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- W4385850489 abstract "Organisms adapt to unfavorable seasonal conditions to survive. These seasonal adaptations rely on the correct interpretation of environmental cues such as photoperiod, and temperature. Genetic studies in several organisms, including the genetic powerhouse Drosophila melanogaster, indicate that circadian clock components, such as period and timeless, are involved in photoperiodic-dependent seasonal adaptations, but our understanding of this process is far from complete. In particular, the role of temperature as a key factor to complement photoperiodic response is not well understood. The development of new sequencing technologies has proven extremely useful in understanding the plastic changes that the clock and other cellular components undergo in different environmental conditions, including changes in gene expression and alternative splicing. This article discusses the integration of photoperiod and temperature for seasonal biology as well as downstream molecular and cellular pathways involved in the regulation of physiological adaptations that occur with changing seasons. We focus our discussion on the current understanding of the involvement of the molecular clock and the circadian clock neuronal circuits in these adaptations in D. melanogaster." @default.
- W4385850489 created "2023-08-17" @default.
- W4385850489 creator A5031801863 @default.
- W4385850489 creator A5062884270 @default.
- W4385850489 date "2023-08-16" @default.
- W4385850489 modified "2023-10-14" @default.
- W4385850489 title "Integration of photoperiodic and temperature cues by the circadian clock to regulate insect seasonal adaptations" @default.
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