Deng Jiawei, Fu Lin, Wang Yanan, Zhang Changbo, Deng Yun, Luo Xin, Mailhot Gilles
Key Laboratory of Original Agro-Environmental Pollution Prevention and Control, Agro-Environmental Protection Institute of Ministry of Agriculture and Rural Affairs (MARA), Tianjin 300191, China.
School of Environment and Ecology, Jiangnan University, Wuxi 214122, China.
Toxics. 2025 Feb 12;13(2):133. doi: 10.3390/toxics13020133.
Rice is the main source of cadmium (Cd) and arsenic (As) in Chinese diet. The formulation of targeted agronomic interventions for mitigating Cd and As bioaccumulation in rice grains constitutes a critical pathway toward ensuring food safety and public health security. Foliar spraying technology with ionic liquids, effectively reduces Cd/As content in rice. In this study, an ionic liquid of amino acids ([Glu][HPO]) as a foliar conditioner was applied to two varieties of rice (X24 and Z35) to explore the mechanism of reducing the accumulation of Cd/As in rice. The results showed that [Glu][HPO] reduced Cd/As levels by up to 58.57% and 44.09%, respectively. [Glu][HPO] reduced the transfer factor from the root system to flag leaves, nodes, and other organs, thus reducing the Cd/As content in them. [Glu][HPO] promoted amino acid synthesis in seeds, increased Ca level, increased expression, and decreased expression in flag leaves, thereby Cd/As was inhibited from being absorbed and transported by rice. The results demonstrated that the foliar application of [Glu][HPO] significantly mitigated the accumulation of Cd/As in rice. This study introduces a novel and effective strategy for reducing Cd/As accumulation in rice, hoping to enhance the safety and quality of rice crops.
大米是中国人饮食中镉(Cd)和砷(As)的主要来源。制定针对性的农艺干预措施以减轻水稻籽粒中镉和砷的生物累积,是确保食品安全和公共卫生安全的关键途径。离子液体叶面喷施技术能有效降低水稻中的镉/砷含量。在本研究中,将氨基酸离子液体([Glu][HPO])作为叶面调理剂应用于两个水稻品种(X24和Z35),以探究降低水稻中镉/砷累积的机制。结果表明,[Glu][HPO]分别使镉/砷含量降低了58.57%和44.09%。[Glu][HPO]降低了从根系到旗叶、节和其他器官的转运系数,从而降低了其中的镉/砷含量。[Glu][HPO]促进种子中氨基酸的合成,提高钙含量,增加旗叶中的 表达,降低 表达,从而抑制水稻对镉/砷的吸收和转运。结果表明,叶面喷施[Glu][HPO]显著减轻了水稻中镉/砷的累积。本研究引入了一种降低水稻中镉/砷累积的新颖有效策略,希望提高水稻作物的安全性和品质。