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Metabolic versatility and antibacterial metabolite biosynthesis are distinguishing genomic features of the fire blight antagonist Pantoea vagans C9-1
Authors:Smits Theo H M  Rezzonico Fabio  Kamber Tim  Blom Jochen  Goesmann Alexander  Ishimaru Carol A  Frey Jürg E  Stockwell Virginia O  Duffy Brion
Institution:1. Swiss National Competence Center for Fire Blight, Division of Plant Protection, Agroscope Changins-Wädenswil ACW, Wädenswil, Switzerland.; 2. CeBiTec, Bielefeld University, Bielefeld, Germany.; 3. Department of Plant Pathology, University of Minnesota, St. Paul, Minnesota, United States of America.; 4. Department of Botany and Plant Pathology, Oregon State University, Corvallis, Oregon, United States of America.;J. Craig Venter Institute, United States of America
Abstract:

Background

Pantoea vagans is a commercialized biological control agent used against the pome fruit bacterial disease fire blight, caused by Erwinia amylovora. Compared to other biocontrol agents, relatively little is currently known regarding Pantoea genetics. Better understanding of antagonist mechanisms of action and ecological fitness is critical to improving efficacy.

Principal Findings

Genome analysis indicated two major factors contribute to biocontrol activity: competition for limiting substrates and antibacterial metabolite production. Pathways for utilization of a broad diversity of sugars and acquisition of iron were identified. Metabolism of sorbitol by P. vagans C9-1 may be a major metabolic feature in biocontrol of fire blight. Biosynthetic genes for the antibacterial peptide pantocin A were found on a chromosomal 28-kb genomic island, and for dapdiamide E on the plasmid pPag2. There was no evidence of potential virulence factors that could enable an animal or phytopathogenic lifestyle and no indication of any genetic-based biosafety risk in the antagonist.

Conclusions

Identifying key determinants contributing to disease suppression allows the development of procedures to follow their expression in planta and the genome sequence contributes to rationale risk assessment regarding the use of the biocontrol strain in agricultural systems.
Keywords:
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