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首页> 外文期刊>Journal of biological rhythms >The ability to entrain to long photoperiods differs between 3 drosophila melanogaster wild-type strains and is modified by twilight simulation
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The ability to entrain to long photoperiods differs between 3 drosophila melanogaster wild-type strains and is modified by twilight simulation

机译:3种果蝇野生型菌株携带长光周期的能力有所不同,并且通过暮光模拟进行了修改

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摘要

The ability to adapt to different environmental conditions including seasonal changes is a key feature of the circadian clock. Here, we compared the ability of 3 Drosophila melanogaster wild-type strains to adapt rhythmic activity to long photoperiods simulated in the laboratory. Fruit flies are predominantly crepuscular with activity bouts in the morning (M) and evening (E). The M peak follows dawn and the E peak follows dusk when the photoperiod is extended. We show that this ability is restricted to a certain extension of the phase angle between M and E peaks, such that the E peak does not delay beyond a certain phase under long days. We demonstrate that this ability is significantly improved by simulated twilight and that it depends additionally on the genetic background and the ambient temperature. At 20°C, the laboratory strain CantonS had the most flexible phase angle between M and E peaks, a Northern wild-type strain had an intermediate one, and a Southern wild-type strain had the lowest flexibility. Furthermore, we found that the 3 strains differed in clock light sensitivity, with the CantonS and the Northern strains more light sensitive than the Southern strain. These results are generally in accord with the recently discovered polymorphisms in the timeless gene (tim) that affect clock light sensitivity.
机译:适应不同环境条件(包括季节性变化)的能力是生物钟的关键特征。在这里,我们比较了3种果蝇野生型菌株适应节律活动以适应实验室模拟的长光周期的能力。果蝇主要为卵形,早晨(M)和傍晚(E)有活动性发作。当光周期延长时,M峰跟随黎明,E峰跟随黄昏。我们表明,此功能仅限于M和E峰之间的相角一定扩展,从而使E峰在长日内不会延迟到某个相之外。我们证明,通过模拟暮光可以显着提高此功能,并且它还取决于遗传背景和环境温度。在20°C时,实验室菌株CantonS在M和E峰之间具有最大的柔性相角,北部野生型菌株具有中间的相角,而南部野生型菌株具有最低的柔性。此外,我们发现这3个菌株在时钟光敏感性上有所不同,其中CantonS和Northern菌株比Southern菌株对光的敏感性更高。这些结果通常与最近发现的永恒基因(tim)中影响时钟光灵敏度的多态性相符。

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