Titanium dioxide nanoparticles TiO2 NPs in crop stress management: Mechanisms, applications, and abiotic stress mitigation

非生物胁迫 非生物成分 作物生产力 生物安全 化学 渗透压 纳米技术 环境科学 农作物产量 二氧化钛 生物技术 生产力 纳米颗粒 生物炭 环境化学 纳米毒理学 光合作用 氧化应激 农业生产力 重金属 农业
作者
Muhammad Rehman,Abdus Salam,Zaid Ulhassan,Bahar Ali,Zulqarnain Haider,Irshan Ahmad,Muhammad Yasin,Muhammad Haseeb Javaid,Chunyan Yang,Muhammad Fayyaz,Yinbo Gan
出处
期刊:Plant nano biology [Elsevier BV]
卷期号:14: 100207-100207 被引量:1
标识
DOI:10.1016/j.plana.2025.100207
摘要

Abiotic stresses significantly reduce global crop productivity by impairing physiological, biochemical, and molecular functions. Nanotechnology, particularly titanium dioxide nanoparticles (TiO 2 NPs), has emerged as an innovative approach to enhance plant resilience under severe environmental conditions. This review synthesizes recent experimental findings on TiO 2 NP biosynthesis and their protective roles against major abiotic stresses, including drought, salinity, heavy metal toxicity, temperature extremes, and UV radiation. TiO 2 NPs regulate photosynthetic efficiency, nutrient balance, ROS homeostasis, strengthen enzymatic and non-enzymatic antioxidant defenses, stabilize cellular membranes, osmolytes accumulation, and stress-responsive gene expression, thereby enhancing stress tolerance. The synergistic applications of TiO 2 NPs with other nanoparticles, phytohormones, and biochar establish additional regulatory networks to manage abiotic stresses. Despite promising results, challenges remain regarding inconsistent formulations, dose-dependent toxicity, environmental interactions, and limited field-scale validation. Addressing these gaps through optimized formulations, omics-based mechanistic studies, and biosafety assessments will support the safe and effective integration of TiO 2 NP technology into sustainable crop production under changing climate conditions. Schematic demonstrating the dual role of abiotic stress-induced toxicity, left panel (drought, heat, cold, salinity, and heavy metal stress), and the right panel shows the types of TiO 2 NPs and their use of application routes, seed priming, and foliar application, TiO₂ NPs, synthesized via green synthesis from plants, microorganisms. • TiO₂ NPs boost plant tolerance to drought, salinity, heat, cold, UV, and heavy metals. • Benefits are dose dependent, with toxicity risks at excessive concentrations. • TiO₂ NPs trigger ROS, NO, Ca²⁺, MAPK, and hormone regulated stress pathways. • Combining TiO₂ NPs with other agents improves efficiency and eco-safety. • This review integrates mechanisms with safe, sustainable agricultural use.
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