CSIRO Agriculture and Food, Werribee, VIC 3030, Australia.
Centre for Food Safety and Innovation, Tasmanian Institute of Agriculture, University of Tasmania, Hobart, TAS 7001, Australia.
FEMS Microbiol Lett. 2018 Mar 1;365(6). doi: 10.1093/femsle/fnx279.
Pseudomonas fragi is a meat and milk spoilage bacterium with high iron requirements; however, mechanisms of iron acquisition remain largely unknown. The aim of this work was to investigate siderophore production as an iron acquisition system for P. fragi. A vibrioferrin siderophore gene cluster was identified in 13 P. fragi, and experiments were conducted with a representative strain of this group (F1801). Chromeazurol S assays showed that P. fragi F1801 produced siderophores under iron starvation at optimum growth and refrigeration temperature. Conversely, supplementation of low iron media with 50 μM FeCl3 repressed transcription of the vibrioferrin genes and siderophore production. Disruption of the siderophore receptor (pvuA) caused polar effects on downstream vibrioferrin genes, resulting in impaired siderophore production of the ΔpvuA mutant. Growth of this mutant was compared to growth of a control strain (Δlip) with wild-type vibrioferrin genes in low iron media supplemented with iron chelators 2,2΄-bipyridyl or apo-transferrin. While 25 μM 2,2΄-bipyridyl caused impaired growth of ΔpvuA, growth of the mutant was completely inhibited by 2.5 μM apo-transferrin, but could be restored by FeCl3 addition. In summary, this work identifies a vibrioferrin-mediated iron acquisition system of P. fragi, which is required for growth of this bacterium under iron starvation.
脆弱气单胞菌是一种需要高铁的肉类和奶制品腐败菌,但铁的获取机制在很大程度上仍不清楚。本工作旨在研究其产生铁载体作为铁获取系统的机制。在 13 株脆弱气单胞菌中鉴定出一种鱼源素铁载体基因簇,并对该组的一个代表性菌株(F1801)进行了实验。铬天青 S 试验表明,P. fragi F1801 在最适生长和冷藏温度下的铁饥饿条件下产生铁载体。相反,在低铁培养基中添加 50 μM FeCl3 会抑制鱼源素基因的转录和铁载体的产生。铁载体受体(pvuA)的缺失会对下游鱼源素基因产生极性效应,导致ΔpvuA 突变体铁载体的产生受损。将该突变体的生长与野生型鱼源素基因的对照菌株(Δlip)在添加铁螯合剂 2,2΄-联吡啶或脱铁转铁蛋白的低铁培养基中的生长进行了比较。虽然 25 μM 2,2΄-联吡啶会导致ΔpvuA 生长受损,但 2.5 μM 脱铁转铁蛋白完全抑制了突变体的生长,但通过添加 FeCl3 可以恢复生长。总之,本研究鉴定了脆弱气单胞菌的鱼源素介导的铁获取系统,该系统是该菌在铁饥饿条件下生长所必需的。