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玉米醇溶蛋白作为甲氧基虫酰肼精确纳米级递送系统的田间应用。

Field applications of zein as a precise nanoscale delivery system for methoxyfenozide.

机构信息

Department of Entomology, LSU Agricultural Center, 404 Life Science Building, Baton Rouge, LA 70803, USA.

Connecticut Agricultural Experiment Station, New Haven, CT 06511, USA.

出版信息

J Insect Sci. 2023 Mar 1;23(2). doi: 10.1093/jisesa/iead017.

Abstract

When insecticides are applied in the environment, much of the product does not reach the target pest. Biopolymeric nanoparticles as nanocarriers have the potential to improve insecticide efficacy by improving absorption, coverage, and permeability while protecting the insecticide active ingredient from abiotic conditions and extending efficacy through controlled release. We conducted a series of experiments using a biopolymeric nanoparticle synthesized from zein, a biodegradable maize protein, to compare efficacy of a nanodelivered hydrophobic insect growth regulator (methoxyfenozide) against a commercial formulation. Positively charged zein nanoparticles (empty and loaded with methoxyfenozide) were compared to the formulated product, Intrepid 2F, as a foliar spray in-field on soybean. Chrysodeixis includens (Walker) was used as a model and was fed sprayed soybean leaves to evaluate efficacy of the tested foliar products over time. A separate set of leaves was sampled to measure residue levels of methoxyfenozide (MFZ) over time following foliar application using QuEChERS extraction and high-resolution liquid chromatography-mass spectrometry. Regression analysis found no differences in mortality slopes between positively charged zein nanoparticles loaded with methoxyfenozide [(+)ZNP(MFZ)] and Intrepid 2F, suggesting comparable efficacy of the synthesized nanoparticles to a commercial product. Higher concentrations of MFZ were present in (+)ZNP(MFZ)-treated in leaf tissue at 3 d following spray when compared to Intrepid 2F. The multiyear study results demonstrate that nanoparticles loaded with MFZ are comparable to Intrepid 2F under field conditions, with potential short-term benefits.

摘要

当杀虫剂施用于环境中时,大部分产品都无法到达目标害虫。生物聚合物纳米粒子作为纳米载体,具有通过提高吸收、覆盖和渗透性来提高杀虫剂效果的潜力,同时保护杀虫剂有效成分免受非生物条件的影响,并通过控制释放延长效果。我们使用从玉米蛋白玉米醇溶蛋白合成的生物聚合物纳米粒子进行了一系列实验,以比较纳米传递的疏水昆虫生长调节剂(甲氧虫酰肼)对商业制剂的功效。带正电荷的玉米醇溶蛋白纳米粒子(空的和负载甲氧虫酰肼)与商业产品 Intrepid 2F 进行了比较,作为叶面喷雾在田间大豆上进行。小菜蛾(Walker)被用作模型,并喂食喷洒过的大豆叶片,以评估随着时间的推移测试的叶面产品的功效。一组单独的叶片被取样,以测量在叶面施药后随着时间的推移甲氧虫酰肼(MFZ)的残留水平,使用 QuEChERS 提取和高分辨率液相色谱-质谱法。回归分析发现,负载甲氧虫酰肼的带正电荷的玉米醇溶蛋白纳米粒子[(+)ZNP(MFZ)]与 Intrepid 2F 之间的死亡率斜率没有差异,表明合成纳米粒子与商业产品具有相当的功效。与 Intrepid 2F 相比,喷雾后 3 天,(+)ZNP(MFZ)处理的叶片组织中 MFZ 的浓度更高。多年的研究结果表明,在田间条件下,负载 MFZ 的纳米粒子与 Intrepid 2F 相当,具有潜在的短期优势。

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