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蜜蜂体内两种报警物质的不同功能。

Different functions of two alarm substances in the honeybee.

作者信息

Balderrama N, Núñez J, Guerrieri F, Giurfa M

机构信息

Instituto de Zoología Agrícola, Facultad de Agronomía, Universidad Central de Venezuela, Aptdo. Postal 4579, Maracay 2101, Aragua, Venezuela.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2002 Jul;188(6):485-91. doi: 10.1007/s00359-002-0321-y. Epub 2002 Jun 18.

Abstract

In the honeybee, isopentyl acetate and 2-heptanone are described as alarm substances. We asked whether both substances have a similar role by testing the effect of their exposure on the appetitive proboscis extension reflex and on the aversive stinging reflex. In the appetitive context of sucrose stimulation no differences were found between isopentyl acetate and 2-heptanone. Small amounts of isopentyl acetate or 2-heptanone (3 microl of 1:9 dilution) yielded a response similar to that of a non-exposed control. Larger amounts of both substances (125 microl of 1:9 dilutions) as well as mixtures led to a decrease of responsiveness to sucrose. In the aversive context of electrical stimulation, significant differences between isopentyl acetate and 2-heptanone were found. Exposure to a small amount of isopentyl acetate (3 microl of 1:9 dilution) or to a large amount of 2-heptanone (125 microl of 1:9 dilution) led to an increase of responsiveness to the electric shock. Larger quantities of isopentyl acetate (125 microl of 1:9 dilution) decreased the responsiveness to the shock. 2-Heptanone never decreased the responsiveness to the shock. Our results indicate that isopentyl acetate and 2-heptanone have different functions even if both are capable of evoking deterrent responses in a defensive context.

摘要

在蜜蜂中,乙酸异戊酯和2-庚酮被描述为报警物质。我们通过测试它们的暴露对正向伸吻反射和负向蜇刺反射的影响,来探究这两种物质是否具有相似的作用。在蔗糖刺激的正向情境中,未发现乙酸异戊酯和2-庚酮之间存在差异。少量的乙酸异戊酯或2-庚酮(1:9稀释液3微升)产生的反应与未暴露的对照组相似。两种物质的大量(1:9稀释液125微升)以及混合物导致对蔗糖的反应性降低。在电刺激的负向情境中,发现乙酸异戊酯和2-庚酮之间存在显著差异。暴露于少量乙酸异戊酯(1:9稀释液3微升)或大量2-庚酮(1:9稀释液125微升)会导致对电击的反应性增加。大量的乙酸异戊酯(1:9稀释液125微升)会降低对电击的反应性。2-庚酮从未降低对电击的反应性。我们的结果表明,即使乙酸异戊酯和2-庚酮在防御情境中都能够引发威慑反应,但它们具有不同的功能。

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