AI Article Synopsis

  • Fe-oxidizing bacteria from the family Gallionellaceae play a crucial role in the iron cycle in freshwater environments, particularly in areas with varying redox conditions.
  • Researchers analyzed the genetic diversity of these bacteria in an aquifer characterized by different redox transition zones, discovering 15 new draft genomes and identifying a dominant genus they propose to name 'Candidatus Houarnoksidobacter'.
  • The study found that distinct microbial communities of Gallionellaceae exist in subsurface and surface zones, despite continual groundwater movement, suggesting that factors like oxygen diffusion and groundwater mixing are key influences on their diversity.

Article Abstract

Fe-oxidizing bacteria of the family Gallionellaceae are major players in the Fe biogeochemical cycle in freshwater. These bacteria thrive in redox transition zones where they benefit from both high Fe concentrations and microaerobic conditions. We analysed the Gallionellaceae genomic diversity in an artesian hard-rock aquifer where redox transition zones develop (i) in the subsurface, where ancient, reduced groundwater mixes with recent oxygenated groundwater, and (ii) at the surface, where groundwater reaches the open air. A total of 15 new draft genomes of Gallionellaceae representing to 11 candidate genera were recovered from the two redox transition zones. Sulfur oxidation genes were encoded in most genomes while denitrification genes were much less represented. One genus dominated microbial communities belowground and we propose to name it 'Candidatus Houarnoksidobacter'. The two transition zones were populated by completely different assemblages of Gallionellaceae despite the almost constant upward circulation of groundwater between the two zones. The processes leading to redox transition zones, oxygen diffusion at the surface or groundwater mixing in subsurface, appear to be a major driver of the Gallionellaceae diversity.

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Source
http://dx.doi.org/10.1093/femsec/fiaa036DOI Listing

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