水杨酸
生化工程
非生物胁迫
非生物成分
生物技术
生产力
植物生长
功能(生物学)
重金属
电流(流体)
调节器
环境科学
战斗或逃跑反应
农业
人类健康
生物
环境污染
化学
污染
代谢途径
农业生产力
作物生产力
自然资源经济学
代谢调节
纳米技术
新兴技术
作者
Priyanka Yadav,Shruti Jha,Dipti Gahlawat,Asha Sharma,Sandeep Singh
标识
DOI:10.1080/15226514.2026.2705292
摘要
Salicylic acid (SA) is a phenolic intrinsic plant growth regulator that affects plants' various metabolic and physiological processes, influencing their development, proliferation, photosynthesis, and other metabolic functions. In the last few decades, SA has drawn a lot of interest for its function in signaling resistance to various abiotic stresses, including temperature, salinity, ozone, and heavy metals (HMs)/metal(loid)s. Soil pollution with HMs/metal(loid)s from natural and anthropogenic processes has become a global issue in recent years, affecting the environment and human health. Due to the rapid rate at which pollution is growing, it is imperative to create efficient systems that can aid in maintaining agricultural productivity and food quality. Finding techniques to boost tolerance is a huge challenge for plant biologists. So, the present review focuses on SA's physiological functions and mechanisms in developing plant HMs/metal(loid)s stress tolerance. SA interacts with various plant hormones during HMs/metal(loid)s stress, and encourages the production of antioxidant compounds and enzymes, which reduce HMs/metal(loid)s stress in plants. So, the current review examines recent literature on the functions and mechanisms of SA in plants affected by HMs/metal(loid)s stress to offer a comprehensive picture of SA and HMs/metal(loid)s and to guide future studies in this area.
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