Boll Weevil Res. Lab., USDA, ARS, Mississippi, Mississippi State.
J Chem Ecol. 1985 Jun;11(6):767-79. doi: 10.1007/BF00988304.
Electroantennograms (EAGs) were recorded fromTrirhabda bacharides Le Conte (Coleoptera: Chrysomelidae) females to 28 odorants and volatiles emanating from leaves of 26 plant species including three known host plants,Baccharis halimifolia L.,B. neglecta Britt, andB. salicina T. & G. (Compositae: Asterae). Antennal receptors were highly responsive to components of the green leaf volatile complex, especially 6-carbon saturated and monounsaturated alcohols andtrans-2-hexenal. EAGs elicited by heptanal were greater than those elicited by any other saturated aldehyde. Oxygenated monoterpenes were more active than monoterpene hydrocarbons. β-Bisabolol was the most active sesquiterpene. In general, EAGs to volatiles emanating fromBaccharis and other composite species were greater than those elicited by species from other families. Furthermore, when one considers only plants occurring in the environs ofT bacharides hostB. neglecta, EAGs elicited by its host plant were at least two times greater than those elicited by other coinhabiting plants.
电生理触角反应(EAG)记录了来自 28 种气味物质和 26 种植物叶片挥发物的 Trichrhabda bacharides Le Conte(鞘翅目:叶甲科)雌性昆虫,其中包括三种已知的寄主植物:Baccharis halimifolia L.、B. neglecta Britt 和 B. salicina T. & G.(菊科: Asteraceae)。触角感受器对绿叶挥发物复合物的成分高度敏感,特别是 6 碳饱和和单不饱和醇以及反式-2-己烯醛。庚醛引起的 EAG 大于任何其他饱和醛引起的 EAG。含氧单萜比单萜烃更活跃。β- 大根香叶醇是最活跃的倍半萜。一般来说,来自 Baccharis 和其他菊科植物的挥发性物质引起的 EAG 大于来自其他科的物种引起的 EAG。此外,当只考虑到 Trichrhabda bacharides 寄主 Baccharis neglecta 周围环境中的植物时,其寄主植物引起的 EAG 至少是其他共存植物引起的 EAG 的两倍。