Insights on the freshwater microbiomes metabolic changes associated with the world's largest mining disaster.

Sci Total Environ

Núcleo Professor Rogerio Valle de Produção Sustentável-SAGE/COPPE, Centro de Gestão Tecnológica-CT2, Universidade Federal do Rio de Janeiro (UFRJ), Rio de Janeiro, RJ, Brazil; Instituto de Biologia, CCS, Laboratório de Microbiologia, Anexo ao Bloco A, Universidade Federal do Rio de Janeiro, Ilha do Fundão, Rio de Janeiro 21941-902, Brazil. Electronic address:

Published: March 2019

AI Article Synopsis

  • The study investigates the aftermath of the Fundão tailings dam failure on the water quality of the Doce River by analyzing metagenomics and physicochemical data shortly after the disaster and again at 6 and 10 months later.
  • Immediately following the dam failure, water quality deteriorated significantly, with extremely high levels of suspended particulate matter, turbidity, and dissolved metals, while dissolved oxygen fell below legal standards in some areas.
  • Six months post-disaster, water quality improved, aligning with Brazilian guidelines, but notable changes occurred in microbial communities, showing increased diversity and alterations in metabolic functions related to iron and nitrogen cycling.

Article Abstract

To evaluate the impacts of the Fundão tailings dam failure (Minas Gerais, Brazil) on water quality of the Doce River, we analyzed metagenomics and physicochemical parameters during the month of the disaster and again 6 and 10 months after the disaster. To compare dam conditions before and after the failure, we performed a meta-analysis of physicochemical data from a public database. Immediately after the failure, suspended particulate matter (SPM) in the Doce River was 225-1877 mg L. Turbidity and dissolved aluminum and iron concentrations were extremely high, whereas dissolved oxygen was below Brazilian legislation norm (<5 mg L) in several locations. Six months later, physicochemical values were below thresholds set by Brazilian guidelines (e.g., SPM = 8-166 mg L). Short-term impacts on microbial communities included an increase in Actinobacteria and Bacteroidetes and gene sequences related to microbial virulence, motility, respiration, membrane transport, iron and nitrogen metabolism, suggesting changes in microbial metabolic profiles. The 11 recovered partial genomes from metagenomes (MAGs) had genes related to Fe cycle and metal resistance.

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http://dx.doi.org/10.1016/j.scitotenv.2018.11.112DOI Listing

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