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Daily Activity of the Housefly Musca domestica Is Influenced by Temperature Independent of 3′ UTR period Gene Splicing

机译:家蝇的日常活动受家蝇的温度影响该温度不受3UTR期基因剪接的影响

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摘要

Circadian clocks orchestrate daily activity patterns and free running periods of locomotor activity under constant conditions. While the first often depends on temperature, the latter is temperature-compensated over a physiologically relevant range. Here, we explored the locomotor activity of the temperate housefly Musca domestica. Under low temperatures, activity was centered round a major and broad afternoon peak, while high temperatures resulted in activity throughout the photophase with a mild midday depression, which was especially pronounced in males exposed to long photoperiods. While period (per) mRNA peaked earlier under low temperatures, no temperature-dependent splicing of the last per 3ʹ end intron was identified. The expression of timeless, vrille, and Par domain protein 1 was also influenced by temperature, each in a different manner. Our data indicated that comparable behavioral trends in daily activity distribution have evolved in Drosophila melanogaster and M. domestica, yet the behaviors of these two species are orchestrated by different molecular mechanisms.
机译:昼夜节律在恒定条件下协调日常活动模式和运动活动的自由运行时间。尽管前者通常取决于温度,但后者在生理相关范围内可以进行温度补偿。在这里,我们探讨了温带家蝇家蝇的自发活动。在低温下,活性集中在一个主要且宽阔的下午峰周围,而高温导致整个光相的活性和中午的轻度抑郁,在长时间暴露于光周期的雄性中尤为明显。虽然周期(每)mRNA在低温下较早达到峰值,但未鉴定到每3个末端内含子的最后一个依赖温度的剪接。永恒蛋白,小球蛋白和Par结构域蛋白1的表达也受温度影响,每种表达方式均不同。我们的数据表明,在果蝇和家蝇中,日常活动分布的可比行为趋势已经发展,但是这两个物种的行为是通过不同的分子机制来协调的。

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