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快速击倒测试在诊断储粮害虫米象(鞘翅目:象甲科)对磷化氢抗性中的发展。

Development of a Quick Knockdown Test for Diagnosing Resistance to Phosphine in Sitophilus oryzae (Coleoptera: Curculionidae), a Major Pest of Stored Products.

机构信息

Department of Agriculture and Fisheries, Queensland, Ecosciences Precinct, Brisbane, Australia.

Biosecurity Operations Divison, Department of Agriculture and Water Resources, Brisbane Airport, Australia.

出版信息

J Econ Entomol. 2019 Aug 3;112(4):1975-1982. doi: 10.1093/jee/toz085.

Abstract

A key component in the management of resistance to fumigant phosphine in stored products pests is their early detection and implementation of control strategies. Currently, resistance testing involves exposing adults to a specific discriminating concentration over a fixed time period (20-48 h). Although it is widely adopted, this test takes significant time for assay preparation (up to 4 wk) as well as diagnosis (1-2 wk). To address these lacunae, we have established a 'quick knockdown test' using a key grain insect pest, rice weevil, Sitophilus oryzae (L.). Susceptible, weakly and strongly phosphine-resistant reference strains were exposed to a threshold concentration of phosphine over short exposure periods (min to h). The time to knockdown (KT) responses to phosphine were characterized at 2 (1,440 ppm) and 5 mg/liter (3,600 ppm). The time to 99.9% KT (KT99.9) at 2 mg/liter was 12.52 min for the susceptible adults, compared with 167.9 and 1,510 min in the case of weakly and strongly resistant phenotypes, respectively. As anticipated, increasing the concentration of phosphine to 5 mg/liter halved the KT99.9 (81.57 min) to separate weakly and strongly resistant populations than it was required at 2 mg/liter. We validated the KT99.9 value for the 5 mg/liter against field-derived populations of S. oryzae. The results were aligned with the existing Food and Agriculture Organization approach, confirming that the proposed 'quick test' is a reliable tool to rapidly diagnose resistance in this species.

摘要

在储存产品害虫中对熏蒸剂磷化氢抗性进行管理的一个关键组成部分是它们的早期检测和实施控制策略。目前,抗性测试涉及将成虫暴露于特定的区分浓度下,暴露时间固定(20-48 小时)。尽管它被广泛采用,但这种测试在实验准备(长达 4 周)和诊断(1-2 周)方面都需要大量时间。为了解决这些空白,我们使用主要的谷物害虫米象,Sitophilus oryzae(L.)建立了一种“快速击倒测试”。将敏感、弱和强磷化氢抗性参考菌株暴露于短暴露期(分钟至小时)下的阈值磷化氢浓度下。在 2(1440 ppm)和 5 毫克/升(3600 ppm)下,对磷化氢的击倒时间(KT)反应进行了特征描述。在 2 毫克/升时,敏感成虫的 KT99.9(99.9%的击倒时间)为 12.52 分钟,而弱和强抗性表型的 KT99.9分别为 167.9 和 1510 分钟。正如预期的那样,将磷化氢浓度增加到 5 毫克/升,将 KT99.9(81.57 分钟)减半,以区分弱和强抗性种群,这比在 2 毫克/升时所需的时间更短。我们验证了 5 毫克/升的 KT99.9 值与源自田间的 S.oryzae 种群。结果与现有的粮食及农业组织方法一致,证实了所提出的“快速测试”是一种快速诊断该物种抗性的可靠工具。

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