有效减少信息素诱捕器中的天敌捕获量,以监测啮齿目 Orthotomicus erosus(鞘翅目,蟋蟀科)的情况

Forests Pub Date : 2024-07-25 DOI:10.3390/f15081298
M. Pernek, Tomislav Milas, Marta Kovač, N. Lacković, Milan Koren, B. Hrašovec
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摘要

树皮甲虫 Orthotomicus erosus 在克罗地亚沿海地区突然大规模爆发后,虫害持续存在,因此必须与这种害虫进行持续斗争。建议采取的一项保护措施是利用信息素诱捕器进行种群监测。根据以往的监测记录,使用信息素诱捕器捕获天敌的比率极高;这些诱捕器无意中阻碍了天敌发挥其控制树皮甲虫种群的重要作用。为了解决并大大减少这种意外捕获的情况,我们的研究设计了一种对 Theysohn 型信息素诱捕器的改进,在诱捕容器内集成了一个金属网。我们在马尔扬森林公园建立了一个实验装置,该公园位于一个三面临海、部分与斯普利特市接壤的半岛上。出于监测目的,在 2018 年克罗地亚爆发严重的蚕蛾疫情时,部署了未经改良的标准信息素诱捕器。2020 年至 2022 年的捕获数据显示,树皮甲虫数量明显减少,表明已进入潜伏期。2022 年,改进后的诱捕器被整合到现有的监测装置中,由 10 对诱捕器组成,以评估对诱捕器的改进是否能显著减少树皮甲虫天敌的捕获量,特别是 Temnoscheila caerulea、Thanasimus formicarius 和 Aulonium ruficorne。目的是为林业实践提供建议,在使用信息素诱捕器时尽量减少对生态平衡的干扰。我们的研究结果表明,对诱捕器的改造明显减少了天敌的捕获量,尤其是在诱捕器中发现的主要捕食昆虫 T. caerulea。同时,目标物种(诱捕器中的所有树皮甲虫)的捕获量也略有减少。当信息素诱捕器主要用于监测目的时,目标树皮甲虫物种 O. erosus 的捕获率下降并不会造成问题。对诱捕器的改进大大减少了对常见树皮甲虫捕食者的捕获,从而有利于在森林保护工作中采取更加平衡的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effective Reduction in Natural Enemy Catches in Pheromone Traps Intended for Monitoring Orthotomicus erosus (Coleoptera, Curculionidae)
Infestations have persisted following a sudden and intense outbreak of the bark beetle Orthotomicus erosus along the Croatian coast, necessitating a continuous battle against this pest. A recommended protective action is the utilization of pheromone traps for population surveillance. Previous monitoring efforts have recorded an exceptionally high capture rate of natural enemies using pheromone traps; these traps inadvertently prevented natural enemies from fulfilling their essential role in controlling bark beetle populations. To address and significantly diminish instances of this unintended capture, our study designed a modification to the Theysohn-type pheromone trap by integrating a metal mesh within the trapping container. An experimental setup was established in Marjan Forest Park, situated on a peninsula bordered by the sea on three sides and partly by the city of Split. For monitoring purposes, unmodified standard pheromone traps were deployed at the onset of a significant O. erosus outbreak in Croatia in 2018. Catch data from 2020 to 2022 show a marked decrease in the bark beetle population, indicating a shift toward a latent phase. In 2022, modified traps were integrated into the existing monitoring setup, consisting of 10 pairs, to evaluate whether modifications to the traps could significantly reduce the capture of the bark beetle’s natural enemies, specifically Temnoscheila caerulea, Thanasimus formicarius, and Aulonium ruficorne. The objective is to offer recommendations for forestry practices on employing pheromone traps with minimal disturbance to the ecological equilibrium. Our findings indicate that the modifications to the traps markedly decreased the capture of natural predators, particularly T. caerulea, which was the predominant predatory insect found in the traps. Simultaneously, captures of the target species, all bark beetles in the trap, were marginally reduced. This decrease in the capture rates of the target bark beetle species, O. erosus, is not considered problematic when pheromone traps are utilized primarily for monitoring purposes. The modifications to the traps significantly reduced the capture of common bark beetle predators, thereby facilitating a more balanced strategy in forest protection efforts.
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