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July 29, 2026Environmental Pollutants and BioavailabilityOpen Access

Elucidation of biosorption and mycoremediation potential by Trichoderma yunnanense TM10 in mercury- and cadmium-stressed rice plants ( Oryza sativa L.)

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Authors

DPDedat PrismantoroPadjadjaran UniversityLMLinda MulyaningsihPadjadjaran UniversityFHFenny Febriany HamzahPadjadjaran University

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Implication

Randomized trial evaluated mycoremediation potential in rice plants, indicating significant metal removal and growth enhancement.

Key Points

  • This research aims to evaluate the biosorption and mycoremediation potential of Trichoderma yunnanense TM10 in heavy metal-stressed rice plants.
  • In vitro and greenhouse experiments were conducted to assess fungal tolerance and metal removal.
  • Maximum tolerance level assays, atomic absorption spectroscopy, and evaluations of plant growth and physiological responses were used.
  • Soil metal reduction and leaf metal accumulation were measured under controlled greenhouse conditions.
  • T. yunnanense TM10 tolerated cadmium levels up to 500 mg L−1 and mercury up to 100 mg L−1.
  • In liquid culture, T. yunnanense TM10 removed 88.50% of mercury and 35.49% of cadmium.
  • Significant improvements in rice growth, chlorophyll content, and reductions in soil metal levels and leaf metal accumulation were observed under heavy metal stress.

Cite This Study

Prismantoro et al. (2026) studied this question.

synapsesocial.com/papers/6a69a26dc8da07d9defa5c53https://doi.org/10.1080/26395940.2026.2709192
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