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幼虫期乙醇暴露改变了成年 D. melanogaster period 突变体的自由运行昼夜节律和每个基因座的转录。

Larval ethanol exposure alters free-running circadian rhythm and per Locus transcription in adult D. melanogaster period mutants.

机构信息

Department of Biology, 5720 Mayflower Hill Dr., Colby College, Waterville, ME 04901, USA.

出版信息

Behav Brain Res. 2013 Mar 15;241:50-5. doi: 10.1016/j.bbr.2012.11.035. Epub 2012 Dec 5.

Abstract

Alcohol consumption causes disruptions in a variety of daily rhythms, including the circadian free-running rhythm. A previous study conducted in our laboratories has shown that larval ethanol exposure alters the free-running period in adult Canton-S Drosophila melanogaster. Few studies, however, have explored the effect of alcohol exposure on organisms exhibiting circadian periods radically different than (normal) 24-h. We reared Canton-S, period long, and period short Drosophila melanogaster larvae on 10%-ethanol supplemented food, and assessed their adult free-running locomotor activity and period transcript at ZT 12. We demonstrate that in Canton-S larval ethanol exposure shortens the adult free-running locomotor activity but does not significantly alter period mRNA levels at ZT 12. Period long mutants exposed to larval ethanol had significantly shortened adult free-running locomotor activity rhythms and decreased period mRNA levels, while period short mutants lengthened their free-running rhythm and showed increased period mRNA levels at ZT 12 after being exposed to larval ethanol. These results indicate that the effects of ethanol on the circadian clock might depend upon the baseline circadian period of the organism or that period mutant gene expression is sensitive to developmental ethanol treatment.

摘要

饮酒会打乱各种日常节律,包括昼夜节律自由运行节律。我们实验室之前的一项研究表明,幼虫期乙醇暴露会改变成年黑腹果蝇 Canton-S 的自由运行周期。然而,很少有研究探讨酒精暴露对昼夜节律周期明显不同于(正常)24 小时的生物体的影响。我们在含有 10%乙醇的食物上培养 Canton-S、周期长和周期短的黑腹果蝇幼虫,并在 ZT12 时评估它们的成年自由运行运动和周期转录物。我们证明,在 Canton-S 幼虫期乙醇暴露会缩短成年自由运行运动的时间,但在 ZT12 时不会显著改变周期 mRNA 水平。暴露于幼虫期乙醇的周期长突变体的成年自由运行运动节律明显缩短,周期 mRNA 水平降低,而周期短突变体的自由运行节律延长,并且在暴露于幼虫期乙醇后 ZT12 时的周期 mRNA 水平升高。这些结果表明,乙醇对生物钟的影响可能取决于生物体的基线昼夜节律周期,或者周期突变体基因表达对发育中的乙醇处理敏感。

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