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Genetic diversity within honeybee colonies increases signal production by waggle-dancing foragers

机译:蜜蜂群体中的遗传多样性通过摇摆舞的觅食者增加了信号产生

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摘要

Recent work has demonstrated considerable benefits of intracolonial genetic diversity for the productivity of honeybee colonies: single-patriline colonies have depressed foraging rates, smaller food stores and slower weight gain relative to multiple-patriline colonies. We explored whether differences in the use of foraging-related communication behaviour (waggle dances and shaking signals) underlie differences in foraging effort of genetically diverse and genetically uniform colonies. We created three pairs of colonies; each pair had one colony headed by a multiply mated queen (inseminated by 15 drones) and one colony headed by a singly mated queen. For each pair, we monitored the production of foraging-related signals over the course of 3 days. Foragers in genetically diverse colonies had substantially more information available to them about food resources than foragers in uniform colonies. On average, in genetically diverse colonies compared with genetically uniform colonies, 36% more waggle dances were identified daily, dancers performed 62% more waggle runs per dance, foragers reported food discoveries that were farther from the nest and 91% more shaking signals were exchanged among workers each morning prior to foraging. Extreme polyandry by honeybee queens enhances the production of worker–worker communication signals that facilitate the swift discovery and exploitation of food resources.
机译:最近的研究表明,殖民地内的遗传多样性对于蜜蜂菌落的生产力具有显着的好处:单父系的菌落相对于多父系的菌落,觅食率降低,食物储存量减少且体重增加较慢。我们探讨了与觅食相关的交流行为(摇摆舞和震动信号)使用上的差异是否构成了遗传多样性和遗传上均一的殖民地的觅食努力上的差异。我们创建了三对殖民地。每对都有一个以多头交配的女王为首的殖民地(由15架无人机授精)和一个以单头交配的女王为首的殖民地。对于每对,我们在3天的时间内监控了与觅食相关的信号的产生。与统一殖民地的觅食者相比,遗传多样的殖民地的觅食者可获得的有关食物资源的信息要多得多。平均而言,在遗传多样的殖民地中,相比于遗传上统一的殖民地,每天发现的摇摆舞增加了36%,舞者每次跳舞的摇摆运动增加了62%,觅食者报告的食物发现距离巢更远,交换了更多的震动信号每天早晨在工人之间觅食。蜜蜂女王/王后的极端一妻多夫制增强了工人与工人之间的通信信号,从而促进了对食物资源的迅速发现和开发。

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