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用于监测烟粉虱杀虫剂抗性的下一代分子诊断技术(TaqMan qPCR 和 ddPCR)。

Next-generation molecular diagnostics (TaqMan qPCR and ddPCR) for monitoring insecticide resistance in Bemisia tabaci.

机构信息

Institute of Molecular Biology and Biotechnology, Foundation for Research and Technology-Hellas, Heraklion, Greece.

Pesticide Science Laboratory, Department of Crop Science, Agricultural University of Athens, Athens, Greece.

出版信息

Pest Manag Sci. 2022 Nov;78(11):4994-5001. doi: 10.1002/ps.7122. Epub 2022 Aug 27.

Abstract

BACKGROUND

Insecticide resistance has developed in several populations of the whitefly Bemisia tabaci worldwide and threatens to compromise the efficacy of chemical control. The molecular mechanisms underpinning resistance have been characterized and markers associated with the trait have been identified, allowing the development of diagnostics for individual insects.

RESULTS

TaqMan and Droplet Digital PCR (ddPCR) assays were developed and validated, in individual and pooled whitefly samples, respectively, for the following target-site mutations: the acetylcholinesterase (ace1) F331W mutation conferring organophosphate-resistance; the voltage-gated sodium channel (vgsc) mutations L925I and T929V conferring pyrethroid-resistance; and the acetyl-CoA carboxylase (acc) A2083V mutation conferring ketoenol-resistance. The ddPCR's limit of detection (LoD) was <0.2% (i.e. detection of one heterozygote whitefly in a pool of 249 wild-type individuals). The assays were applied in 11 B. tabaci field populations from four locations in Crete, Greece. The F331W mutation was detected to be fixed or close to fixation in eight of 11 B. tabaci populations, and at lower frequency in the remaining ones. The pyrethroid-resistance mutations were detected at very high frequencies. The A2083V spiromesifen resistance mutation was detected in eight of 11 populations (frequencies = 6.16-89.56%). Spiromesifen phenotypic resistance monitoring showed that the populations tested had variable levels of resistance, ranging from full susceptibility to high resistance. A strong spiromesifen-resistance phenotype-genotype (A2083V) correlation (r  = -0.839, P = 0.002) was observed confirming the ddPCR diagnostic value.

CONCLUSION

The ddPCR diagnostics developed in this study are a valuable tool to support evidence-based rational use of insecticides and resistance management strategies. © 2022 Society of Chemical Industry.

摘要

背景

世界范围内几种烟粉虱种群已对杀虫剂产生抗药性,这可能会降低化学防治的效果。抗药性的分子机制已经得到了阐明,并且已经确定了与该特性相关的标记,这使得能够为个体昆虫开发诊断方法。

结果

分别在单个和混合粉虱样本中开发和验证了 TaqMan 和数字液滴 PCR(ddPCR)检测法,用于以下靶标位点突变:乙酰胆碱酯酶(ace1)F331W 突变赋予有机磷抗性;电压门控钠通道(vgsc)突变 L925I 和 T929V 赋予拟除虫菊酯抗性;以及乙酰辅酶 A 羧化酶(acc)A2083V 突变赋予酮烯醇抗性。ddPCR 的检测限(LoD)<0.2%(即检测到 249 个野生型个体混合样本中的一个杂合粉虱)。该检测法应用于来自希腊克里特岛四个地点的 11 个烟粉虱田间种群。在 11 个烟粉虱种群中,有 8 个种群的 F331W 突变被检测为固定或接近固定,其余种群的突变频率较低。检测到非常高频率的拟除虫菊酯抗性突变。在 11 个种群中的 8 个种群中检测到 A2083V 螺旋霉素抗性突变(频率=6.16-89.56%)。螺旋霉素表型抗性监测表明,所测试的种群具有不同水平的抗性,从完全敏感到高抗性不等。观察到强烈的螺旋霉素抗性表型-基因型(A2083V)相关性(r=-0.839,P=0.002),证实了 ddPCR 诊断的价值。

结论

本研究开发的 ddPCR 诊断方法是支持基于证据的合理使用杀虫剂和抗性管理策略的有价值工具。© 2022 化学工业协会。

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