Involvement of bacterial and fungal extracellular products in transformation of manganese-bearing minerals and its environmental impact
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Manganese oxides are considered an essential component of natural geochemical barriers
due to their redox and sorptive reactivity towards essential and potentially toxic trace elements.
Despite the perception that they are in a relatively stable phase, microorganisms can actively alter the
prevailing conditions in their microenvironment and initiate the dissolution of minerals, a process that
is governed by various direct (enzymatic) or indirect mechanisms. Microorganisms are also capable
of precipitating the bioavailable manganese ions via redox transformations into biogenic minerals,
including manganese oxides (e.g., low-crystalline birnessite) or oxalates. Microbially mediated
transformation influences the (bio)geochemistry of manganese and also the environmental chemistry
of elements intimately associated with its oxides. Therefore, the biodeterioration of manganese bearing phases and the subsequent biologically induced precipitation of new biogenic minerals may
inevitably and severely impact the environment. This review highlights and discusses the role of
microbially induced or catalyzed processes that affect the transformation of manganese oxides in the
environment as relevant to the function of geochemical barriers.
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International Journal of Molecular Sciences. 2023, vol. 24, issue 11, art. no. 9215.