Actinomycins inhibit the production of the siderophore pyoverdines in the plant pathogen Pseudomonas cichorii SPC9018

Author:

Maenaka Risa1,Tani Shuji1,Hikichi Yasufumi2,Kai Kenji1

Affiliation:

1. Graduate School of Life and Environmental Sciences, Osaka Prefecture University, Osaka, Japan

2. Laboratory of Plant Pathology and Biotechnology, Kochi University, Kochi, Japan

Abstract

Abstract Pyoverdines, a group of peptide siderophores produced by Pseudomonas species, function not only in iron acquisition, but also in their virulence in hosts. Thus, chemical inhibition of pyoverdine production may be an effective strategy to control Pseudomonas virulence. In the plant pathogen Pseudomonas cichorii SPC9018 (SPC9018), pyoverdine production is required for virulence on eggplant. We screened microbial culture extracts in a pyoverdine-production inhibition assay of SPC9018 and found Streptomyces sp. RM-32 as a candidate-producer. We isolated two active compounds from RM-32 cultures, and elucidated their structures to be actinomycins X2 and D. Actinomycins X2 and D inhibited pyoverdine production by SPC9018 with IC50 values of 17.6 and 29.6 μM, respectively. Furthermore, pyoverdine production in other Pseudomonas bacteria, such as the mushroom pathogen P. tolaasii, was inhibited by the actinomycins. Therefore, these actinomycins may be useful as chemical tools to examine pyoverdine functions and as seed compounds for anti-Pseudomonas virulence agents.

Funder

JSPS KAKENHI

Publisher

Oxford University Press (OUP)

Subject

Organic Chemistry,Molecular Biology,Applied Microbiology and Biotechnology,General Medicine,Biochemistry,Analytical Chemistry,Biotechnology

Reference37 articles.

1. Iron and oxidative stress in bacteria;Touati;Arch Biochem Biohys,2000

2. Bacterial iron homeostasis;Andrews;FEMS Microbiol Rev,2003

3. Genomics of pyoverdine-mediated iron uptake in pseudomonads;Ravel;Trends Microbiol,2003

4. Pyoverdine siderophores: from biogenesis to biosignificance;Visca;Trends Microbiol,2007

5. The biosynthesis of pyoverdines;Ringel;Microb Cell,2018

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