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Adapting to Toxic Environments: Understanding Plant Responses to Heavy Metal Stress and Sustainable Strategies for
Md Sadique Hussain1, Mudasir Maqbool2, Nusrat K Shaikh3
1Uttaranchal Institute of Pharmaceutical Sciences, Uttaranchal University, Dehradun, 248007, Uttarakhand, India.
Abstract:
Heavy metal (HM) exposure is a critical abiotic stress that adversely affects plant growth, development, and agricultural sustainability. While trace amounts of HMs are essential for cellular processes, excessive accumulation disrupts osmotic balance, induces oxidative stress, and leads to severe metabolic disorders. This leads to excessive production of reactive oxygen species (ROS) and methylglyoxal. These compounds cause lipid peroxidation, protein and enzyme damage, DNA disruption, and overall cellular dysfunction. To mitigate HM toxicity, plants employ a range of physiological, biochemical, and molecular defense mechanisms, including antioxidant enzyme systems, metal chelation, phytohormonal regulation, and genetic adaptations. Recent advancements in genetic engineering, nanotechnology, and OMICs approaches have further enhanced our understanding of plant responses to HM stress, paving the way for innovative remediation strategies. This review explores the multifaceted impact of HMs on plant physiology and highlights adaptive responses that contribute to HM tolerance and stress mitigation.
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