Induced systemic resistance (ISR) in Arabidopsis thaliana against Pseudomonas syringe pv. tomato by 2,4-diacetylphloroglucinol-producting Pseudomonas fluorescens

Publication date

2012

Authors

Weller, D.M.
Mavrodi, D.V.
van Pelt, J.A.ORCID 0000-0002-1202-4291ISNI 0000000392588982
Pieterse, Corné M.J.ORCID 0000-0002-5473-4646ISNI 0000000357875345
van Loon, L.C.ISNI 0000000077848334
Bakker, PeterISNI 0000000393767106

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Abstract

Pseudomonas fluorescens strains that produce the polyketide antibiotic 2,4-diacetylphloroglucinol (2,4-DAPG) are among the most effective rhizobacteria that suppress root and crown rots, wilts, and damping-off diseases of a variety of crops, and they play a key role in the natural suppressiveness of some soils to certain soilborne pathogens. Root colonization by 2,4-DAPG-producing P. fluorescens strains Pf-5 (genotype A), Q2-87 (genotype B), Q8r1-96 (genotype D), and HT5-1 (genotype N) produced induced systemic resistance (ISR) in Arabidopsis thaliana accession Col-0 against bacterial speck caused by P. syringae pv. tomato. The ISR-eliciting activity of the four bacterial genotypes was similar, and all genotypes were equivalent in activity to the well-characterized strain P. fluorescens WCS417r. The 2,4-DAPG biosynthetic locus consists of the genes phlHGF and phlACBDE. phlD or phlBC mutants of Q2-87 (2,4-DAPG minus) were significantly reduced in ISR activity, and genetic complementation of the mutants restored ISR activity back to wild-type levels. A phlF regulatory mutant (overproducer of 2,4-DAPG) had ISR activity equivalent to the wild-type Q2-87. Introduction of DAPG into soil at concentrations of 10 to 250 µM 4 days before challenge inoculation induced resistance equivalent to or better than the bacteria. Strain Q2-87 induced resistance on transgenic NahG plants but not on npr1-1, jar1, and etr1 Arabidopsis mutants. These results indicate that the antibiotic 2,4-DAPG is a major determinant of ISR in 2,4-DAPGproducing P. fluorescens, that the genotype of the strain does not affect its ISR activity, and that the activity induced by these bacteria operates through the ethylene- and jasmonic acid-dependent signal transduction pathway.

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Citation

Weller, D M, Mavrodi, D V, van Pelt, J A, Pieterse, C M J, van Loon, L C & Bakker, P A H M 2012, 'Induced systemic resistance (ISR) in Arabidopsis thaliana against Pseudomonas syringe pv. tomato by 2,4-diacetylphloroglucinol-producting Pseudomonas fluorescens', Phytopathology, vol. 403, pp. 403-412. https://doi.org/10.1094/ PHYTO-08-11-0222