4.5 Article

Vibrio fischeri siderophore production drives competitive exclusion during dual-species growth

期刊

MOLECULAR MICROBIOLOGY
卷 114, 期 2, 页码 244-261

出版社

WILEY
DOI: 10.1111/mmi.14509

关键词

aerobactin; competition; genes; iron; regulator; siderophore; Vibrio fischeri

资金

  1. Howard Hughes Medical Institute
  2. National Institute of General Medical Sciences [5R37GM065859, T32GM007388]
  3. National Science Foundation [MCB-1713731]

向作者/读者索取更多资源

When two or more bacterial species inhabit a shared niche, often, they must compete for limited nutrients. Iron is an essential nutrient that is especially scarce in the marine environment. Bacteria can use the production, release, and re-uptake of siderophores, small molecule iron chelators, to scavenge iron. Siderophores provide fitness advantages to species that employ them by enhancing iron acquisition, and moreover, by denying iron to competitors incapable of using the siderophore-iron complex. Here, we show that cell-free culture fluids from the marine bacterium Vibrio fischeri ES114 prevent the growth of other vibrio species. Mutagenesis reveals the aerobactin siderophore as the inhibitor. Our analysis reveals a gene, that we name aerE, encodes the aerobactin exporter, and LuxT is a transcriptional activator of aerobactin production. In co-culture, under iron-limiting conditions, aerobactin production allows V. fischeri ES114 to competitively exclude Vibrio harveyi, which does not possess aerobactin production and uptake genes. In contrast, V. fischeri ES114 mutants incapable of aerobactin production lose in competition with V. harveyi. Introduction of iutA, encoding the aerobactin receptor, together with fhuCDB, encoding the aerobactin importer are sufficient to convert V. harveyi into an aerobactin cheater.

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