The long-term effect of uranium and pH on the community composition of an artificial consortium

In the environment, microorganisms are living in diverse communities, which are impacted by the prevailing environmental conditions. Here, we present a study investigating the effect of low pH and elevated uranium concentration on the dynamics of an artificial microbial consortium. The members (Caul...

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Veröffentlicht in:FEMS microbiology ecology 2016-01, Vol.92 (1), p.1
Hauptverfasser: Brzoska, Ryann M., Bollmann, Annette
Format: Artikel
Sprache:eng
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Zusammenfassung:In the environment, microorganisms are living in diverse communities, which are impacted by the prevailing environmental conditions. Here, we present a study investigating the effect of low pH and elevated uranium concentration on the dynamics of an artificial microbial consortium. The members (Caulobacter sp. OR37, Asinibacterium sp. OR53, Ralstonia sp. OR214 and Rhodanobacter sp. OR444) were isolated from a uranium contaminated and acidic subsurface sediment. In pure culture, Ralstonia sp. OR214 had the highest growth rate at neutral and low pH and only Caulobacter sp. OR37 and Asinibacterium sp. OR53 grew in the presence uranium. The four strains were mixed in equal ratios, incubated at neutral and low pH and in the presence uranium and transferred to fresh medium once per week for 30 weeks. After 30 weeks, Ralstonia sp. OR214 was dominant at low and neutral pH and Caulobacter sp. OR37 and Asinibacterium sp. OR53 were dominant in the presence of uranium. After 12 weeks, the cultures were also transferred to new conditions to access the response of the consortia to changing conditions. The transfers showed an irreversible effect of uranium, but not of low pH on the consortia. Overall, the strains initially tolerant to the respective conditions persisted over time in high abundances in the consortia. The composition of an artificial consortium differs depending on the conditions (pH7, pH4.5 and presence of uranium). Graphical Abstract Figure. The composition of an artificial consortium differs depending on the conditions (pH7, pH4.5 and presence of uranium).
ISSN:1574-6941
0168-6496
1574-6941
DOI:10.1093/femsec/fiv158