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桃园蚜虫对吡虫啉和双丙环虫酯的敏感度监测

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[目的]评估桃蚜Myzus persicae和桃粉蚜Hyalopterus amygdali种群对两种常用杀虫剂吡虫啉和双丙环虫酯的敏感性.[方法]2022年和2023年在我国不同桃产区桃园采集桃蚜和桃粉蚜种群,利用玻璃管药膜法测定了两种蚜虫的毒力水平.[结果]2022年监测结果表明,浙江省嘉兴市的桃蚜种群对吡虫啉最敏感,LC50为0.222 mg·L-1,相比之下,河北省秦皇岛市、陕西省西安市和甘肃省兰州市的桃蚜种群表现出较低敏感性.2023年,浙江省杭州市的桃蚜种群对吡虫啉最敏感,LC50为1.574 mg·L-1.对比两年的监测数据发现,山东省青岛市桃蚜对吡虫啉的敏感度变化不大,陕西省咸阳市桃蚜种群显示出对吡虫啉的敏感度降低的趋势.对于双丙环虫酯,2022年河北省秦皇岛市的桃蚜种群对双丙环虫酯最敏感,LC50为0.011 mg·L-1.2023年,浙江省杭州市的桃蚜种群对双丙环虫酯最敏感,LC50为0.159 mg·L-1.对比分析发现,甘肃省兰州市的桃蚜种群对双丙环虫酯的敏感度呈增加趋势.桃粉蚜的监测结果表明:云南省昆明市的桃粉蚜种群对吡虫啉和双丙环虫酯均表现出最高的敏感度,然而,河北省秦皇岛市和安徽省宿州市的桃粉蚜种群对吡虫啉的敏感度显著降低.[结论]不同地区和年份的桃蚜和桃粉蚜种群对吡虫啉表现出显著的敏感度差异.两种蚜虫对双丙环虫酯的敏感度差异不显著,均处于敏感水平.
Examination of the sensitivity of peach orchard aphids to imidacloprid and afidopyropen
[Objective]Green peach aphid and peach mealy aphid are pests causing significant harm to peach trees and other crops worldwide.They primarily feed by sucking plant sap,resulting in leaf dam-age that affects the growth,development,and photosynthesis of peach trees.Simultaneously,they pose a threat to the health and yield of peach trees and other crops by transmitting viruses.Control of the peach aphids has traditionally relied on chemical methods.However,due to characteristics such as large population sizes,short life cycles,high reproduction rates,and strong migratory capabilities,these aphids have developed varying degrees of resistance to many commonly used insecticides.Therefore,monitoring the sensitivity of the peach aphids to common insecticides is particularly important.This not only helps in assessing the actual effectiveness of the pesticides but also enables timely adjustments in control strategies based on the degree of resistance development.By doing so,the emergence of resis-tance can be delayed or avoided,leading to more precise pest management measures and thus achieving sustainability in agriculture.The populations of Myzus persica and Hyalopterus amygdali were collect-ed from peach orchards in different peach-producing areas in China during 2022 and 2023 to monitor the sensitivity to imidacloprid and afidopyropen.[Methods]The toxicity levels of these aphids to the insecticides were determined using the glass tube film methods.The active pharmaceutical ingredient of imidacloprid and afidopyropen were diluted with acetone to prepare a master stock solution for subse-quent experimentation.An aliquot of 250 μL insecticide-acetone solution was applied to each tube(length:7.5 cm;diameter:1.2 cm,internal surface area:27.51 cm2),and they were immediately rotated using a micro-rotator(American Wheaton Company)until solutions were dried.These peach aphids were treated for each concentration with three replicates,while controls were treated with acetone only.The tubes were then placed under laboratory conditions.After 24 h,mortality was recorded,and individ-uals were deemed dead if they showed no response when prompted with a brush.[Results]The monitor-ing results of 2022 showed that the M.persica population from Jiaxing city of Zhejiang province was found to be most sensitive to imidacloprid,with an LC50 of 0.222 mg·L-1.In contrast,the M.persica pop-ulation from Qinhuangdao city of Hebei province,Xi'an city of Shanxi Province,and Lanzhou city of Gansu province exhibited lower sensitivity.These results suggest a significant variation in the response to imidacloprid across different geographic locations,potentially influenced by environmental and genet-ic factors.In the subsequent year,the M.persica population from Hangzhou city of Zhejiang province displayed the highest sensitivity to imidacloprid,though with an increased LC50 of 1.574 mg·L-1.Com-parative analysis of the two years monitoring data revealed that the sensitivity of the M.persica from Qingdao city of Shandong province to imidacloprid remained relatively stable.While a decreasing trend in sensitivity was observed in the M.persica from Xianyang city of Shanxi province,underscoring the dynamic nature of pesticide resistance.As for afidopyropen,the M.persica population from Qinhuangd-ao city of Hebei province,was most sensitive in 2022,with an LC50 of 0.011 mg·L-1.In 2023,the M.per-sica from Hangzhou city of Zhejiang province was most sensitive with an LC50 of 0.159 mg·L-1.Compar-ative analysis found that the sensitivity of the M.persica population to afidopyropen showed an increas-ing trend from Lanzhou city of Gansu Province.The monitoring results of the H.amygdali indicated that the population from Kunming city of Yunnan province exhibited the highest sensitivity to both imidaclo-prid and afidopyropen.This observation is crucial as it points to possible interspecies differences in how the resistance mechanism is developed and managed.In contrast,the sensitivity of the H.amygdali to im-idaclorpid significantly decreased from Qinhuangdao city of Hebei province and Suzhou city of Anhui province,highlighting the need for ongoing monitoring and adaptive management strategies.[Conclu-sion]The results of this study indicated significant regional and annual variations in the susceptibility of the M.persica and H.amygdali to common used insecticides imidacloprid and afidopyropen,respective-ly.These variations might be associated with factors such as the history of insecticides use,environmen-tal conditions,and the genetic diversity within the populations.Therefore,it is imperative to consider these factors when devising pest control strategies,implementing targeted measures to enhance control efficiency and slow down the development of resistance.This comprehensive approach would not only clarity the causes behind the varying pesticides sensitivities but also aid in the development of more ef-fective pest management strategies.Moreover,continuous monitoring of the changes in pest sensitivity to insecticides is crucial for effective pest management and sustaining agricultural development.Rotat-ing insecticides with different mechanisms of action,reducing the frequency of specific insecticide us-age,and conducting in-depth research into the molecular mechanisms behind reduced sensitivity in spe-cific regions would contribute to delaying the development of insecticide resistance in pests.

Peach orchardMyzus persicaHyalopterus amygdaliImidaclopridAfidopyropenSensitivity

刘新新、吴萌萌、薛丽、王甦、郭晓军、肖达、徐庆宣

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北京市农林科学院植物保护研究所·农业农村部北方果蔬有害生物绿色防控重点实验室(部省共建)·北方果树病虫害绿色防控北京市重点实验室,北京 100097

山东省诸城市农业技术推广中心,山东诸城 262200

桃园 桃蚜 桃粉蚜 吡虫啉 双丙环虫酯 敏感度

国家桃产业技术体系国家重点研发计划

CARS-302022YFD2000100

2024

果树学报
中国农业科学院郑州果树研究所

果树学报

CSTPCD北大核心
影响因子:1.486
ISSN:1009-9980
年,卷(期):2024.41(9)
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