Cossé Allard A, Bartelt Robert J, Zilkowski Bruce W, Bean Daniel W, Andress Earl R
Crop Bioprotection Research Unit, National Center for Agricultural Utilization Research, USDA Agricultural Research Service, 1815 N. University Street, Peoria, IL 61604, USA.
J Chem Ecol. 2006 Dec;32(12):2695-708. doi: 10.1007/s10886-006-9193-x.
Biological activity and chemistry of host plant volatiles were investigated for Diorhabda elongata, Brullé (Coleoptera: Chrysomelidae), a biological control agent for the invasive tree, saltcedar (Tamarix spp., Tamaricaceae). Gas chromatographic-electroantennographic detection (GC-EAD) analysis of volatiles collected from adult D. elongata feeding on saltcedar foliage or from saltcedar foliage alone showed 15 antennally active compounds. These compounds were more abundant in collections from beetle-infested foliage. Antennally active compounds were identified by GC-mass spectrometry (MS) and confirmed with authentic standards. The emissions of the most abundant GC-EAD-active compounds, green leaf volatiles (GLV), were quantitated by GC-MS. A blend of four GLV compounds, mimicking the natural blend ratio, was highly attractive to male and female D. elongata in the field, and a combination of GLV and male-produced aggregation pheromone attracted significantly greater numbers of D. elongata than did either bait alone. A preliminary experiment with a blend of seven additional GC-EAD-active saltcedar volatiles did not show any behavioral activity. The combination of the pheromone and the green leaf odor blend could be a useful attractant in detecting the presence of the biocontrol agent, D. elongata, in stands of saltcedar newly colonized by the beetle.
对食叶甲科叶甲属的长角叶甲(Diorhabda elongata, Brullé)的寄主植物挥发物的生物活性和化学性质进行了研究,长角叶甲是入侵树种柽柳(Tamarix spp., 柽柳科)的一种生物防治剂。对从取食柽柳叶的成年长角叶甲或仅从柽柳叶上收集的挥发物进行气相色谱 - 电触角检测(GC - EAD)分析,结果显示有15种具有触角活性的化合物。这些化合物在受甲虫侵害的叶片提取物中含量更高。通过气相色谱 - 质谱联用(GC - MS)鉴定了具有触角活性的化合物,并使用标准品进行了确认。通过GC - MS对最丰富的GC - EAD活性化合物——绿叶挥发物(GLV)的排放量进行了定量。模拟天然混合比例的四种GLV化合物混合物在田间对长角叶甲的雄性和雌性具有高度吸引力,并且GLV与雄性产生的聚集信息素的组合比单独使用任何一种诱饵吸引的长角叶甲数量都显著更多。对另外七种GC - EAD活性柽柳挥发物混合物进行的初步实验未显示出任何行为活性。信息素与绿叶气味混合物的组合可能是一种有用的引诱剂,用于检测在甲虫新定植的柽柳林中生物防治剂长角叶甲的存在。