al Abassi S, Birkett M A, Pettersson J, Pickett J A, Wadhams L J, Woodcock C M
Department of Entomology, Swedish University of Agricultural Sciences, Box 7044, 750 07 Uppsala, Sweden.
J Chem Ecol. 2001 Jan;27(1):33-43. doi: 10.1023/a:1005611831786.
Electrophysiological and behavioral responses of the ladybird parasitoid Dinocampus coccinellae to volatiles from the seven-spot ladybird, Coccinella septempunctata, were investigated to identify semiochemicals involved in host location. Coupled gas chromatography-electroantennography (GC-EAG) with D. coccinellae located a small peak of prominent activity in an extract of volatiles from adult C. septempunctata. The active compound was identified by coupled GC-mass spectrometry and by comparison with an authentic sample as the free-base alkaloid precoccinelline, which forms part of the toxic defense of this ladybird. Behavioral studies in an olfactometer showed that D. coccinellae was significantly attracted to the volatile extract and also to the alkaloid. Myrrhine, a stereoisomer of precoccinelline found in low amounts in C. septempunctata and in other ladybird species, was shown to be electrophysiologically active and significantly attractive. Perception of ladybird alkaloids by D. coccinellae is a rare example of toxicants acting as aerially transmitted cues for interactions between the third and fourth trophic levels.
为了确定参与宿主定位的信息化学物质,研究了瓢虫寄生蜂双斑截尾寄蝇(Dinocampus coccinellae)对七星瓢虫(Coccinella septempunctata)挥发物的电生理和行为反应。采用气相色谱-触角电位联用技术(GC-EAG),双斑截尾寄蝇在七星瓢虫成虫挥发物提取物中定位到一个活性显著的小峰。通过气相色谱-质谱联用技术并与标准样品比较,鉴定出活性化合物为游离碱生物碱前瓢虫素,它是这种瓢虫有毒防御机制的一部分。在嗅觉仪中进行的行为研究表明,双斑截尾寄蝇对挥发物提取物和生物碱都有显著的趋性。在七星瓢虫和其他瓢虫物种中含量较低的前瓢虫素立体异构体苦林碱,被证明具有电生理活性且具有显著的吸引力。双斑截尾寄蝇对瓢虫生物碱的感知是有毒物质作为第三和第四营养级之间相互作用的空中传播线索的罕见例子。