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Egr-1: A Candidate Transcription Factor Involved in Molecular Processes Underlying Time-Memory

机译:Egr-1:涉及时间记忆的分子过程中的候选转录因子。

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In honey bees, continuous foraging is accompanied by a sustained up-regulation of the immediate early gene Egr-1 (early growth response protein-1) and candidate downstream genes involved in learning and memory. Here, we present a series of feeder training experiments indicating that Egr-1 expression is highly correlated with the time and duration of training even in the absence of the food reward. Foragers that were trained to visit a feeder over the whole day and then collected on a day without food presentation showed Egr-1 up-regulation over the whole day with a peak expression around 14:00. When exposed to a time-restricted feeder presentation, either 2 h in the morning or 2 h in the evening, Egr-1 expression in the brain was up-regulated only during the hours of training. Foragers that visited a feeder in the morning as well as in the evening showed two peaks of Egr-1 expression. Finally, when we prevented time-trained foragers from leaving the colony using artificial rain, Egr-1 expression in the brains was still slightly but significantly up-regulated around the time of feeder training. In situ hybridization studies showed that active foraging and time-training induced Egr-1 up-regulation occurred in the same brain areas, preferentially the small Kenyon cells of the mushroom bodies and the antennal and optic lobes. Based on these findings we propose that foraging induced Egr-1 expression can get regulated by the circadian clock after time-training over several days and Egr-1 is a candidate transcription factor involved in molecular processes underlying time-memory.
机译:在蜜蜂中,持续觅食伴随着早期早期基因Egr-1(早期生长应答蛋白-1)和参与学习和记忆的候选下游基因的持续上调。在这里,我们提出了一系列饲养者训练实验,表明即使没有食物奖励,Egr-1的表达也与训练的时间和持续时间高度相关。经过培训的觅食者整天要访问饲养员,然后在一天中没有食物展示的情况下收集饲料,结果表明Egr-1整天都在上调,并在14:00左右达到峰值。暴露于有时间限制的饲养者演示时,无论是早晨2小时还是晚上2小时,仅在训练期间,大脑中Egr-1的表达才会上调。在早上和晚上探访饲喂器的觅食者均显示了两个Egr-1表达高峰。最后,当我们防止经过时间训练的觅食者使用人工降雨离开殖民地时,在饲养者训练期间,大脑中的Egr-1表达仍然略有但明显上调。原位杂交研究表明,活跃的觅食和时间训练诱导的Egr-1上调发生在同一大脑区域,优选蘑菇体的小Kenyon细胞以及触角和视裂。基于这些发现,我们提出觅食诱导的Egr-1表达可以在经过几天的时间训练后受到昼夜节律的调节,而Egr-1是参与时间记忆的分子过程的候选转录因子。

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