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具有光解稳定性和系统转移能力的伊维菌素-堿性木质素缀合物的合成、表征及应用。

Synthesis, characterization and application of emamectin-alkaline lignin conjugate with photolysis resistance and systemic translocation.

机构信息

Guangxi Key Laboratory of Natural Polymer Chemistry and Physics, Nanning Normal University, Nanning 530001, PR China.

Guangxi Key Laboratory of Natural Polymer Chemistry and Physics, Nanning Normal University, Nanning 530001, PR China.

出版信息

Int J Biol Macromol. 2023 Jun 15;240:124450. doi: 10.1016/j.ijbiomac.2023.124450. Epub 2023 Apr 14.

Abstract

Controlled release formulations (CRFs) are a key technical approach for the sustainable development of pesticides. In this study, a CRF conjugate (emamectin-alkaline lignin, EB-AL) was successfully prepared using alkaline lignin as the substrate, with amide bond connecting emamectin and alkaline lignin. The structure and morphology of the conjugate were characterized using IR, HNMR, elemental analysis, SEM and TG. The release of EB-AL showed that the conjugate maintained its original structure when released in 50 % methanol-water and soil column, and the amide bond remained intact. The anti-photolysis test revealed that EB-AL had a 3.5 times higher photolysis half-life T than the general emamectin suspension concentrate (EB-SC). Bioactivity tests in the greenhouse demonstrated that EB-AL possessed a longer insecticidal duration and good biosafety. Ostrinia nubilalis lethality rate remained above 70 % for 19 days, while EB-EC, the control, had a rate of <50 % after 11 days of application. Additionally, EB-AL conjugate demonstrated excellent systemic translocation in plants, likely due to its ability to mediate alkaline lignin.

摘要

控释制剂(CRFs)是农药可持续发展的关键技术途径。本研究以碱性木质素为底物,通过酰胺键将阿维菌素与碱性木质素连接,成功制备了控释制剂轭合物(埃玛菌素-堿木质素,EB-AL)。利用 IR、HNMR、元素分析、SEM 和 TG 对轭合物的结构和形态进行了表征。EB-AL 的释放结果表明,在 50%甲醇-水和土壤柱中释放时,轭合物保持其原始结构,酰胺键保持完整。光解试验表明,EB-AL 的光解半衰期 T 比普通阿维菌素悬浮剂(EB-SC)长 3.5 倍。温室生物活性试验表明,EB-AL 具有更长的杀虫持续时间和良好的生物安全性。19 天内,EB-AL 对玉米螟的致死率保持在 70%以上,而对照 EB-EC 在施药 11 天后的致死率低于 50%。此外,EB-AL 轭合物在植物中表现出良好的系统转移能力,这可能归因于其介导碱性木质素的能力。

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