对抗
内生
镉
化学
毒性
药理学
镉暴露
机制(生物学)
生物
作用机理
毒理
计算生物学
作者
Jun Liu,Jiajie Zhang,Shiyu Hu,Menglei Jiang,Xinru Lin,Peishuang He,Cuiying Peng
标识
DOI:10.1021/acs.jafc.5c17688
摘要
Selenium (Se) orchestrates a multilevel endogenous defense network in crops against cadmium (Cd) toxicity. This network operates from rhizosphere immobilization (e.g., Cd-Se complexes, microbiome interactions, iron plaque, and root exudates) and subcellular sequestration via transporter regulation (e.g., OsNramp5, OsHMA3) to antioxidant enhancement and selenoprotein activation. Critically, Se acts as a signaling initiator, engaging pathways (e.g., GATA3-COMT1-melatonin) to systemically reprogram stress responses. This review highlights that Se's antagonistic efficacy is form-, dose-, and genotype-dependent, providing a mechanistic basis for precision agronomic strategies. Future efforts must bridge laboratory findings to field applications by elucidating molecular switches and developing integrated predictive technologies.
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