Steffan Shawn A, Chasen Elissa M, Deutsch Annie E, Mafra-Neto Agenor
USDA-ARS Vegetable Crops Research Unit, 1630 Linden Drive, Madison, WI 53706 (
Department of Entomology, University of Wisconsin, 1630 Linden Drive, Madison, WI 53706 (
J Insect Sci. 2017 Jan 1;17(2). doi: 10.1093/jisesa/iex025.
Pheromone-based mating disruption has proven to be a powerful pest management tactic in many cropping systems. However, in the cranberry system, a viable mating disruption program does not yet exist. There are commercially available pheromones for several of the major pests of cranberries, including the cranberry fruitworm, Acrobasis vaccinii Riley (Lepidoptera: Pyralidae) and blackheaded fireworm, Rhopobota naevana (Hübner) (Lepidoptera: Tortricidae). Previous studies have shown that mating disruption represents a promising approach for R. naevana management although carrier and delivery technologies have remained unresolved. The present study examined the suitability of Specialized Pheromone & Lure Application Technology (SPLAT; ISCA Technologies, Inc., Riverside, CA), a proprietary wax and oil blend, to serve as a pheromone carrier in the cranberry system. In 2013 and 2014, we tested a blend of pheromones targeting A. vaccinii and R. naevana in field-scale, replicated trials. Pheromones were loaded into SPLAT and the resulting "SPLAT BFW CFW" formulation was deployed in commercial cranberry marshes. We compared moth trap-catch counts within SPLAT-treated blocks to those of conventionally managed blocks. In 2013, applications of SPLAT BFW CFW resulted in highly successful disruption of R. naevana and promising, though inconsistent, disruption of A. vaccinii. To improve disruption of A. vaccinii, the pheromone load was increased in 2014, providing 92% and 74% reductions in trap-catch for R. naevana and A. vaccinii, respectively. Importantly, larval infestation rates in SPLAT-treated blocks were lower than those of conventionally managed blocks. These results suggest that a multispecies mating disruption system (SPLAT BFW CFW) may represent an effective pesticide-alternative for serious pests of cranberries.
基于性信息素的交配干扰已被证明是许多种植系统中一种强大的害虫管理策略。然而,在蔓越莓种植系统中,可行的交配干扰计划尚未存在。有几种用于蔓越莓主要害虫的市售性信息素,包括蔓越莓果蛀蛾,Acrobasis vaccinii Riley(鳞翅目:螟蛾科)和黑头火夜蛾,Rhopobota naevana(Hübner)(鳞翅目:卷蛾科)。先前的研究表明,尽管载体和释放技术仍未解决,但交配干扰是管理黑头火夜蛾的一种有前景的方法。本研究检验了专用性信息素与诱芯应用技术(SPLAT;ISCA Technologies公司,加利福尼亚州里弗赛德),一种专有的蜡和油混合物,作为蔓越莓种植系统中性信息素载体的适用性。在2013年和2014年,我们在田间规模的重复试验中测试了一种针对蔓越莓果蛀蛾和黑头火夜蛾的性信息素混合物。将性信息素装入SPLAT中,得到的“SPLAT BFW CFW”制剂被部署在商业蔓越莓沼泽中。我们将SPLAT处理区的诱捕蛾数与传统管理区的诱捕蛾数进行了比较。2013年,应用SPLAT BFW CFW对黑头火夜蛾的交配干扰非常成功,对蔓越莓果蛀蛾的干扰虽有希望但不一致。为了改善对蔓越莓果蛀蛾的干扰,2014年增加了性信息素的负载量,分别使黑头火夜蛾和蔓越莓果蛀蛾的诱捕量减少了92%和74%。重要的是,SPLAT处理区的幼虫侵染率低于传统管理区。这些结果表明,多物种交配干扰系统(SPLAT BFW CFW)可能是蔓越莓严重害虫的一种有效的农药替代品。