Szendrei Zsofia, Malo Edi, Stelinski Lukasz, Rodriguez-Saona Cesar
Rutgers University, P.E. Marucci Center for Blueberry and Cranberry Research and Extension, 125A Lake Oswego Rd., Chatsworth, NJ 08019, USA.
Environ Entomol. 2009 Jun;38(3):861-9. doi: 10.1603/022.038.0340.
The oligophagous cranberry weevil, Anthonomus musculus Say, causes economic losses to blueberry growers in New Jersey because females deposit eggs into developing flower buds and subsequent larval feeding damages buds, which fail to produce fruit. A cost-effective and reliable method is needed for monitoring this pest to correctly time insecticide applications. We studied the behavioral and antennal responses of adult A. musculus to its host plant volatiles to determine their potential for monitoring this pest. We evaluated A. musculus response to intact and damaged host plant parts, such as buds and flowers in Y-tube bioassays. We also collected and identified host plant volatiles from blueberry buds and open flowers and performed electroantennograms with identified compounds to determine the specific chemicals eliciting antennal responses. Male weevils were more attracted to blueberry flower buds and were repelled by conspecific-damaged buds compared with clean air. In contrast, females were more attracted to open flowers compared with flower buds. Nineteen volatiles were identified from blueberry buds; 10 of these were also emitted from blueberry flowers. Four of the volatiles emitted from both blueberry buds and flowers [hexanol, (Z)-3-hexenyl acetate, hexyl acetate, and (Z)-3-hexenyl butyrate] elicited strong antennal responses from A. musculus. Future laboratory and field testing of the identified compounds in combination with various trap designs is planned to develop a reliable monitoring trap for A. musculus.
寡食性蔓越莓象甲(Anthonomus musculus Say)给新泽西州的蓝莓种植者造成了经济损失,因为雌虫会将卵产在发育中的花芽中,随后幼虫取食会损害花芽,导致花芽无法结果。需要一种经济高效且可靠的方法来监测这种害虫,以便准确确定杀虫剂的施用时间。我们研究了成年寡食性蔓越莓象甲对其寄主植物挥发物的行为和触角反应,以确定这些挥发物用于监测这种害虫的潜力。我们在Y型管生物测定中评估了寡食性蔓越莓象甲对完整和受损寄主植物部分(如花芽和花朵)的反应。我们还从蓝莓花芽和开放花朵中收集并鉴定了寄主植物挥发物,并用鉴定出的化合物进行触角电位测定,以确定引发触角反应的特定化学物质。与清洁空气相比,雄虫对蓝莓花芽更有吸引力,对同种损伤的花芽有排斥反应。相比之下,雌虫对开放花朵的吸引力大于花芽。从蓝莓花芽中鉴定出19种挥发物;其中10种也从蓝莓花朵中释放出来。从蓝莓花芽和花朵中都释放出的四种挥发物[己醇、(Z)-3-己烯基乙酸酯、己基乙酸酯和(Z)-3-己烯基丁酸酯]引发了寡食性蔓越莓象甲强烈的触角反应。计划未来对鉴定出的化合物与各种诱捕器设计相结合进行实验室和田间测试,以开发一种可靠的寡食性蔓越莓象甲监测诱捕器。