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Author Spotlight: Quantifying Siderophores and Pyochelin for Infection Control
Published on: March 15, 2024
Effects of exogenous pyoverdines on Fe availability and their impacts on Mn(II) oxidation by Pseudomonas putida GB-1
Sung-Woo Lee1, Dorothy L Parker2, Kati Geszvain1
1Division of Environmental and Biomolecular Systems, Institute of Environmental Health, Oregon Health & Science University Portland, OR, USA.
Abstract:
Pseudomonas putida GB-1 is a Mn(II)-oxidizing bacterium that produces pyoverdine-type siderophores (PVDs), which facilitate the uptake of Fe(III) but also influence MnO2 formation. Recently, a non-ribosomal peptide synthetase mutant that does not synthesize PVD was described. Here we identified a gene encoding the PVDGB-1 (PVD produced by strain GB-1) uptake receptor (PputGB1_4082) of strain GB-1 and confirmed its function by in-frame mutagenesis. Growth and other physiological responses of these two mutants and of wild type were compared during cultivation in the presence of three chemically distinct sets of PVDs (siderotypes n°1, n°2, and n°4) derived from various pseudomonads. Under iron-limiting conditions, Fe(III) complexes of various siderotype n°1 PVDs (including PVDGB-1) allowed growth of wild type and the synthetase mutant, but not the receptor mutant, confirming that iron uptake with any tested siderotype n°1 PVD depended on PputGB1_4082. Fe(III) complexes of a siderotype n°2 PVD were not utilized by any strain and strongly induced PVD synthesis. In contrast, Fe(III) complexes of siderotype n°4 PVDs promoted the growth of all three strains and did not induce PVD synthesis by the wild type, implying these complexes were utilized for iron uptake independent of PputGB1_4082. These differing properties of the three PVD types provided a way to differentiate between effects on MnO2 formation that resulted from iron limitation and others that required participation of the PVDGB-1 receptor. Specifically, MnO2 production was inhibited by siderotype n°1 but not n°4 PVDs indicating PVD synthesis or PputGB1_4082 involvement rather than iron-limitation caused the inhibition. In contrast, iron limitation was sufficient to explain the inhibition of Mn(II) oxidation by siderotype n°2 PVDs. Collectively, our results provide insight into how competition for iron via siderophores influences growth, iron nutrition and MnO2 formation in more complex environmental systems.
Insights
Pseudomonas putida GB-1 uses a specific receptor for iron uptake via siderophores, influencing manganese oxidation. Different siderophore types reveal distinct iron acquisition mechanisms and impacts on manganese dioxide formation.
Area of Science:
- Microbiology
- Biochemistry
- Environmental Science
Background:
- Pseudomonas putida GB-1 oxidizes Mn(II) and produces pyoverdine-type siderophores (PVDs) for iron uptake, impacting manganese dioxide (MnO2) formation.
- Previous work described a mutant unable to synthesize PVDs, highlighting the role of these compounds in bacterial physiology.
Purpose of the Study:
- To identify and characterize the PVDGB-1 uptake receptor (PputGB1_4082) in Pseudomonas putida GB-1.
- To investigate the distinct roles of different PVD siderotypes in iron acquisition, bacterial growth, and MnO2 formation.
Main Methods:
- Gene identification and in-frame mutagenesis to create PVD synthetase and PVD receptor mutants.
- Comparative growth analysis of wild-type and mutant strains under iron-limiting conditions with various PVD siderotypes (n°1, n°2, n°4).
- Assessment of MnO2 formation in relation to PVD utilization and iron availability.
Main Results:
- The PputGB1_4082 receptor is essential for iron uptake mediated by siderotype n°1 PVDs, including PVDGB-1.
- Siderotype n°2 PVDs were not utilized for iron uptake but induced PVD synthesis, while siderotype n°4 PVDs facilitated iron uptake independently of the PputGB1_4082 receptor.
- Differential effects on MnO2 formation were observed: siderotype n°1 PVDs inhibited MnO2 production, suggesting PVD synthesis or receptor involvement, whereas siderotype n°2 PVDs' inhibition was linked to iron limitation.
Conclusions:
- The study elucidates distinct iron acquisition pathways mediated by different PVD siderotypes in Pseudomonas putida GB-1.
- The PVDGB-1 receptor plays a crucial role in utilizing specific siderophores for iron nutrition.
- Competition for iron via siderophores significantly influences bacterial growth, iron metabolism, and manganese oxidation in environmental settings.
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