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In-situ microbial colonization and its potential contribution on biofilm formation in subsurface sediments

  • Ji Hoon Lee*
  • , Bong Joo Lee
  • , Uk Yun
  • , Dong Chan Koh
  • , Soo Jin Kim
  • , Dukki Han
  • , Tatsuya Unno
  • *Corresponding author for this work
  • Korea Institute of Geoscience and Mineral Resources
  • Jeonbuk National University
  • Jeju National University

Research output: Contribution to journalJournal articlepeer-review

Abstract

Biofilms facilitate communication among microorganisms for nutrients and protect them from predators and harmful chemicals such as antibiotics and detergents. Biofilms can also act as cores for the development of clogs in many agricultural irrigation systems and in porous media. In this study, we deployed glass units at a depth of 20 m below the ground surface in the groundwater-surface water mixing zone, and retrieved them after 4 months to investigate the potential colonization of indigenous microbial community and possible mineral-microbe assemblages. We observed the periodic formation of microbial colonies by fluorescence dye staining and microscopy, and analyzed the composition of the microbial community in both the mineralmicrobe aggregates and groundwater, by next generation sequencing of the 16S rRNA gene amplicons using MiSeq platform. During the course of incubation, we observed an increase in both the mineral-microbe aggregates and content of extracellular polymeric substances. Interestingly, the microbial community from the aggregates featured a high abundance of iron redox-related microorganisms such as Geobacter sp., Comamonadaceae sp., and Burkholderiales incertae sedis. Therefore, these microorganisms can potentially produce iron-minerals within the sediment-microbeassociated aggregates, and induce biofilm formation within the groundwater borehole and porous media.

Original languageEnglish
Pages (from-to)51-56
Number of pages6
JournalJournal of Applied Biological Chemistry
Volume62
Issue number1
DOIs
StatePublished - 2019

Keywords

  • Bioclogging
  • Groundwater
  • Microbial community
  • Subsurface biogeochemistry

Quacquarelli Symonds(QS) Subject Topics

  • Engineering - Petroleum
  • Engineering - Chemical
  • Chemistry

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