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Possible use of synthetic aggregation pheromones to control stinkbug Plautia stali in kaki persimmon orchards.

机译:可以使用合成的聚集信息素来控制柿柿果园中的臭鼬 Plautia stali

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The brown-winged green stinkbug Plautia stali Scott (Hemiptera: Pentatomidae) is the most serious pest of all noxious stinkbugs in various orchards in Japan. An area-wide integrated pest management programme using the species-specific aggregation pheromone is desirable to control P. stali because nonspecific insecticides may kill arthropod natural enemies and induce the resurgence of other endemic pests. The traditional mass-trapping method is not expected to be effective as a result of huge migrations from cypress forests. Therefore, we chose an 'attract-and-kill' strategy of intensively installing poisonous eggplants with a synthetic aggregation pheromone lure as enclosures for the target orchards. We found no overall control effect of the installation of poisonous eggplants, although regional differences were observed, which might originate from topological configurations or the distance from the source population in cypress forests. The poisonous eggplants with an aggregation-pheromone lure, however, changed the spatial distribution of fruit damage, appearing to induce the majority of the damage within a 100-m range of the poisonous eggplants. Some damage, although at a low level, was found in regions 100-200 m away from the poisonous eggplants. We postulate that such low-damage regions were created because the majority of the bugs dispersed from the centre of the orchards to the areas with poisonous eggplants. The present study, in which the spatial scale of the damage spillover was estimated at approximately 150 m, has important implications for future strategies of attract-and-kill and possibly push-pull.
机译:棕色翅膀的绿色臭鼬 Plautia stali Scott(半翅目:Pentatomidae)是日本各个果园中所有有毒臭鼬中最严重的害虫。需要使用物种特异性聚集信息素进行区域范围的病虫害综合防治计划,以控制磷。 stali ,因为非特异性杀虫剂可能杀死节肢动物的天敌并引起其他地方病虫害的复发。由于从柏树森林大量迁徙,传统的诱捕方法预计不会奏效。因此,我们选择了一种“吸引和杀死”策略,以密集安装带有合成聚集信息素诱饵的有毒茄子作为目标果园的围栏。我们发现有毒茄子的安装没有总体控制效果,尽管观察到区域差异,这可能是由于柏树森林的拓扑结构或与源种群的距离引起的。然而,带有聚集信息素诱饵的有毒茄子改变了果实受损的空间分布,似乎在有毒茄子的100 m范围内引起了大部分伤害。在距有毒茄子100-200 m的区域发现了一些损坏,尽管危害程度很小。我们假定创建这种低伤害区域是因为大多数虫子从果园中心散布到有毒茄子的区域。目前的研究估计损害溢出的空间范围约为150 m,这对未来的引诱和杀伤策略以及可能的推挽策略具有重要意义。

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