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Working against gravity: horizontal honeybee waggle runs have greater angular scatter than vertical waggle runs

机译:克服重力:水平的蜜蜂摇摆游乐比垂直的摇摆游乐具有更大的角度散布

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摘要

The presence of noise in a communication system may be adaptive or may reflect unavoidable constraints. One communication system where these alternatives are debated is the honeybee (Apis mellifera) waggle dance. Successful foragers communicate resource locations to nest-mates by a dance comprising repeated units (waggle runs), which repetitively transmit the same distance and direction vector from the nest. Intra-dance waggle run variation occurs and has been hypothesized as a colony-level adaptation to direct recruits over an area rather than a single location. Alternatively, variation may simply be due to constraints on bees' abilities to orient waggle runs. Here, we ask whether the angle at which the bee dances on vertical comb influences waggle run variation. In particular, we determine whether horizontal dances, where gravity is not aligned with the waggle run orientation, are more variable in their directional component. We analysed 198 dances from foragers visiting natural resources and found support for our prediction. More horizontal dances have greater angular variation than dances performed close to vertical. However, there is no effect of waggle run angle on variation in the duration of waggle runs, which communicates distance. Our results weaken the hypothesis that variation is adaptive and provide novel support for the constraint hypothesis.
机译:通信系统中噪声的存在可能是自适应的,或者可能反映出不可避免的约束。讨论这些替代方法的一种通讯系统是蜜蜂(Apis mellifera)摇摆舞。成功的觅食者通过包括重复单元(摆动)的舞蹈将资源位置传达给同伴,该重复单元重复地从同窝传递相同的距离和方向向量。舞蹈中的摇摆游荡发生变化,并被假设为菌落级适应,以直接招募新兵到一个地区而不是单个地点。可替代地,变化可能仅仅是由于蜜蜂定向摇摆运动的能力的限制。在这里,我们问蜜蜂在垂直梳子上跳舞的角度是否会影响摆动游动变化。尤其是,我们确定重力与摇摆摆动方向不对齐的水平舞的方向分量是否更具可变性。我们分析了来自自然资源的觅食者的198支舞蹈,并为我们的预测提供了支持。与接近垂直的舞蹈相比,更多的水平舞蹈具有更大的角度变化。但是,摆动游程角度不会影响摆动游程的持续时间变化,而该变化会传达距离。我们的结果削弱了变异是自适应的假设,并为约束假设提供了新颖的支持。

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