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蜜蜂觅食会诱导早期生长反应蛋白1、激素受体38以及蜕皮甾类信号通路候选下游基因的上调。

Honey bee foraging induces upregulation of early growth response protein 1, hormone receptor 38 and candidate downstream genes of the ecdysteroid signalling pathway.

作者信息

Singh A S, Shah A, Brockmann A

机构信息

National Centre for Biological Sciences, Tata Institute of Fundamental Research, Bangalore, India.

出版信息

Insect Mol Biol. 2018 Feb;27(1):90-98. doi: 10.1111/imb.12350. Epub 2017 Oct 7.

Abstract

In honey bees, continuous foraging at an artificial feeder induced a sustained upregulation of the immediate early genes early growth response protein 1 (Egr-1) and hormone receptor 38 (Hr38). This gene expression response was accompanied by an upregulation of several Egr-1 candidate downstream genes: ecdysone receptor (EcR), dopamine/ecdysteroid receptor (DopEcR), dopamine decarboxylase and dopamine receptor 2. Hr38, EcR and DopEcR are components of the ecdysteroid signalling pathway, which is highly probably involved in learning and memory processes in honey bees and other insects. Time-trained foragers still showed an upregulation of Egr-1 when the feeder was presented at an earlier time of the day, suggesting that the genomic response is more dependent on the food reward than training time. However, presentation of the feeder at the training time without food was still capable of inducing a transient increase in Egr-1 expression. Thus, learnt feeder cues, or even training time, probably affect Egr-1 expression. In contrast, whole brain Egr-1 expression changes did not differ between dancing and nondancing foragers. On the basis of our results we propose that food reward induced continuous foraging ultimately elicits a genomic response involving Egr-1 and Hr38 and their downstream genes. Furthermore this genomic response is highly probably involved in foraging-related learning and memory responses.

摘要

在蜜蜂中,在人工喂食器处持续觅食会诱导立即早期基因早期生长反应蛋白1(Egr-1)和激素受体38(Hr38)持续上调。这种基因表达反应伴随着几个Egr-1候选下游基因的上调:蜕皮激素受体(EcR)、多巴胺/蜕皮甾类受体(DopEcR)、多巴胺脱羧酶和多巴胺受体2。Hr38、EcR和DopEcR是蜕皮甾类信号通路的组成部分,该信号通路极有可能参与蜜蜂和其他昆虫的学习和记忆过程。经过时间训练的觅食者在一天中较早的时间出现喂食器时,Egr-1仍会上调,这表明基因组反应更多地依赖于食物奖励而非训练时间。然而,在训练时间出现没有食物的喂食器仍能诱导Egr-1表达短暂增加。因此,习得的喂食线索,甚至训练时间,可能会影响Egr-1的表达。相比之下,跳舞的觅食者和不跳舞的觅食者之间全脑Egr-1表达变化并无差异。基于我们的研究结果,我们提出食物奖励诱导的持续觅食最终会引发一种涉及Egr-1和Hr38及其下游基因的基因组反应。此外,这种基因组反应极有可能参与与觅食相关的学习和记忆反应。

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