University of Leicester
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Interspecific studies of circadian genes period and timeless in Drosophila.

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journal contribution
posted on 2018-04-24, 12:58 authored by Shumaila Noreen, Mirko Pegoraro, Faisal Nouroz, Eran Tauber, Charalambos P. Kyriacou
The level of rescue of clock function in genetically arrhythmic Drosophila melanogaster hosts using interspecific clock gene transformation was used to study the putative intermolecular coevolution between interacting clock proteins. Among them PER and TIM are the two important negative regulators of the circadian clock feedback loop. We transformed either the D. pseudoobscura per or tim transgenes into the corresponding arrhythmic D. melanogaster mutant (per01 or tim01) and observed >50% rhythmicity but the period of activity rhythm was either longer (D. pseudoobscura-per) or shorter than 24 h (D. pseudoobscura-tim) compared to controls. By introducing both transgenes simultaneously into double mutants, we observed that the period of the activity rhythm was rescued by the pair of hemizygous transgenes (~24 h). These flies also showed a more optimal level of temperature compensation for the period. Under LD 12:12 these flies have a D. pseudoobscura like activity profile with the absence of morning anticipation as well as a very prominent earlier evening peak of activity rhythm. These observation are consistent with the view that TIM and PER form a heterospecific coevolved module at least for the circadian period of activity rhythms. However the strength of rhythmicity was reduced by having both transgenes present, so while evidence for a coevolution between PER and TIM is observed for some characters it is not for others.

History

Citation

Gene, 2018, 648, pp. 106-114

Author affiliation

/Organisation/COLLEGE OF LIFE SCIENCES/Biological Sciences/Genetics and Genome Biology

Version

  • VoR (Version of Record)

Published in

Gene

Publisher

Elsevier

issn

0378-1119

eissn

1879-0038

Acceptance date

2018-01-05

Copyright date

2018

Available date

2018-04-24

Publisher version

https://www.sciencedirect.com/science/article/pii/S0378111918300271?via=ihub#!

Language

en