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各组成部分的时间配置和模式决定了大黄蜂在学习多模态信号过程中的表现。

Temporal configuration and modality of components determine the performance of bumble bees during the learning of a multimodal signal.

作者信息

Riveros Andre J

机构信息

Departamento de Biología, Facultad de Ciencias Naturales, Universidad del Rosario, Bogotá, Colombia.

Department of Neuroscience, School of Brain, Mind and Behavior, University of Arizona, Tucson, AZ 85721, USA.

出版信息

J Exp Biol. 2023 Jan 1;226(1). doi: 10.1242/jeb.245233. Epub 2023 Jan 5.

Abstract

Across communicative systems, the ability of compound signals to enhance receiver's perception and decoding is a potent explanation for the evolution of complexity. In nature, complex signaling involves spatiotemporal variation in perception of signal components; yet, how the synchrony between components affects performance of the receiver is much less understood. In the coevolution of plants and pollinators, bees are a model for understanding how visual and chemical components of floral displays may interact to influence performance. Understanding whether the temporal dimension of signal components impacts performance is central for evaluating hypotheses about the facilitation of information processing and for predicting how particular trait combinations function in nature. Here, I evaluated the role of the temporal dimension by testing the performance of bumble bees under restrained conditions while learning a bimodal (olfactory and visual) stimulus. I trained bumble bees under six different stimuli varying in their internal synchrony and structure. I also evaluated the acquisition of the individual components. I show that the temporal configuration and the identity of the components impact their combined and separate acquisition. Performance was favored by partial asynchrony and the initial presentation of the visual component, leading to higher acquisition of the olfactory component. This indicates that compound stimuli resembling the partially synchronous presentation of a floral display favor performance in a pollinator, thus highlighting the time dimension as crucial for the enhancement. Moreover, this supports the hypothesis that the evolution of multimodal floral signals may have been favored by the asynchrony perceived by the receiver during free flight.

摘要

在各种通信系统中,复合信号增强接收者感知和解码的能力是复杂性进化的一个有力解释。在自然界中,复杂信号涉及信号成分感知的时空变化;然而,成分之间的同步性如何影响接收者的表现却鲜为人知。在植物和传粉者的共同进化中,蜜蜂是理解花朵展示的视觉和化学成分如何相互作用以影响表现的一个模型。了解信号成分的时间维度是否会影响表现,对于评估有关信息处理促进作用的假设以及预测特定性状组合在自然界中的功能至关重要。在这里,我通过测试大黄蜂在受限条件下学习双峰(嗅觉和视觉)刺激时的表现,评估了时间维度的作用。我在六种不同的刺激下训练大黄蜂,这些刺激在内部同步性和结构上有所不同。我还评估了各个成分的习得情况。我发现,成分的时间配置和身份会影响它们的联合习得和单独习得。部分异步以及视觉成分的初始呈现有利于表现,从而导致嗅觉成分的更高习得率。这表明,类似于花朵展示部分同步呈现的复合刺激有利于传粉者的表现,从而突出了时间维度对增强效果的关键作用。此外,这支持了以下假设:多模式花朵信号的进化可能受到接收者在自由飞行期间感知到的异步性的青睐。

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