首页|基于阿维菌素和呋虫胺增效组合的双载纳米微囊缓释剂对苹果黄蚜的防治效果

基于阿维菌素和呋虫胺增效组合的双载纳米微囊缓释剂对苹果黄蚜的防治效果

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[目的]研发苹果黄蚜可持续防控药剂及应用技术,为苹果黄蚜可持续防控提供优化方案.[方法]采用室内毒力及田间防效评价阿维菌素与呋虫胺对苹果黄蚜的联合毒力及二者纳米微囊缓释剂型的应用效果.[结果]室内毒力测定结果表明,阿维菌素与呋虫胺在1∶2和1∶4配比下对苹果黄蚜为增效作用;田间应用结果表明,阿维菌素和呋虫胺1∶4混配组合剂量(w)为15.0~22.5 mg kg1时对苹果黄蚜药后3~15 d防效为91.44%~99.63%,二者混配可减少单一药剂有效成分用量10%~70%.按该配比制备2.25%阿维·呋虫胺纳米微囊缓释剂,田间应用结果表明,在苹果黄蚜高发期施药两次,二次药后7~15 d对苹果黄蚜的防效为79.80%~91.65%,表现出较好的后期防效;添加助剂GY-T1602可有效改善纳米微囊缓释剂的速效性.[结论]在苹果黄蚜始发期,推荐使用2.25%阿维·呋虫胺纳米微囊缓释剂以获得较长持效期,添加助剂GY-T1602可有效提高防效;在苹果黄蚜盛发期推荐选用阿维菌素与呋虫胺1∶4混配组合以快速压低虫口密度.
Synergistic effect of slow-releasing nanocapsules containing abamectin and dinotefuran on the control against Aphis citricola
[Objective]In order to solve the problems of single type and reduced sensitivity of tradition-al insecticides for the control of Aphis citricola von der Goot on apple trees,the co-toxicity of abamec-tin and dinotefuran against A.citricola was examined,and the field experiment was carried out to verify the synergistic efficacy.Then,the application effect of the slow-releasing nanoparticles loading with the above two chemical pesticides was evaluated by field experiments for ultimately obtaining the control plan for A.citricola.[Methods]Indoor bioassay was carried out by leaf dipping method.Experimental insects were gathered from apple trees in the greenhouse of Dongyang Experimental Base,Shanxi Agri-cultural University,which were not treated with any pesticides.Four combinations of abamectin and di-notefuran were set up by the active ingredient ratios of 1∶2,1∶4,1∶8 and 1∶16.Firstly,fresh and tender leaves were immersed in the insecticide solutions for 5 seconds,and then moved back up into a petri dish covered with wet filter paper.Secondly,healthy adult aphids were chosen and placed to the leaf sur-face for incubation,and the mortality was recorded after 24 hours of feeding.The co-toxicity of abamec-tin and dinotefuran to A.citricola was evaluated by Sun Yunpei's co-toxicity coefficient method.Based on the co-toxicity results,two field trials were conducted to evaluate the control effects in April and June,2021,in Yuncheng City,Shanxi province.Five treatments were set up in each experiment.There were three different doses of the compound(abamectin 5%EC and dinotefuran 20%SG)and two sin-gle insecticide(abamectin 5%EC or dinotefuran 20%SG).The three doses were 4,9 and 13.5 mg·kg-1 at 1∶2 ratio,respectively;as well as 15,20 and 22.5 mg·kg-1 at 1∶4 ratio,respectively.Water was set up as the control.Knapsack sprayer was used to evenly spray the apple tree with the amount of 2-3 L solu-tion per tree.Each treatment had 4 replications,and there were 2 trees in each replication.The insect population number was investigated on the 3rd,7th and 15th day after application.In addition,2.25%abamectin·dinotefuran co-delivery nanoparticles formulation(2.25%DACNPs)at the ratio of 1∶4 was prepared and applied.The field experiment was carried out from May to June,2022 in Linyi county,Shanxi province.Four treatments were designed for the experiment,including 2.25%DACNPs,the compound at 1∶4 ratio,and the addition of the additive GY-T1602 to both,respectively.It was applied twice during the occurrence period of aphids and the insect population was investigated on 7th and 15th day after each application.Finally,the population decline rates and the control effects were calculated.[Results]When the compound ratio of abamectin and dinotefuran were at 1∶2,1∶4 and 1∶8,the co-tox-icity coefficients(CTC)on A.citricola were 251.61,260.72 and 126.25,respectively.They were greater than 120,indicating that these ratios had synergistic effect on A.citricola.The LC50 of abamectin was 0.66 mg·L-1,while the dinotefuran was 106.44 mg·L-1.The LC50 of the combinations at the ratio of 1∶2 and 1∶4 were 0.75 and 1.28 mg·L-1,respectively.It showed that the combinations could enhance the toxicity of dinotefuran significantly.Field trials showed that,at the ratio of 1∶2,when the dosages were 4.5 and 9 mg·kg-1,the control effects against A.citricola in 7-15 days were only 51.69%-78.46%,sig-nificantly lower than those of any single agent.At the dosage of 13.5 mg·kg-1,the control effect was comparable to dinotefuran alone,but still lower than that of abamectin,and the difference among all of them was not significant.At the ratio of 1∶4,the control effects in 3 days were 91.44%-99.63%at the dosages of 15,20 and 22.5 mg·kg-1,which were equivalent to or slightly higher than abamectin or di-notefuran alone.However,the combination could reduce the active constituent amount of abamectin or dinotefuran by the range of 10%-70%.Moreover,the control effect of 2.25%DACNPs against A.citric-ola in 7-15 days after the first application was 41.44%-64.58%,which was lower than that of the 1∶4 combination.After the secondary application,the control effect of 2.25%DACNPs in 7-15 days was 79.80%-91.65%,which was equivalent to the 1∶4 combination.The results also indicated that the 2.25%DACNPs had sustainable efficacy on the control against A.citricola.By adding adjuvant GY-T1602,compared with the same treatment without the addition,the control effects were all improved to a certain degree,there were significant difference in the 7 days after the first application,but no signifi-cant difference existed in the other days.It indicated that adding adjuvant could improve the quick ef-fect.[Conclusion]It is recommended to use 2.25%DACNPs in initial occurrence of A.citricola.How-ever,the combination of abamectin and dinotefuran at the ratio of 1∶4 should be used in peak occur-rence to reduce the insect population density quickly.Adding adjuvant GY-T1602 in the spray could ob-tain a higher efficacy,especially in the early control effect.

Aphis citricolaAbamectinDinotefuranCo-toxicityCo-delivery nanoparticles formula-tion

郭晓君、封云涛、李娅、王琰、张润祥

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山西农业大学植物保护学院·农业有害生物综合治理山西省重点实验室,太原 030031

中国农业科学院农业环境与可持续发展研究所,北京 100081

苹果黄蚜 阿维菌素 呋虫胺 联合毒力 纳米微囊缓释剂

山西农业大学科技创新提升工程国家重点研发专项山西农业大学学术恢复科研项目

CXGC20230102016YFD0200505-012020xshf10

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(7)
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