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纳入与生态相关的农药效应指标以评估农药与生物防治剂的兼容性。

Incorporating ecologically relevant measures of pesticide effect for estimating the compatibility of pesticides and biocontrol agents.

作者信息

Stark John D, Vargas Roger, Banks John E

机构信息

Ecotoxicology Program Washington State University Puyallup Research & Extension Center, Puyallup, WA 98371, USA.

出版信息

J Econ Entomol. 2007 Aug;100(4):1027-32. doi: 10.1603/0022-0493(2007)100[1027:iermop]2.0.co;2.

Abstract

The compatibility of biological control agents with pesticides is a central concern in integrated pest management programs. The most common assessments of compatibility consist of simple comparisons of acute toxicity among pest species and select biocontrol agents. A more sophisticated approach, developed by the International Organisation of Biological Control (IOBC), is based on a tiered hierarchy made up of threshold values for mortality and sublethal effects that is used to determine the compatibility of pesticides and biological control agents. However, this method is unable to capture longer term population dynamics, which is often critical to the success of biological control and pest suppression. In this article, we used the delay in population growth index, a measure of population recovery, to investigate the potential impacts that the threshold values for levels of lethal and sublethal effects developed by the IOBC had on three biocontrol agents: sevenspotted lady beetle, Coccinella septempunctata L.; the aphid parasitoid Diaeretiella rapae (M'Intosh), and Fopius arisanus (Sonan), a parasitoid of tephritid flies. Based on life histories of these economically important natural enemies, we established a delay of 1-generation time interval as sufficient to disrupt biological control success. We found that delays equivalent to 1-generation time interval were caused by mortality as low as 50% or reductions of offspring as low as 58%, both values in line with thresholds developed by the IOBC. However, combinations of mortality and reduction of offspring lower than these values (from 32 to 43% each) over a simulated 4-mo period caused significant population delays. Furthermore, the species used in these simulations reacted differently to the same levels of effect. The parasitoid D. rapae was the most susceptible species, followed by F. arisanus and C. septempunctata. Our results indicate that it is not possible to generalize about potential long-term impacts of pesticides on biocontrol agents because susceptibility is influenced by differences in life history variables. Additionally, populations of biocontrol agents may undergo significant damage when mortality approaches 50% or when there is mortality of -30% and a 30% reduction in offspring caused by a sublethal effect. Our results suggest that more ecologically relevant measures of effect such as delays in population growth may advance our knowledge of pesticide impacts on populations of beneficial species.

摘要

在有害生物综合治理计划中,生物防治剂与杀虫剂的兼容性是一个核心问题。最常见的兼容性评估包括对害虫物种和选定生物防治剂之间急性毒性的简单比较。国际生物防治组织(IOBC)开发的一种更复杂的方法,基于由死亡率和亚致死效应阈值组成的分层体系,用于确定杀虫剂和生物防治剂的兼容性。然而,这种方法无法捕捉长期的种群动态变化,而这对生物防治和害虫抑制的成功往往至关重要。在本文中,我们使用种群增长延迟指数(一种种群恢复的度量指标)来研究IOBC制定的致死和亚致死效应水平阈值对三种生物防治剂的潜在影响:七星瓢虫(Coccinella septempunctata L.);蚜虫寄生蜂菜蚜茧蜂(Diaeretiella rapae (M'Intosh)),以及实蝇寄生蜂阿里山潜蝇茧蜂(Fopius arisanus (Sonan))。基于这些具有经济重要性的天敌的生活史,我们确定1代时间间隔的延迟足以破坏生物防治的成功。我们发现,低至50%的死亡率或低至58%的后代数量减少都会导致相当于1代时间间隔的延迟,这两个值都与IOBC制定的阈值一致。然而,在模拟的4个月期间,死亡率和后代数量减少低于这些值(分别为32%至43%)的组合会导致显著的种群延迟。此外,这些模拟中使用的物种对相同水平的影响反应不同。寄生蜂菜蚜茧蜂是最敏感的物种,其次是阿里山潜蝇茧蜂和七星瓢虫。我们 的结果表明,由于敏感性受生活史变量差异的影响,因此无法概括杀虫剂对生物防治剂的潜在长期影响。此外当死亡率接近50%或因亚致死效应导致死亡率为-30%且后代数量减少30%时,生物防治剂的种群可能会受到重大损害。我们的结果表明,更具生态相关性的效应度量指标,如种群增长延迟,可能会增进我们对杀虫剂对有益物种种群影响的了解。

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