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Individual responsiveness to shock and colony-level aggression in honey bees: evidence for a genetic component.

机译:蜜蜂对休克和菌落水平侵略的个体反应能力:遗传成分的证据。

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The phenotype of the social group is related to phenotypes of individuals that form that society. We examined how honey bee colony aggressiveness relates to individual response of male drones and foraging workers. Although the natural focus in colony aggression has been on the worker caste, the sterile females engaged in colony maintenance and defense, males carry the same genes. We measured aggressiveness scores of colonies and examined components of individual aggressive behavior in workers and haploid sons of workers from the same colony. We describe for the first time, that males, although they have no stinger, do bend their abdomen (abdominal flexion) in a posture similar to stinging behavior of workers in response to electric shock. Individual worker sting response and movement rates in response to shock were significantly correlated with colony scores. In the case of drones, sons of workers from the same colonies, abdominal flexion significantly correlated but their movement rates did not correlate with colony aggressiveness. Furthermore, the number of workers responding at increasing levels of voltage exhibits a threshold-like response, whereas the drones respond in increasing proportion to shock. We conclude that there are common and caste-specific components to aggressive behavior in honey bees. We discuss implications of these results on social and behavioral regulation and genetics of aggressive response.
机译:社会群体的表型与构成该社会的个体的表型有关。我们研究了蜜蜂群体的侵略性与雄性无人驾驶飞机和觅食工人的个体反应之间的关系。尽管殖民地侵略的自然焦点一直集中在工人的种姓上,但从事殖民地维护和防御的不育女性却具有相同的基因。我们测量了菌落的攻击性得分,并检查了来自同一菌落的工人和单倍体儿子的个体侵略行为的组成部分。我们首次描述了男性,尽管没有刺痛,但确实以类似于工人因触电而刺痛的姿势弯曲腹部(腹部弯曲)。个体工人对刺痛的刺激反应和运动速度与菌落分数显着相关。就无人机而言,来自同一殖民地的工人之子的腹部屈曲显着相关,但其运动速度与殖民地的攻击性无关。此外,在增加的电压水平下做出响应的工人数量表现出类似阈值的响应,而无人驾驶飞机对电击的响应比例却越来越高。我们得出结论,蜜蜂的侵略行为有共同的和种姓特定的成分。我们讨论了这些结果对社会和行为调控以及攻击性反应的遗传学的影响。

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