Shiitake, Hua Gu · 2021 · Journal Article
High relevanceRadiocesium in Shiitake mushroom: Accumulation in living fruit bodies and leaching from dead fruit bodies.
Lentinula edodes
Key points
- In this paper, cesium (Cs) accumulation by the saprophytic fungus Lentinula edodes (Shiitake) was investigated to contribute to the elucidation of radiocesium-cycling mechanisms in forest environments
- Although the 137 Cs in the mushroom bed before culture was bioavailable, the transfer factor (TF) of Cs ( 133 Cs and 137 Cs) from the mushroom bed to fruit bodies was low (approximately 1) and the TFs of K (5) and Na (1.5) were higher
- Cs and K concentrations in fruit bodies at different maturity stages were almost constant
- These results demonstrate that Shiitake non-specifically accumulates Cs while accumulating the essential element K and provide evidence that no selective Cs accumulation (or binding) sites exist within the Shiitake fruit body
- Furthermore, the present results show that most accumulated Cs quickly leaches out from the dead fruit body with exposure to water
- The leached Cs was largely adsorbable on clay minerals, suggesting that the Shiitake fruit body likely contains Cs in the cation form
Metadata-grounded summary
Citation abstract
In this paper, cesium (Cs) accumulation by the saprophytic fungus Lentinula edodes (Shiitake) was investigated to contribute to the elucidation of radiocesium-cycling mechanisms in forest environments. Although the 137 Cs in the mushroom bed before culture was bioavailable, the transfer factor (TF) of Cs ( 133 Cs and 137 Cs) from the mushroom bed to fruit bodies was low (approximately 1) and the TFs of K (5) and Na (1.5) were higher. Cs and K concentrations in fruit bodies at different maturity stages were almost constant. The concentration ratio of Cs/K is constant in the pileus regardless of the pileus tissues. These results demonstrate that Shiitake non-specifically accumulates Cs while accumulating the essential element K and provide evidence that no selective Cs accumulation (or binding) sites exist within the Shiitake fruit body. Furthermore, the present results show that most accumulated Cs quickly leaches out from the dead fruit body with exposure to water. The leached Cs was largely adsorbable on clay minerals, suggesting that the Shiitake fruit body likely contains Cs in the cation form.
Citation
Guido-Garcia F, Sakamoto F, David K, Kozai N, Grambow B (2021). Radiocesium in Shiitake mushroom: Accumulation in living fruit bodies and leaching from dead fruit bodies. Chemosphere https://doi.org/10.1016/j.chemosphere.2021.130511 PMID: 34134400
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