Zhao Pengyue, Cao Lidong, Wang Chaojie, Zheng Li, Li Yuanyuan, Cao Chong, Huang Qiliang
Key Laboratory of Integrated Pest Management in Crops, Ministry of Agriculture, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, No. 2 Yuanmingyuan West Road, Haidian District, Beijing, 100193, PR China.
Key Laboratory of Integrated Pest Management in Crops, Ministry of Agriculture, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, No. 2 Yuanmingyuan West Road, Haidian District, Beijing, 100193, PR China.
Chemosphere. 2022 Nov;307(Pt 1):135702. doi: 10.1016/j.chemosphere.2022.135702. Epub 2022 Jul 13.
Metal-organic frameworks (MOF) are an emerging class of hybrid inorganic-organic porous materials used in various fields, especially in molecule delivery system. As iron is an essential micronutrient for plant growth, iron-based MOF (Fe-MOF) is developed for agricultural application as fungicide carriers. However, fungicides may have various effect on the plant growth, which may be different from Fe-MOF. When they are combined with the carriers, the effects on target plants will change. In this work, tebuconazole-loaded Fe-MOF was prepared and used to treat wheat seedlings. The physiological, biochemical and metabolic levels of wheat roots and shoots were shown by a comparative study. Related metabolic pathways were analyzed by non-targeted metabolomic method. Many metabolites in wheat roots and shoots showed an upward trend after Fe-MOF treatment, but tebuconazole had a negative impact on these indicators. Related metabolic pathways in Fe-MOF and tebuconazole treatment were different, and the related pathway of tebuconazole-loaded Fe-MOF was closer to that of Fe-MOF. The metabolic pathways study revealed that the negative impact from tebuconazole was mitigated when wheat seedlings were treated with tebuconazole-loaded Fe-MOF. This research firstly explores the mechanism of MOF as carriers to help plant reduce the negative effects from fungicide by regulating metabolic pathways.
金属有机框架材料(MOF)是一类新兴的无机-有机杂化多孔材料,应用于各个领域,尤其是分子递送系统。由于铁是植物生长必需的微量营养素,因此开发了铁基金属有机框架材料(Fe-MOF)用于农业领域作为杀菌剂载体。然而,杀菌剂可能对植物生长有各种影响,这可能与Fe-MOF不同。当它们与载体结合时,对目标植物的影响将会改变。在这项工作中,制备了负载戊唑醇的Fe-MOF并用于处理小麦幼苗。通过比较研究展示了小麦根和芽的生理、生化和代谢水平。采用非靶向代谢组学方法分析相关代谢途径。Fe-MOF处理后,小麦根和芽中的许多代谢物呈上升趋势,但戊唑醇对这些指标有负面影响。Fe-MOF和戊唑醇处理中的相关代谢途径不同,负载戊唑醇的Fe-MOF的相关途径更接近Fe-MOF。代谢途径研究表明,用负载戊唑醇的Fe-MOF处理小麦幼苗时,戊唑醇的负面影响得到缓解。本研究首次探索了MOF作为载体通过调节代谢途径帮助植物降低杀菌剂负面影响的机制。