代谢组学
镉
转录组
精氨酸
高粱
战斗或逃跑反应
高粱双色
生物
镉暴露
化学
生物化学
生物信息学
农学
基因表达
基因
氨基酸
有机化学
作者
Lvlan Ye,Junxing Yu,Xingyu Zhang,Feng Yu,Tuo Zeng,Lei Gu,Bin Zhu,Hongcheng Wang,Xuye Du
标识
DOI:10.1016/j.indcrop.2025.120970
摘要
Cadmium (Cd) contamination presents a significant risk to crop development and yield. As a non-redox heavy metal, Cd triggers reactive oxygen species generation, causing cell death in plants. Arginine (Arg), a beneficial amino acid, has shown promise in alleviating Cd stress, but the underlying molecular mechanisms remain inadequately understood. This study sought to explore how 1.0 mM of exogenous Arg alleviates Cd toxicity in sweet sorghum seedlings using physiological profiling, RNA sequencing, and non-targeted metabolomics. Exogenous Arg application boosted antioxidant enzyme activity, mitigated Cd toxicity, and promoted growth. It also increased Cd accumulation in roots by 167.62 % through up-regulating genes involved in the production of metabolites like glutathione, polyamines, pectin, and lignin, which strengthened cell walls and facilitated Cd chelation. Additionally, Arg enhanced the function of transporters such as Yellow Stripe-Like (YSL), Heavy-metal-associated isoprenylated plant proteins (HIPP), and Heavy Metal ATPase (HMA), maintaining ion homeostasis. The metabolomic analysis uncovered that Arg increased amino acid and organic acid accumulation, thereby enhancing stress resilience by influencing the Arg biosynthesis pathway and cysteine-methionine metabolism. This study provides the first comprehensive exploration of the mechanisms by which exogenous Arg mitigates Cd stress in plants, offering a novel insight into the molecular mechanisms behind Arg-mediated Cd tolerance, offering a foundation for breeding Cd-tolerant plants and advancing phytoremediation strategies.
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