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负载阿特拉津的聚合物纳米粒的叶面吸收和田间除草研究。

Foliar absorption and field herbicidal studies of atrazine-loaded polymeric nanoparticles.

机构信息

Center of Nuclear Energy in Agriculture, University of São Paulo, Av. Centenário 303, 13400-970 Piracicaba, SP, Brazil.

Department of Animal and Plant Biology, Londrina State University, PR 445, km 380, 86057-970 Londrina, PR, Brazil; Department of Agronomy, Londrina State University, PR 445, km 380, 86057-970 Londrina, PR, Brazil.

出版信息

J Hazard Mater. 2021 Sep 15;418:126350. doi: 10.1016/j.jhazmat.2021.126350. Epub 2021 Jun 7.

Abstract

Nanoparticles loaded with atrazine show weed control efficacy even with lower application doses of the active ingredient. Changes in the mode of action of the herbicide through the nanoformulation are key to understanding the efficiency of post-emergence activity of nanoatrazine. Here, we report the leaf absorption and translocation of nanoatrazine and atrazine employing radiometric techniques and compare their herbicidal effects in greenhouse and field conditions. Compared to the commercial formulation, nanoatrazine showed greater and faster absorption rates in mustard leaves (40% increment in the absorbed herbicide 24 h after application), inducing higher inhibition of photosystem II activity. Assays with fusicoccin-treated leaves indicated that the stomatal uptake of nanoparticles might be involved in the improved activity of nanoatrazine. Nanoencapsulation potentiated the post-emergent herbicidal activity of atrazine and the gain provided by nanoencapsulation was higher in the field compared to greenhouse conditions. Regardless of the dose, nanoatrazine provided two-fold higher weed control in the field compared to commercial atrazine. Thus, the design of this carrier system enables improvements in the performance of the herbicide in the field with less risk of environmental losses of the active ingredients due to faster absorption.

摘要

负载莠去津的纳米颗粒即使以较低的有效成分施用量也表现出除草效果。通过纳米制剂改变除草剂的作用方式是理解纳米莠去津后发性活性效率的关键。在这里,我们采用放射性技术报告了纳米莠去津和莠去津在叶片中的吸收和转运,并比较了它们在温室和田间条件下的除草效果。与商业制剂相比,纳米莠去津在芥菜叶片中表现出更高和更快的吸收速率(施药后 24 小时吸收的除草剂增加 40%),诱导更高的抑制光合系统 II 活性。用赤霉素处理叶片的试验表明,纳米颗粒的气孔吸收可能参与了纳米莠去津活性的提高。纳米封装增强了莠去津的后发性除草活性,并且与温室条件相比,纳米封装在田间提供的增益更高。无论剂量如何,与商业莠去津相比,纳米莠去津在田间提供了两倍的杂草控制效果。因此,该载体系统的设计能够提高除草剂在田间的性能,同时由于更快的吸收,减少了有效成分因环境损失的风险。

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