Rhizoxin analogs, orfamide A and chitinase production contribute to the toxicity ofPseudomonas protegensstrain Pf-5 toDrosophila melanogaster
Autor: | Baruch Sneh, Virginia O. Stockwell, Marcella D. Henkels, Cedar N. Hesse, Joyce E. Loper, Kise L. Bond, Lorena I. Rangel, Francesca L. Walker, Teresa A. Kidarsa, Barbara J. Taylor, Marika H. Olcott |
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Rok vydání: | 2016 |
Předmět: |
0301 basic medicine
biology Rhizoxin 030106 microbiology Mutant Pseudomonas biology.organism_classification Microbiology 03 medical and health sciences Pseudomonas protegens chemistry.chemical_compound 030104 developmental biology chemistry Insect toxin Melanogaster Drosophila melanogaster Ecology Evolution Behavior and Systematics Regulator gene |
Zdroj: | Environmental Microbiology. 18:3509-3521 |
ISSN: | 1462-2912 |
DOI: | 10.1111/1462-2920.13369 |
Popis: | Pseudomonas protegens strain Pf-5 is a soil bacterium that was first described for its capacity to suppress plant diseases and has since been shown to be lethal to certain insects. Among these is the common fruit fly Drosophila melanogaster, a well-established model organism for studies evaluating the molecular and cellular basis of the immune response to bacterial challenge. Pf-5 produces the insect toxin FitD, but a ΔfitD mutant of Pf-5 retained full toxicity against D. melanogaster in a noninvasive feeding assay, indicating that FitD is not a major determinant of Pf-5's oral toxicity against this insect. Pf-5 also produces a broad spectrum of exoenzymes and natural products with antibiotic activity, whereas a mutant with a deletion in the global regulatory gene gacA produces none of these exoproducts and also lacks toxicity to D. melanogaster. In this study, we made use of a panel of Pf-5 mutants having single or multiple mutations in the biosynthetic gene clusters for seven natural products and two exoenzymes that are produced by the bacterium under the control of gacA. Our results demonstrate that the production of rhizoxin analogs, orfamide A, and chitinase are required for full oral toxicity of Pf-5 against D. melanogaster, with rhizoxins being the primary determinant. |
Databáze: | OpenAIRE |
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