Cadmium toxicity in plants: Impacts and remediation strategies

Токсичность кадмия для растений: воздействие и стратегии ремедиации
Fasih Ullah Haider, Cai Liqun, Jeffrey A. Coulter, Sardar Alam Cheema, Jun Wu, Renzhi Zhang, Wenjun Ma, Muhammad Farooq
2021-01-12

agricultural soil contaminationcadmium toxicityoxidative damagephytoremediationplant cadmium uptake
Cadmium (Cd) is an unessential trace element in plants that is ubiquitous in the environment. Anthropogenic activities such as disposal of urban refuse, smelting, mining, metal manufacturing, and application of synthetic phosphate fertilizers enhance the concentration of Cd in the environment and are carcinogenic to human health. In this manuscript, we reviewed the sources of Cd contamination to the environment, soil factors affecting the Cd uptake, the dynamics of Cd in the soil rhizosphere, uptake mechanisms, translocation, and toxicity of Cd in plants. In crop plants, the toxicity of Cd reduces uptake and translocation of nutrients and water, increases oxidative damage, disrupts plant metabolism, and inhibits plant morphology and physiology. In addition, the defense mechanism in plants against Cd toxicity and potential remediation strategies, including the use of biochar, minerals nutrients, compost, organic manure, growth regulators, and hormones, and application of phytoremediation, bioremediation, and chemical methods are also highlighted in this review. This manuscript may help to determine the ecological importance of Cd stress in interdisciplinary studies and essential remediation strategies to overcome the contamination of Cd in agricultural soils.
1
Cadmium is an environmentally ubiquitous, nonessential plant element whose contamination is intensified by urban waste, smelting, mining, metal manufacturing, and phosphate fertilizers.
2
Cadmium toxicity reduces plant uptake and translocation of nutrients and water, increases oxidative damage, disrupts metabolism, and impairs morphology and physiology.
3
Cadmium uptake and toxicity in plants are governed by soil factors, rhizosphere dynamics, uptake mechanisms, and subsequent translocation.
4
Plants activate defense mechanisms against cadmium stress, but contaminated agricultural soils require targeted remediation approaches.
5
Potential remediation strategies include biochar, mineral nutrients, compost, organic manure, growth regulators, hormones, phytoremediation, bioremediation, and chemical treatments.

Cadmium (Cd) contamination and toxicity in plants and agricultural soils

Sources, soil–rhizosphere dynamics, uptake and translocation mechanisms, toxic effects, plant defense responses, and remediation strategies for Cd contamination

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2021-01-12
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Fasih Ullah Haider
Cai Liqun
Jeffrey A. Coulter
Sardar Alam Cheema
Jun Wu
Renzhi Zhang
Wenjun Ma
Muhammad Farooq
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