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应用生态学报 ›› 2009, Vol. 20 ›› Issue (08): 1973-1979.

• 研究报告 • 上一篇    下一篇

豆野螟成虫触角对植物挥发性和性信息素化合物的触角电位反应

王霞1;徐静2;沈幼莲3;刘凤英1;杜永均1   

  1. 1温州医学院健康与环境生态研究所| 浙江温州 325035;2温州市农业科学院食品研究所| 浙江温州 325006;3慈溪市森林病虫防治检疫站|浙江慈溪 315300
  • 收稿日期:2008-12-03 出版日期:2009-08-20 发布日期:2009-08-20

Electroantennogram responses of Maruca testulalis (Lepidoptera: Pyralidae) to plant volatiles and sex pheromone.

WANG Xia1;XU Jing2;SHEN You-lian3;LIU Feng-ying1;DU Yong-jun1   

  1. 1Institute of Health and Environmental Ecology, Wenzhou Medical College, Wenzhou 325035, Zhejiang, China;2Institute of Food Processing, Wenzhou Academy of Agricultural Sciences, Wenzhou 325006, Zhejiang, China|3Cixi Forest Pest Control and Quarantine Stations, Cixi 315300, Zhejiang, China
  • Received:2008-12-03 Online:2009-08-20 Published:2009-08-20

摘要: 以顺3-己烯乙酸酯为标准化合物,研究了豆野螟雌、雄成虫触角对不同浓度的植物挥发性和性信息素化合物组分的触角电位(EAG)反应.结果表明:豆野螟雌、雄成虫触角对植物挥发性气味具有强烈的EAG反应,但在大部分浓度下,雌、雄虫的反应没有显著差异.在测试的9种植物挥发性化合物中,雌、雄虫对高浓度反-2-己烯醛刺激的相对EAG反应的最大值分别达到250%和260%,且雌、雄虫触角对这种化合物的EAG反应的形状也有很大差异;但对豇豆花气味中的柏木烯和柏木脑没有明显的EAG反应.雌、雄蛾对性信息素都有明显反应,且雌、雄虫的反应存在显著差异,雄虫触角对性信息素化合物主要组分(反10,反12)-十六碳二烯醛的EAG反应的最大值达到250%,远超过雌虫反应的最大值(53%).雌、雄成虫这种神经感觉反应的差异反映了它们在感器结构、功能和行为上的差异.

关键词: 豆野螟, 触角电位记录, 植物挥发性化合物, 性信息素, 根际增施CO2, 光合特性, 产量, 品质, 网纹甜瓜

Abstract: By using cis-3-hexenyl acetate as standard chemical, the electroante
nnogram (EAG) responses of Maruca testulalis (Lepidoptera, Pyralididae) to p
lant volatiles and sex pheromone were investigated. Both the males and the femal
es of M. testulalis showed strong EAG responses to the volatiles, but no sig
nificant difference was observed under most test concentrations. Among the test
nine plant volatiles, the males and females had greater difference in the shape
of EAG response to trans-2-hexenal, and their maximum  EAG relative response to
 high concentration trans-2-hexenal was 250% and 260%, respectively. No obviou
s EAG responses were observed to the cedrene and cedrol from cowpea Vigna unguic
ulata floral. Both the male and the female moths showed clear EAG responses to s
ex pheromone, and significant difference was detected between males and females.
 The maximum  EAG relative response of the males to (E10, E12)-16 CHO, a main co
mponent of sex pheromone, was 250%, while that of the females was only 53%. The
difference in the EAG responses between the males and females reflected the diff
erence in the structure, function and behavior of the males and females olfacto
ry system.

Key words: Maruca testulalis, electroantennogram (EAG), plant volatiles, sex pheromone, muskmelon, increasing application of CO2 to rhizosphere, photosynthetic characteristics, yield, quality.