首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Context-dependent expression of the foraging gene in field colonies of ants: the interacting roles of age environment and task
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Context-dependent expression of the foraging gene in field colonies of ants: the interacting roles of age environment and task

机译:觅食基因在蚂蚁野外殖民地中的背景相关表达:年龄环境和任务的相互作用

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摘要

Task allocation among social insect workers is an ideal framework for studying the molecular mechanisms underlying behavioural plasticity because workers of similar genotype adopt different behavioural phenotypes. Elegant laboratory studies have pioneered this effort, but field studies involving the genetic regulation of task allocation are rare. Here, we investigate the expression of the foraging gene in harvester ant workers from five age- and task-related groups in a natural population, and we experimentally test how exposure to light affects foraging expression in brood workers and foragers. Results from our field study show that the regulation of the foraging gene in harvester ants occurs at two time scales: levels of foraging mRNA are associated with ontogenetic changes over weeks in worker age, location and task, and there are significant daily oscillations in foraging expression in foragers. The temporal dissection of foraging expression reveals that gene expression changes in foragers occur across a scale of hours and the level of expression is predicted by activity rhythms: foragers have high levels of foraging mRNA during daylight hours when they are most active outside the nests. In the experimental study, we find complex interactions in foraging expression between task behaviour and light exposure. Oscillations occur in foragers following experimental exposure to 13 L : 11 D (LD) conditions, but not in brood workers under similar conditions. No significant differences were seen in foraging expression over time in either task in 24 h dark (DD) conditions. Interestingly, the expression of foraging in both undisturbed field and experimentally treated foragers is also significantly correlated with the expression of the circadian clock gene, cycle. Our results provide evidence that the regulation of this gene is context-dependent and associated with both ontogenetic and daily behavioural plasticity in field colonies of harvester ants. Our results underscore the importance of assaying temporal patterns in behavioural gene expression and suggest that gene regulation is an integral mechanism associated with behavioural plasticity in harvester ants.
机译:社会昆虫工作者之间的任务分配是研究行为可塑性的分子机制的理想框架,因为相似基因型的工作者采用不同的行为表型。优雅的实验室研究开创了这项工作的先河,但涉及任务分配的遗传调控的现场研究很少。在这里,我们调查了自然种群中五个与年龄和任务相关的群体的收割蚁工中觅食基因的表达,并通过实验测试了光照如何影响育雏工和觅食者的觅食表达。我们实地研究的结果表明,采食蚂蚁中觅食基因的调节发生在两个时间尺度上:觅食mRNA的水平与工人年龄,位置和任务几周的个体发育变化有关,并且觅食表达每天都有明显的波动在觅食者中。觅食表达的时间解剖表明,觅食者的基因表达变化在数小时内发生,并且表达水平由活动节律预测:在白天,当觅食者在巢外最活跃时,它们的觅食mRNA水平很高。在实验研究中,我们发现任务行为和光照之间觅食表达的复杂相互作用。在实验性暴露于13 L:11 D(LD)条件后,觅食者会发生振荡,但在类似条件下的育雏工人中则不会发生振荡。在24小时黑暗(DD)条件下,在任一项任务中,随时间推移的觅食表达均未见明显差异。有趣的是,在未受干扰的田地和经过实验处理的觅食者中,觅食的表达也与昼夜节律时钟基因周期的表达显着相关。我们的结果提供了证据,表明该基因的调节是上下文相关的,并且与收割蚁田间菌落的个体发育和日常行为可塑性有关。我们的结果强调了在行为基因表达中分析时间模式的重要性,并表明基因调控是与收割蚁行为可塑性相关的整体机制。

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