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自组装纳米棒诱导氧化应激、琥珀酸脱氢酶活性和 ATP 生成的不良反应。

Self-Assembled Nanonematicide Induces Adverse Effects on Oxidative Stress, Succinate Dehydrogenase Activity, and ATP Generation.

机构信息

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing 100193, P. R. China.

Institute of Plant Protection, Xinjiang Academy of Agricultural Sciences, Urumqi 830091, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2023 Jul 5;15(26):31173-31184. doi: 10.1021/acsami.3c03634. Epub 2023 Jun 20.

Abstract

Long-term overuse of chemical nematicides has resulted in low control efficacy toward destructive root-knot nematodes, and continuous development in nanotechnology is supposed to enhance the utilization efficiency of nematicides to meet practical needs. Herein, a cationic star polymer (SPc) was constructed to load fluopyram (flu) and prepare a flu nanoagent. Hydrogen bonding and van der Waals forces facilitated the self-assembly of the flu nanoagent, leading to the breakdown of self-aggregated flu and reducing its particle size to 60 nm. The bioactivity of flu was remarkably improved, with the half lethal concentration 50 from 8.63 to 5.70 mg/L due to the help of SPc. Transcriptome analysis found that a large number of transport-related genes were upregulated in flu nanoagent-exposed nematodes, while the expression of many energy-related genes was disturbed, suggesting that the enhanced uptake of flu nanoagents by nematodes might lead to the disturbance of energy synthesis and metabolism. Subsequent experiments confirmed that exposure to flu nanoagents markedly increased the reactive oxygen species (ROS) level of nematodes. Compared to flu treatment alone, succinate dehydrogenase (SDH) activity was inhibited in flu nanoagent-exposed nematodes with an increase in the pIC50 from 8.81 to 11.04, which further interfered with adenosine triphosphate (ATP) biosynthesis. Furthermore, the persistence of SPc-loaded flu in soil was prolonged by 2.33 times at 50 days after application. The protective effects of flu nanoagents on eggplant seedlings were significantly improved in both greenhouse and field trials, and the root-knot number was consistently smaller in roots treated with flu nanoagents than in those treated with flu alone. Overall, this study successfully constructed a self-assembled flu nanoagent with amplified effects on oxidative stress, SDH activity, and ATP generation, leading to highly effective control of root-knot nematodes in the field.

摘要

长期过度使用化学杀线虫剂导致其对破坏性根结线虫的防治效果降低,而纳米技术的不断发展应该能够提高杀线虫剂的利用效率,以满足实际需求。在此,构建了一种阳离子星聚合物(SPc)来负载氟吡菌酰胺(flu)并制备 flu 纳米制剂。氢键和范德华力促进了 flu 纳米制剂的自组装,导致自聚集 flu 的分解,并将其粒径减小至 60nm。由于 SPc 的帮助,flu 的生物活性显著提高,半数致死浓度 50 从 8.63 降至 5.70mg/L。转录组分析发现,暴露于 flu 纳米制剂中的线虫中大量运输相关基因上调,而许多与能量相关的基因表达受到干扰,这表明线虫对 flu 纳米制剂的增强摄取可能导致能量合成和代谢受到干扰。随后的实验证实,暴露于 flu 纳米制剂会显著增加线虫的活性氧(ROS)水平。与单独 flu 处理相比,暴露于 flu 纳米制剂中的线虫琥珀酸脱氢酶(SDH)活性受到抑制,pIC50 从 8.81 增加到 11.04,这进一步干扰了三磷酸腺苷(ATP)的合成。此外,在施药后 50 天,负载 flu 的 SPc 在土壤中的持久性延长了 2.33 倍。温室和田间试验均显著提高了 flu 纳米制剂对茄子幼苗的保护效果,根结线虫数量在 flu 纳米制剂处理的根系中明显小于单独 flu 处理的根系。总体而言,本研究成功构建了一种自组装的 flu 纳米制剂,对氧化应激、SDH 活性和 ATP 生成具有放大作用,在田间对根结线虫具有高效的防治效果。

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