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觅食角色和基因型对蜜蜂(Apis mellifera L.)对光和蔗糖响应的影响。

The effects of foraging role and genotype on light and sucrose responsiveness in honey bees (Apis mellifera L.).

机构信息

Department of Entomology, University of California, Davis, One Shields Ave, Davis, CA 95616, USA.

出版信息

Behav Brain Res. 2009 Dec 14;205(1):132-7. doi: 10.1016/j.bbr.2009.07.022. Epub 2009 Jul 28.

Abstract

In honey bees, the sensory system can be measured by touching sugar water to the antennae, eliciting the extension of the proboscis. The proboscis extension response (PER) [6,13] is closely associated with complex behavioral traits involving foraging and learning [30-32,34-36,43-49]. Bees specializing in pollen foraging are more responsive to low concentrations of sucrose solution and, as a consequence, perform better in associative learning assays [4,43,46-48]. An important unanswered question is whether sensory-motor differences between pollen and nectar specialists are restricted to the gustatory modality or whether pollen foragers are in general more sensitive to sensory stimuli associated with foraging. We used an assay designed to test responsiveness to varying intensities of light [11] and tested responsiveness to varying concentrations of sucrose in wild-type pollen and non-pollen foragers and bees artificially-selected for differences in pollen-hoarding behavior [27]. Workers of the high pollen-hoarding strain are more likely to specialize on collecting pollen. In wild-type bees, pollen foragers were more responsive to sucrose and light than non-pollen foragers. In the selected strains, high pollen-hoarding pre-foragers were more responsive to sucrose and light than low pollen-hoarding pre-foragers. These PER and light assays demonstrate a positive relationship between the gustatory and visual sensory modalities with respect to foraging behavior and genotype. We propose that light responsiveness, in addition to sucrose responsiveness, is a component of a pollen-hoarding behavioral syndrome - a suite of traits that covary with hoarding behavior [51,52] - previously described for honey bees [14,37,41]. We suggest that the modulation of the sensory system may be partially constrained by the interdependent modulation of multiple sensory modalities associated with hoarding and foraging.

摘要

在蜜蜂中,可以通过将糖水触碰到触角来测量感觉系统,从而引发触角的伸展。触角延伸反应 (PER) [6,13] 与涉及觅食和学习的复杂行为特征密切相关 [30-32,34-36,43-49]。专门采集花粉的蜜蜂对低浓度的蔗糖溶液反应更灵敏,因此在联想学习测试中表现更好 [4,43,46-48]。一个重要的未解决的问题是,花粉和花蜜专家之间的感觉-运动差异是否仅限于味觉模式,或者花粉觅食者是否普遍对与觅食相关的感觉刺激更敏感。我们使用了一种旨在测试对不同强度光的反应的测试 [11],并测试了野生型花粉和非花粉觅食者以及人工选择在花粉贮藏行为上存在差异的蜜蜂对不同浓度蔗糖的反应 [27]。高花粉贮藏量的工蜂更有可能专门收集花粉。在野生型蜜蜂中,花粉觅食者对蔗糖和光的反应比非花粉觅食者更敏感。在选择的品系中,高花粉贮藏量的预觅食者对蔗糖和光的反应比低花粉贮藏量的预觅食者更敏感。这些 PER 和光测试表明,味觉和视觉感觉模式与觅食行为和基因型之间存在正相关关系。我们提出,光反应性除了蔗糖反应性之外,还是一种花粉贮藏行为综合征的组成部分——一套与贮藏行为相关的特征 [51,52]——以前在蜜蜂中描述过 [14,37,41]。我们认为,感觉系统的调制可能部分受到与贮藏和觅食相关的多种感觉模式的相互调制的限制。

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