Aug 2026· Discover Plants· Vol 3· 0 citations· 111 references
TL;DR
Understanding the physiological, biochemical, and rhizospheric processes involved in plant-mediated dye remediation provides valuable insight into phytoremediation as a sustainable strategy for mitigating dye pollution.
Abstract
Synthetic dyes are major environmental contaminants due to their persistence, toxicity, and resistance to conventional treatment methods. Although phytoremediation is widely recognized as an eco-friendly strategy for dye removal, its underlying plant-mediated mechanisms remain insufficiently synthesized. This review integrates current knowledge on the physiological, biochemical, and rhizospheric processes involved in plant-mediated dye remediation. Plants remove or transform dyes through a series of interconnected processes including surface adsorption, uptake and phytoaccumulation, enzymatic degradation, sequestration within plant tissues, and rhizosphere-mediated microbial degradation. Both aquatic macrophytes and terrestrial plants have demonstrated significant capacity for dye removal via these integrated mechanisms. Understanding these interactions provides valuable insight into phytoremediation as a sustainable strategy for mitigating dye pollution. It also identifies key directions for improving remediation efficiency.
Soil contamination by mixed pollutants, particularly heavy metals and organic compounds,
represents one of the most complex environmental challenges of the twenty-first century.
Conventional remediation technologies, while effective in some contexts, are often costly,
energy-intensive, and ecologically disruptive, limi...
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Phytoremediation of contaminants in soil is among the most suitable technologies for the treatment of pollutants and for the preservation of green spaces. The approach mainly focuses on selecting plants which can endure pollution, have huge biomass and are non-economic plants. The development of a phytoremediation proc...
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Environmental pollutants are responsible for the deterioration of air, water, and soil quality. The non-biodegradability of heavy metal ions makes them a more problematic pollutant. Human and natural activities are the main sources of their presence in water. Conventional remediation techniques for heavy metals are cos...
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Toxic metal contamination of soil remains a critical global challenge due to the persistence, bioaccumulation, and irreversible toxicity of these metals. Cadmium (Cd), lead (Pb), mercury (Hg), arsenic (As), chromium (Cr) and nickel (Ni) are the most common toxic metals that threaten food security, ecosystem stability,...
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