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rhiannon standing in autumn forest

Rhiannon Mondav

Postdoc

rhiannon standing in autumn forest

Tuning fresh : radiation through rewiring of central metabolism in streamlined bacteria

Author

  • Alexander Eiler
  • Rhiannon Mondav
  • Lucas Sinclair
  • Leyden Fernandez-Vidal
  • Douglas G Scofield
  • Patrick Schwientek
  • Manuel Martinez-Garcia
  • David Torrents
  • Katherine D McMahon
  • Siv Ge Andersson
  • Ramunas Stepanauskas
  • Tanja Woyke
  • Stefan Bertilsson

Summary, in English

Most free-living planktonic cells are streamlined and in spite of their limitations in functional flexibility, their vast populations have radiated into a wide range of aquatic habitats. Here we compared the metabolic potential of subgroups in the Alphaproteobacteria lineage SAR11 adapted to marine and freshwater habitats. Our results suggest that the successful leap from marine to freshwaters in SAR11 was accompanied by a loss of several carbon degradation pathways and a rewiring of the central metabolism. Examples for these are C1 and methylated compounds degradation pathways, the Entner-Doudouroff pathway, the glyoxylate shunt and anapleuretic carbon fixation being absent from the freshwater genomes. Evolutionary reconstructions further suggest that the metabolic modules making up these important freshwater metabolic traits were already present in the gene pool of ancestral marine SAR11 populations. The loss of the glyoxylate shunt had already occurred in the common ancestor of the freshwater subgroup and its closest marine relatives, suggesting that the adaptation to freshwater was a gradual process. Furthermore, our results indicate rapid evolution of TRAP transporters in the freshwater clade involved in the uptake of low molecular weight carboxylic acids. We propose that such gradual tuning of metabolic pathways and transporters toward locally available organic substrates is linked to the formation of subgroups within the SAR11 clade and that this process was critical for the freshwater clade to find and fix an adaptive phenotype.

Publishing year

2016-08

Language

English

Pages

1902-1914

Publication/Series

The Isme Journal

Volume

10

Issue

8

Document type

Journal article

Publisher

Nature Publishing Group

Topic

  • Microbiology
  • Evolutionary Biology

Keywords

  • Adaptation, Physiological
  • Alphaproteobacteria/genetics
  • Biological Evolution
  • Carbon/metabolism
  • Ecosystem
  • Fresh Water/microbiology
  • Phenotype
  • Phylogeny
  • Plankton/genetics

Status

Published

ISBN/ISSN/Other

  • ISSN: 1751-7362