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Updated: Jun 5, 2026

High-Throughput Metabolic Profiling for Model Refinements of Microalgae
Published on: December 4, 2021
Microalgal cocultivation driven phycoremediation of Congo red: integrated biochemical profiling and LC-MS guided
Sudhamayee Parida1, Amiya Kumar Mandal1, Akshaya Kumar Behera1
1Algal Biotechnology and Molecular Systematic Laboratory, Post Graduate Department of Botany, Berhampur University, Bhanja Bihar, Berhampur, Odisha, 760007, India.
Abstract:
This study investigates the potential of the Microalgae-Microalgae (MM) cocultivated system as a sustainable phycoremediation strategy for the biodegradation and decolourization of the diazo dye congo red (CR). Decolourization was confirmed by UV-Vis spectrophotometry and FT-IR spectroscopy, with the cocultivated microalgal system achieving a maximum removal efficiency of 100% at a concentration below 20 mg L-1, which gradually decreased with increasing contact time and reached 54% at an initial dye concentration of 100 mg L-1. Beyond this concentration, the removal capacity plateaued. LC-MS analyses enabled the identification of key degradation intermediates, from which a plausible biocatalytic mechanism for CR breakdown was proposed. In addition, the biochemical response of the cocultivated system to CR exposure revealed a biphasic effect, indicating both adaptive metabolic regulation and stress-induced alterations. Overall, the findings demonstrate that the microalgal cocultivation system possesses significant decolourization capability under static conditions and offers a promising, low-energy approach for the remediation of dye-contaminated wastewater.
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