities reduces intrinsic competitive inferiority inDrosophilaparasitoids
- 22 May 2000
- journal article
- Published by The Royal Society in Proceedings Of The Royal Society B-Biological Sciences
- Vol. 267 (1447) , 1005-1010
- https://doi.org/10.1098/rspb.2000.1103
Abstract
Most organisms show self-sustained circadian oscillations or biological clocks which control their daily fluctuations in behavioural and physiological activities. While extensive progress has been made in understanding the molecular mechanisms of biological clocks, there have been few clear demonstrations of the fitness value of endogenous rhythms. This study investigated the adaptive significance of circadian rhythms in a Drosophila parasitoid community. The activity rhythms of three sympatric Drosophila parasitoids are out of phase, the competitively inferior parasitoid species being active earlier than the superior competitor. This temporal segregation appears at least partially determined by endogenous periods of the clock which also vary between species and which correlate the time of activity. This earlier activity of the inferior competitor significantly reduces its intrinsic competitive disadvantage when multiparasitism occurs, thus suggesting that natural selection acting on the phase of the rhythm could substantially deviate the endogenous period from the optimal ca. 24 h period. This study demonstrates that temporal segregation of competing species could be endogenously controlled, which undoubtedly favours their coexistence in nature and also shows how natural selection can act on biological clocks to shape daily activity patterns.Keywords
This publication has 25 references indexed in Scilit:
- Stability, Precision, and Near-24-Hour Period of the Human Circadian PacemakerScience, 1999
- GENETIC AND MOLECULAR ANALYSIS OF CIRCADIAN RHYTHMSAnnual Review of Genetics, 1996
- Resetting the circadian cycleNature, 1995
- Geographical variation in encapsulation ability ofDrosophila melanogaster larvae and evidence for parasitoid-specific componentsEvolutionary Ecology, 1995
- A lack of locomotor activity rhythms inDrosophila melanogaster larvae (Diptera: Drosophilidae)Journal of Insect Behavior, 1994
- Behavioural circadian rhythms measured in real‐time by automatic image analysis: applications in parasitoid insectsPhysiological Entomology, 1994
- Temporal Organization: Reflections of a Darwinian Clock-WatcherAnnual Review of Physiology, 1993
- Two Competing Parasitoid Species Coexist in SympatryOikos, 1991
- The chi square periodogram: Its utility for analysis of circadian rhythmsJournal of Theoretical Biology, 1978
- Ecological Aspects of Endogenous RhythmicityAnnual Review of Ecology and Systematics, 1970