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Surfactin and fengycin lipopeptides of <i>Bacillus subtilis</i> as elicitors of induced systemic resistance in plants

Environmental Microbiology · 2007 · Vol. 9(4) · pp. 1084–1090

Abstract

Multiple strains of Bacillus spp. were demonstrated to stimulate plant defence responses. However, very little is known about the nature of molecular determinants secreted by these Gram-positive bacteria that are responsible for the elicitation of the induced systemic resistance (ISR) phenomenon. This study shows that the lipopeptides surfactins and fengycins may be involved in this elicitation process. In bean, pure fengycins and surfactins provided a significant ISR-mediated protective effect on bean plants, similar to the one induced by living cells of the producing strain S499. Moreover, experiments conducted on bean and tomato plants showed that overexpression of both surfactin and fengycin biosynthetic genes in the naturally poor producer Bacillus subtilis strain 168 was associated with a significant increase in the potential of the derivatives to induce resistance. In tomato cells, key enzymes of the lipoxygenase pathway appeared to be activated in resistant plants following induction by lipopeptide overproducers. To our knowledge, such lipopeptides constitute a novel class of compounds from non-pathogenic bacteria that can be perceived by plant cells as signals to initiate defence mechanisms.

Plant-Microbe Interactions and ImmunityPlant Parasitism and ResistanceLegume Nitrogen Fixing SymbiosisSurfactinBacillus subtilisBiologyLipopeptideBacteriaMicrobiologyBacillus (shape)BacillaceaeStrain (injury)Genetics

MeSH terms

Bacillus subtilisBacterial ProteinsFabaceaeLipoproteinsPeptides, CyclicPlant DiseasesPlant RootsSolanum lycopersicumLipopeptides
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References
REQUIREMENTS FOR TRANSFORMATION IN <i>BACILLUS SUBTILIS</i>
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Biological control of soil-borne pathogens by fluorescent pseudomonads
Nature Reviews Microbiology · 2005 · 2,546 citations
Recent trends in the biochemistry of surfactin
Applied Microbiology and Biotechnology · 1999 · 777 citations
Bacterial Volatiles Induce Systemic Resistance in Arabidopsis
PLANT PHYSIOLOGY · 2004 · 1,277 citations
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