文献类型: 外文期刊
作者: Deng, Xile 1 ; Zhang, Yong 2 ; Deng, Yanan 1 ; Zhang, Jichuan 3 ; Peng, Yajun 1 ; Liu, Tianqi 3 ; Dong, Zhichao 4 ; Zhang, Jiaheng 3 ; Bai, Lianyang 1 ;
作者机构: 1.Hunan Acad Agr Sci, Changsha 410125, Peoples R China
2.Chinese Acad Agr Sci, Inst Plant Protect, State Key Lab Biol Plant Dis & Insect Pests, Beijing 100193, Peoples R China
3.Harbin Inst Technol, Sauvage Lab Smart Mat, Shenzhen 518055, Peoples R China
4.Chinese Acad Sci, Univ Chinese Acad Sci, Chinese Acad Sci Future Technol Coll, Tech Inst Phys & Chem,CAS Key Lab Bioinspired Mat, Beijing 100190, Peoples R China
关键词: environmental security; ion salt; nanoencapsulation; rice; safener
期刊名称:ADVANCED FUNCTIONAL MATERIALS ( 影响因子:19.0; 五年影响因子:19.4 )
ISSN: 1616-301X
年卷期: 2025 年 35 卷 28 期
页码:
收录情况: SCI
摘要: Rice, a major global food crop, faces considerable challenges from herbicide damage, particularly pre-emergent herbicides like Pretilachlor (Pre). Herbicide-resistant rice varieties and efficient, environmentally friendly safeners for Pre are still lacking. Substituted salicylic acid safeners show the potential to relieve herbicide damage but are limited by poor solubility and penetration. This study explores a novel substituted salicylic acid derivative salt, matrine (MT)-3-nitrosalicylic acid (3-NO(2)SA) salt (MNS), as a safener for Pre. MNS, with enhanced solubility, demonstrated better penetration in rice cells than fenclorin (Fen), the only commercial safener for Pre, which is less effective and poses environmental risks. MNS activates the glutathione metabolism detoxification pathway more effectively than Fen, leading to a superior safening effect. To further enhance solubility and plant uptake, MNS is loaded into a supramolecular nanocarrier, beta-hydroxycyclodextrin (HBPCD), to fabricate a nanoformulation (MNS@HBPCD). In field trials, MNS@HBPCD outperformed Fen, improving 26% seedlings number, 15% shoot height, 9% root length, 27% fresh weight, and 14% yield, while maintaining Pre's herbicidal efficacy. Toxicity tests indicated that it is significantly less toxic to zebrafish embryos, HepG2 cells, and HaCaT cells than Fen. Thus, MNS@HBPCD shows promise as an environmentally friendly crop protection material that effectively mitigates herbicide damage.
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