Acquiring Iron-Reducing Enrichment Cultures: Environments, Methods and Quality Assessments

Author:

Cardoso Aline Figueiredo1ORCID,da Silva Rayara do Socorro Souza1,Prado Isabelle Gonçalves de Oliveira1ORCID,Bitencourt José Augusto Pires1,Gastauer Markus1

Affiliation:

1. Instituto Tecnológico Vale, R. Boaventura da Silva, 955, Bairro Nazaré, Belém 66055-090, PA, Brazil

Abstract

Lateritic duricrusts cover iron ore deposits and form spatially restricted, unique canga ecosystems endangered by mining. Iron cycling, i.e., the dissolution and subsequent precipitation of iron, is able to restitute canga duricrusts, generating new habitats for endangered biota in post-mining landscapes. As iron-reducing bacteria can accelerate this iron cycling, we aim to retrieve microbial enrichment cultures suitable to mediate the large-scale restoration of cangas. For that, we collected water and sediment samples from the Carajás National Forest and cultivated the iron-reducing microorganisms therein using a specific medium. We measured the potential to reduce iron using ferrozine assays, growth rate and metabolic activity. Six out of seven enrichment cultures effectively reduced iron, showing that different environments harbor iron-reducing bacteria. The most promising enrichment cultures were obtained from environments with repeated flooding and drying cycles, i.e., periodically inundated grasslands and a plateau of an iron mining waste pile characterized by frequent soaking. Selected enrichment cultures contained iron-reducing and fermenting bacteria, such as Serratia and Enterobacter. We found higher iron-reducing potential in enrichment cultures with a higher cell density and microorganism diversity. The obtained enrichment cultures should be tested for canga restoration to generate benefits for biodiversity and contribute to more sustainable iron mining in the region.

Funder

Vale S.A.

ITV’s Biocementation Project

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

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