Effectiveness and Biochemical Impact of Flubendiamide and Flonicamid Insecticides against Bemisia tabaci (Hemiptera: Aleyrodidae) and Residue Dissipation in Cherry Tomato Plants and Soil under Greenhouse Conditions1

IF 0.7 4区 农林科学 Q4 ENTOMOLOGY
M. Moustafa, Dalia E. El Hefny, Nawal Abdulaziz Alfuhaid, Rania, M.A. Helmy, Nourhan A. El-Said, El-Desoky S. Ibrahim
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Abstract

We investigated the effectiveness and biochemical impact of the insecticides flubendiamide and flonicamid compared with azadirachtin and acetamiprid against the whitefly Bemisia tabaci (Grennadius) (Hemiptera: Aleyrodidae) infesting cherry tomato (Solanum lycopersicum var. cerasiforme L.) grown under greenhouse conditions. The dissipation of both insecticides in the plants and in the soil also was determined using the QuEChERS (quick, easy, cheap, effective, rugged, and safe) and liquid chromatography–electrospray ionization–mass spectrometry methods. Both insecticides were more effective for reducing B. tabaci populations than were either acetamiprid or azadirachtin. Biochemical analysis revealed that esterase may play an important role in whitefly adaptation to flubendiamide and flonicamid. The QuEChERS method was determined suitable for quickly detecting residues of flubendiamide and flonicamid in complex matrices. The recovery rates on tomato fruit samples were 92.8–106.0%, with a relative standard deviation (RSD) range of 0.46–2.65%. For soil samples, the recovery rates were 81.3–95.7% with RSDs of 1.20–3.86%. We further determined that flubendiamide had dissipation half-lives of 3.13, 3.63, and 3.68 d in tomato fruit, tomato leaves, and soil, respectively. Flonicamid had half-lives of 4.25, 3.54, and 2.60 d in fruit, leaves, and soil, respectively. These results suggest that preharvest intervals of 3 and 7 d are appropriate for flubendiamide and flonicamid, respectively, in cherry tomato production. The risk quotient was >1 by the day 5 after application; however, that value declined to <1 on day 7 after application, indicating little long-term risk to human health.
温室条件下氟苯菌酰胺和氟啶虫酰胺杀虫剂对烟粉虱(半翅目:蝼蛄)的效力和生化影响以及在樱桃番茄植株和土壤中的残留消散1
我们研究了杀虫剂氟苯菌酰胺和氟啶虫酰胺与唑虫酰胺和啶虫脒相比,对温室条件下生长的樱桃番茄(Solanum lycopersicum var.此外,还使用 QuEChERS(快速、简便、廉价、有效、耐用和安全)和液相色谱-电喷雾离子化-质谱法测定了这两种杀虫剂在植物和土壤中的消散情况。与啶虫脒或唑虫酰胺相比,这两种杀虫剂都能更有效地减少烟粉虱的数量。生化分析表明,酯酶可能在粉虱适应氟苯虫酰胺和氟啶虫酰胺的过程中发挥了重要作用。经测定,QuEChERS 方法适用于快速检测复杂基质中氟虫酰胺和氟啶虫酰胺的残留量。番茄果实样品的回收率为 92.8-106.0%,相对标准偏差(RSD)为 0.46-2.65%。土壤样品的回收率为 81.3-95.7%,RSD 为 1.20-3.86%。我们进一步确定,氟苯菌酰胺在番茄果实、番茄叶片和土壤中的消散半衰期分别为 3.13、3.63 和 3.68 d。氟啶虫酰胺在果实、叶片和土壤中的半衰期分别为 4.25、3.54 和 2.60 d。这些结果表明,在樱桃番茄生产中,氟苯菌酰胺和氟啶虫酰胺的采收前间隔期分别为 3 d 和 7 d 是合适的。施药后第 5 天,风险商大于 1;但施药后第 7 天,风险商降至小于 1,表明对人体健康的长期风险很小。
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来源期刊
CiteScore
1.20
自引率
11.10%
发文量
40
审稿时长
>12 weeks
期刊介绍: The Journal of Entomological Science (ISSN 0749-8004) is a peer-reviewed, scholarly journal that is published quarterly (January, April, July, and October) under the auspices of the Georgia Entomological Society in concert with Allen Press (Lawrence, Kansas). Manuscripts deemed acceptable for publication in the Journal report original research with insects and related arthropods or literature reviews offering foundations to innovative directions in entomological research
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