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Mixing of Honeybees with Different Genotypes Affects Individual Worker Behavior and Transcription of Genes in the Neuronal Substrate

机译:不同基因型的蜜蜂混合会影响个体工人的行为和神经元基质中基因的转录。

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摘要

Division of labor in social insects has made the evolution of collective traits possible that cannot be achieved by individuals alone. Differences in behavioral responses produce variation in engagement in behavioral tasks, which as a consequence, generates a division of labor. We still have little understanding of the genetic components influencing these behaviors, although several candidate genomic regions and genes influencing individual behavior have been identified. Here, we report that mixing of worker honeybees with different genotypes influences the expression of individual worker behaviors and the transcription of genes in the neuronal substrate. These indirect genetic effects arise in a colony because numerous interactions between workers produce interacting phenotypes and genotypes across organisms. We studied hygienic behavior of honeybee workers, which involves the cleaning of diseased brood cells in the colony. We mixed ∼500 newly emerged honeybee workers with genotypes of preferred Low (L) and High (H) hygienic behaviors. The L/H genotypic mixing affected the behavioral engagement of L worker bees in a hygienic task, the cooperation among workers in uncapping single brood cells, and switching between hygienic tasks. We found no evidence that recruiting and task-related stimuli are the primary source of the indirect genetic effects on behavior. We suggested that behavioral responsiveness of L bees was affected by genotypic mixing and found evidence for changes in the brain in terms of 943 differently expressed genes. The functional categories of cell adhesion, cellular component organization, anatomical structure development, protein localization, developmental growth and cell morphogenesis were overrepresented in this set of 943 genes, suggesting that indirect genetic effects can play a role in modulating and modifying the neuronal substrate. Our results suggest that genotypes of social partners affect the behavioral responsiveness and the neuronal substrate of individual workers, indicating a complex genetic architecture underlying the expression of behavior.
机译:社会昆虫的分工使集体特征的发展成为可能,而这是个人无法单独实现的。行为反应的差异会导致参与行为任务的差异,从而产生分工。尽管已经发现了影响个体行为的几种候选基因组区域和基因,但我们对影响这些行为的遗传成分仍然知之甚少。在这里,我们报告说,混合有不同基因型的工蜂会影响个体工行为的表达以及神经元基质中基因的转录。这些间接的遗传效应出现在一个殖民地中,因为工人之间的大量相互作用会在整个生物体之间产生相互作用的表型和基因型。我们研究了蜜蜂工人的卫生行为,其中涉及清洗菌落中患病的雏鸡细胞。我们混合了约500名新出现的蜜蜂工人,这些工人具有偏好低(L)和高(H)卫生行为的基因型。 L / H基因型混合影响了L工蜂在卫生任务中的行为参与,工人在解开单个育雏细胞中的合作以及在卫生任务之间切换的行为。我们没有发现证据表明,招募和与任务相关的刺激是行为间接遗传效应的主要来源。我们建议,L型蜜蜂的行为反应能力受到基因型混合的影响,并发现了根据943种不同表达基因对大脑变化的证据。在这套943个基因中,细胞黏附,细胞成分组织,解剖结构发育,蛋白质定位,发育生长和细胞形态发生的功能类别被过度代表,这表明间接遗传效应可以在调节和修饰神经元基质中发挥作用。我们的研究结果表明,社会伙伴的基因型会影响个体工人的行为反应能力和神经元底物,表明行为表达的基础是复杂的遗传结构。

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