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Heredity (Edinb) ; 108(5): 473-9, 2012 May.
Article in English | MEDLINE | ID: mdl-22072069

ABSTRACT

The genetic relationship between the daily circadian clock and the seasonal photoperiodic timer remains a subject of intense controversy. In Wyeomyia smithii, the critical photoperiod (an overt expression of the photoperiodic timer) evolves independently of the rhythmic response to the Nanda-Hamner protocol (an overt expression of the daily circadian clock) over a wide geographical range in North America. Herein, we focus on these two processes within a single local population in which there is a negative genetic correlation between them. We show that antagonistic selection against this genetic correlation rapidly breaks it down and, in fact, reverses its sign, showing that the genetic correlation is due primarily to linkage and not to pleiotropy. This rapid reversal of the genetic correlation within a small, single population means that it is difficult to argue that circadian rhythmicity forms the necessary, causal basis for the adaptive divergence of photoperiodic time measurement within populations or for the evolution of photoperiodic time measurement among populations over a broad geographical gradient of seasonal selection.


Subject(s)
Biological Evolution , Circadian Clocks , Culicidae/genetics , Photoperiod , Animals , Circadian Rhythm , Culicidae/physiology , Culicidae/radiation effects , Insect Proteins/genetics , Insect Proteins/metabolism
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