Affiliation:
1. Chinese Academy of Science, China;
2. Chinese Academy of Science; Yunnan Agricultural University, China;
3. University of California, San Diego, USA
Abstract
Abstract
Social pollinators such as honey bees face attacks from predators not only at the nest, but also during foraging. Pollinating honey bees can therefore release alarm pheromones that deter conspecifics from visiting dangerous inflorescences. However, the effect of alarm pheromone and its chemical components upon bee avoidance of dangerous food sources remains unclear. We tested the responses of giant honey bee foragers, A. dorsata, presented with alarm pheromone at a floral array. Foragers investigated the inflorescence with natural alarm pheromone, but 3.3 fold more foragers preferred to land on the "safe" inflorescence without alarm pheromone. Using GC-MS analysis, we identified eight chemical components in the alarm pheromone, of which three components (1-octanol, decanal, and gamma-octanoic lactone) have not previously been reported in this species. We bioassayed six major compounds and found that a synthetic mixture of these compounds elicited behaviors statistically indistinguishable from responses to natural alarm pheromone. By testing each compound separately, we show that gamma-octanoic lactone, isopentyl acetate, and (E)-2-decen-1-yl acetate are active compounds that elicit significant alarm responses. Gamma-octanoic lactone elicited the strongest response to a single compound and has not been previously reported in honey bee alarm pheromone. Isopentyl acetate is widely found in the alarm pheromones of sympatric Asian honey bee species, and thus alarmed A. dorsata foragers may produce information useful for conspecifics and heterospecifics, thereby broadening the effects of alarm information on plant pollination.
Publisher
The Company of Biologists
Subject
Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics
Reference53 articles.
1. Bumblebees avoid flowers containing evidence of past predation events;Abbott;Can. J. Zool.,2006
2. Pheromone communication in social insects: sources and secretions;Billen;Pheromone Communication in Social Insects,1998
3. Alarm pheromones;Blum;Annu. Rev. Entomol.,1969
4. Chemical characters of two related species of giant honeybees (Apis dorsata and A. laboriosa): possible ecological significance;Blum;J. Chem. Ecol.,2000
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