Vargas Roger I, Souder Steven K, Nkomo Eddie, Cook Peter J, Mackey Bruce, Stark John D
Daniel K. Inouye, U.S. Pacific Basin Agricultural Research Center, USDA-ARS, 64 Nowelo St. Hilo, HI 96720.
Farma Tech International, 1546 Boalch Avenue NW, Suite 30, North Bend, WA 98045.
J Econ Entomol. 2015 Aug;108(4):1612-23. doi: 10.1093/jee/tov137. Epub 2015 Jun 4.
Solid male lure dispensers containing methyl eugenol (ME) and raspberry ketone (RK), or mixtures of the lures (ME + RK), and dimethyl dichloro-vinyl phosphate (DDVP) were evaluated in area-wide pest management bucket or Jackson traps in commercial papaya (Carica papaya L.) orchards where both oriental fruit fly, Bactrocera dorsalis (Hendel), and melon fly, Bactrocera cucurbitae (Coquillett), are pests. Captures of B. dorsalis with fresh wafers in Jackson and bucket traps were significantly higher on the basis of ME concentration (Mallet ME [56%] > Mallet MR [31.2%] > Mallet MC [23.1%]). Captures of B. cucurbitae with fresh wafers in Jackson and bucket traps were not different regardless of concentration of RK (Mallet BR [20.1%] = Mallet MR [18.3%] = Mallet MC [15.9%]). Captures of B. dorsalis with fresh wafers, compared with weathered wafers, were significantly different after week 12; captures of B. cucurbitae were not significantly different after 16 wk. Chemical analyses revealed presence of RK in dispensers in constant amounts throughout the 16-wk trial. Degradation of both ME and DDVP over time was predicted with a high level of confidence by nonlinear asymptotic exponential decay curves. Results provide supportive data to deploy solid ME and RK wafers (with DDVP) in fruit fly traps for detection programs, as is the current practice with solid TML dispensers placed in Jackson traps. Wafers with ME and RK might be used in place of two separate traps for detection of both ME and RK responding fruit flies and could potentially reduce cost of materials and labor by 50%.
在商业木瓜(番木瓜)果园的区域害虫管理桶式或杰克逊诱捕器中,对含有甲基丁香酚(ME)和覆盆子酮(RK)或诱捕剂混合物(ME + RK)以及二甲基二氯乙烯基磷酸酯(DDVP)的固体雄性诱捕剂分配器进行了评估,该果园中东方果实蝇(橘小实蝇)和瓜实蝇均为害虫。基于ME浓度,在杰克逊诱捕器和桶式诱捕器中,新鲜饵片对橘小实蝇的诱捕量显著更高(Mallet ME [56%] > Mallet MR [31.2%] > Mallet MC [23.1%])。无论RK浓度如何,在杰克逊诱捕器和桶式诱捕器中,新鲜饵片对瓜实蝇的诱捕量没有差异(Mallet BR [20.1%] = Mallet MR [18.3%] = Mallet MC [15.9%])。与风化饵片相比,新鲜饵片对橘小实蝇的诱捕量在第12周后有显著差异;对瓜实蝇的诱捕量在16周后没有显著差异。化学分析表明,在整个16周的试验中,分配器中RK的含量恒定。通过非线性渐近指数衰减曲线可以高度可靠地预测ME和DDVP随时间的降解情况。结果提供了支持性数据,可将固体ME和RK饵片(含DDVP)用于果蝇诱捕检测项目,就像目前在杰克逊诱捕器中放置固体TML分配器的做法一样。含有ME和RK的饵片可用于替代两个单独的诱捕器,以检测对ME和RK有反应的果蝇,并且有可能将材料和劳动力成本降低50%。