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Common and novel transcriptional routes to behavioral maturation in worker and male honey bees.

机译:工蜂和雄蜂行为成熟的常见和新颖转录途径。

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摘要

Worker honey bees (Apis mellifera) undergo a process of behavioral maturation leading to their transition from in-hive tasks to foraging - a process which is associated with profound transcriptional changes in the brain. Changes in brain gene expression observed during worker behavioral maturation could represent either a derived program underlying division of labor or a general program unrelated to sociality. Male bees (drones) undergo a process of behavioral maturation associated with the onset of mating flights, but do not partake in division of labor. Drones thus provide an excellent reference point for polarizing transcriptional changes associated with behavioral maturation in honey bees. We assayed the brain transcriptomes of adult drones and workers to compare and contrast differences associated with behavioral maturation in the two sexes. Both behavioral maturation and sex were associated with changes in expression of thousands of genes in the brain. Many genes involved in neuronal development, behavior, and the biosynthesis of neurotransmitters regulating the perception of reward showed sex-biased gene expression. Furthermore, most of the transcriptional changes associated with behavioral maturation were common to drones and workers, consistent with common genetic and physiological regulation. Our study suggests that there is a common behavioral maturation program that has been co-opted and modified to yield the different behavioral and cognitive phenotypes of worker and drone bees.
机译:工蜂(Apis mellifera)经历了行为成熟的过程,导致其从蜂巢任务转变为觅食-这一过程与大脑中的深层转录变化有关。在工人行为成熟期间观察到的大脑基因表达的变化可能代表分工的衍生程序,也可能代表与社会无关的普通程序。雄蜂(无人机)会经历与交配飞行有关的行为成熟过程,但不参与分工。因此,无人机为极化与蜜蜂行为成熟相关的转录变化提供了一个极好的参考点。我们分析了成年无人机和工人的大脑转录组,以比较和对比两种性别与行为成熟相关的差异。行为成熟和性别都与大脑中数千种基因的表达变化有关。许多基因参与神经元的发育,行为和调节递归奖赏的神经递质的生物合成,表现出性别偏向的基因表达。此外,与行为成熟相关的大多数转录变化是无人机和工人所共有的,与常见的遗传和生理调节一致。我们的研究表明,有一个共同的行为成熟程序已被采纳和修改,以产生工蜂和无人蜂的不同行为和认知表型。

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