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July 16, 2025Biodegradation20 citationsOpen Access

Biotransformation of As, Cr, Hg, and Mn by Pseudomonadota: chances and risks

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ANAleksandra NaziębłoJDJakub Dobrzyński

Key Points

  • Pseudomonadota play a crucial role in biotransformation of heavy metals, aiding in detoxification processes.
  • The review identifies arsenic, chromium, mercury, and manganese as major elements affected by bacterial redox transformations.
  • A comprehensive survey highlights individual genera within Pseudomonadota that significantly contribute to detoxification.
  • Future research should focus on non-pathogenic rhizobia within Hyphomicrobiales to enhance bioremediation strategies.

Abstract

Abstract Heavy metals are among the key environmental contaminants which pose a threat to all the living organisms. Bacteria can help detoxify these elements by a range of mechanisms associated to bacterial metabolic processes. One of them is biotransformation, which consists in change in the oxidative state of an element, often followed by its absorption or precipitation. Pseudomonadota—a vast and diverse bacterial phylum—belong to the best studied microorganisms involved in the process. Our review shows their contribution to the redox-based detoxification of four trace elements: chromium, manganese, mercury, and arsenic. Based on a comprehensive literature survey, we try to assess the importance of individual orders and selected genera in redox transformations; we also identify potential risks associated with the use of Pseudomonadota in bioremediation and suggest the most promising directions for future studies and applications. The review leads to a conclusion that the potential of non-pathogenic rhizobia Hyphomicrobiales is particularly worth further exploration.

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Cite This Study

Naziębło et al. (2025) studied this question.

synapsesocial.com/papers/689a02c3e6551bb0af8ccab7https://doi.org/10.1007/s10532-025-10157-x
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