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首页> 外文期刊>Journal of Chemical Ecology: Official Journal of the International Society of Chemical Ecology >Meaningful Words in Crowd Noise: Searching for Volatiles Relevant to Carpenter Bees among the Diverse Scent Blends of Bee Flowers
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Meaningful Words in Crowd Noise: Searching for Volatiles Relevant to Carpenter Bees among the Diverse Scent Blends of Bee Flowers

机译:人群噪音中有意义的话:寻找与木匠蜜蜂相关的挥发物在蜜蜂花的多样化香氛丛中

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摘要

Olfactory cues constitute one of the most important plant-pollinator communication channels. Specific chemical components can be associated with specific pollinator functional groups due to pollinator-mediated selection on flower volatile (FV) emission. Here, we used multivariate analyses of FV data to detect an association between FVs and the worldwide distributed pollinator group of the carpenter bees (Xylocopa spp.). We compiled FVs of 29 plant species: 9 pollinated by carpenter bees, 20 pollinated by other bee pollinator functional groups. We tested whether FV emission differed between these groups. To rule out any phylogenetic bias in our dataset, we tested FV emission for phylogenetic signal. Finally, using field assays, we tested the attractive function of two FVs found to be associated with carpenter bees. We found no significant multivariate difference between the two plant groups FVs. However, seven FVs (five apocarotenoid terpenoids, one long-chain alkane and one benzenoid) were significantly associated with carpenter bee pollination, thus being "predictor" compounds of pollination by this pollinator functional group. From those, beta-ionone and (E)-methyl cinnamate presented the highest indicator values and had their behavioural function assessed in field assays. Phylogenetic signal for FVs emission was weak, suggesting that their emission could result from pollinator-mediated selection. In field assays, the apocarotenoid beta-ionone attracted carpenter bees, but also bees from other functional groups. The benzenoid (E)-methyl cinnamate did not attract significant numbers of pollinators. Thus, beta-ionone functions as a non-specific bee attractant, while apocarotenoid FVs emerge as consistent indicators of pollination by large food-foraging bees among bee-pollinated flowers.
机译:嗅觉线索是植物传粉者最重要的交流渠道之一。由于传粉者对花挥发物(FV)释放的选择,特定的化学成分可能与特定的传粉者官能团有关。在这里,我们使用FV数据的多变量分析来检测FV与全球分布的木匠蜂传粉群(Xylocopa spp.)之间的关联。我们编制了29种植物的FVs:9种由木匠蜜蜂授粉,20种由其他蜜蜂授粉功能群授粉。我们测试了这些组之间的FV排放是否存在差异。为了排除数据集中的任何系统发育偏差,我们测试了FV发射的系统发育信号。最后,通过现场分析,我们测试了两种与木匠蜂相关的FV的吸引功能。我们发现两个植物组FVs之间没有显著的多变量差异。然而,七种FV(五种类胡萝卜素萜类化合物、一种长链烷烃和一种苯类化合物)与木匠蜂授粉显著相关,因此是该授粉者功能群授粉的“预测”化合物。从这些指标中,β-紫罗兰酮和(E)-肉桂酸甲酯的指标值最高,并在现场分析中评估了它们的行为功能。FVs释放的系统发育信号较弱,这表明它们的释放可能是由传粉者介导的选择引起的。在野外试验中,类胡萝卜素β-紫罗兰酮吸引了木匠蜜蜂,也吸引了其他功能群的蜜蜂。苯甲酸(E)-肉桂酸甲酯不会吸引大量传粉者。因此,β-紫罗兰酮是一种非特异性的蜜蜂引诱剂,而类胡萝卜素FV则是蜜蜂传粉花中大型觅食蜜蜂传粉的一致指标。

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