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输掉军备竞赛:大蜡螟能感知但忽略蜜蜂警报信息素

Losing the Arms Race: Greater Wax Moths Sense but Ignore Bee Alarm Pheromones.

作者信息

Li Yuan, Jiang Xingchuan, Wang Zhengwei, Zhang Junjun, Klett Katrina, Mehmood Shahid, Qu Yufeng, Tan Ken

机构信息

CAS Key Laboratory of Tropical Forest Ecology, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Kunming 650000, China.

College of Life Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Insects. 2019 Mar 23;10(3):81. doi: 10.3390/insects10030081.

Abstract

The greater wax moth, L., is one of main pests of honeybees. The larvae burrow into the wax, damaging the bee comb and degenerating bee products, but also causes severe effects like driving the whole colony to abscond. In the present study, we used electroantennograms, a Y maze, and an oviposition site choice bioassay to test whether the greater wax moth can eavesdrop on bee alarm pheromones (isopentyl acetate, benzyl acetate, octyl acetate, and 2-heptanone), to target the bee colony, or if the bee alarm pheromones would affect their preference of an oviposition site. The results revealed that the greater wax moth showed a strong electroantennogram response to these four compounds of bee alarm pheromones even in a low concentration (100 ng/μL), while they showed the highest response to octyl acetate compared to the other three main bee alarm components (isopentyl acetate, benzyl acetate, and 2-heptanone). However, the greater wax moth behavioral results showed no significant preference or avoidance to these four bee alarm pheromones. These results indicate that bees are currently losing the arms race since the greater wax moth can sense bee alarm pheromones, however, these alarm pheromones are ignored by the greater wax moth.

摘要

大蜡螟(Galleria mellonella L.)是蜜蜂的主要害虫之一。其幼虫会钻进蜂蜡中,破坏蜂巢并使蜂产品变质,还会引发严重后果,比如致使整个蜂群弃巢逃跑。在本研究中,我们运用触角电图、Y型迷宫和产卵位点选择生物测定法,来测试大蜡螟是否能够窃听蜜蜂警报信息素(乙酸异戊酯、乙酸苄酯、乙酸辛酯和2-庚酮),以此来定位蜂群,或者蜜蜂警报信息素是否会影响它们对产卵位点的偏好。结果显示,即使在低浓度(100纳克/微升)下,大蜡螟对这四种蜜蜂警报信息素化合物仍表现出强烈的触角电图反应,而相较于其他三种主要的蜜蜂警报成分(乙酸异戊酯、乙酸苄酯和2-庚酮),大蜡螟对乙酸辛酯的反应最为强烈。然而,大蜡螟的行为结果表明,它对这四种蜜蜂警报信息素没有明显的偏好或回避。这些结果表明,由于大蜡螟能够感知蜜蜂警报信息素,蜜蜂目前正在输掉这场军备竞赛,然而,这些警报信息素却被大蜡螟忽视了。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/165d/6468870/3a99869673ef/insects-10-00081-g001.jpg

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