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Self-assembling a 1,4-dioxane-degrading consortium and identifying the key role of sp. through dilution-to-extinction and reculturing. | LitMetric

Self-assembling a 1,4-dioxane-degrading consortium and identifying the key role of sp. through dilution-to-extinction and reculturing.

Microbiol Spectr

Key Laboratory of Soil Environment and Pollution Remediation, Institute of Soil Science, Chinese Academy of Sciences , Nanjing, China.

Published: December 2023

AI Article Synopsis

  • The study focuses on creating effective microbial consortia to break down 1,4-dioxane, a harmful contaminant, and highlights the challenges researchers face due to microbial diversity.
  • Researchers used a combination of dilution-to-extinction and reculture methods to successfully identify key bacteria, demonstrating that Shinella species are more effective at degrading 1,4-dioxane than Xanthobacter species.
  • The findings suggest that these techniques not only simplify the assembly of microbial communities but also help in pinpointing important degraders for environmental bioremediation efforts.

Article Abstract

Assembling a functional microbial consortium and identifying key degraders involved in the degradation of 1,4-dioxane are crucial for the design of synergistic consortia used in enhancing the bioremediation of 1,4-dioxane-contaminated sites. However, due to the vast diversity of microbes, assembling a functional consortium and identifying novel degraders through a simple method remain a challenge. In this study, we reassembled 1,4-dioxane-degrading microbial consortia using a simple and easy-to-operate method by combining dilution-to-extinction and reculture techniques. We combined differential analysis of community structure and metabolic function and confirmed that Shinella species have a stronger 1,4-dioxane degradation ability than Xanthobacter species in the enriched consortium. In addition, a new dioxane-degrading bacterium was isolated, , which verified our findings. These results demonstrate that DTE and reculture techniques can be used beyond diversity reduction to assemble functional microbial communities, particularly to identify key degraders in contaminant-degrading consortia.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10714792PMC
http://dx.doi.org/10.1128/spectrum.01787-23DOI Listing

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