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Genomic analysis of the biocontrol strain Pseudomonas fluorescens Pf29Arp with evidence of T3SS and T6SS gene expression on plant roots. | LitMetric

AI Article Synopsis

  • Several strains of Pseudomonas bacteria promote plant growth and protect against pests, with P. fluorescens Pf29Arp specifically reducing take-all disease in wheat roots caused by a pathogenic fungus.
  • Genome analysis shows that Pf29Arp is closely related to other Pseudomonas strains but lacks certain antibiotic gene clusters found in them.
  • Pf29Arp is unique for having four clusters of type VI secretion systems (T6SS) and expresses genes related to these systems differently when colonizing healthy versus infected roots, indicating its adaptation to various root conditions.

Article Abstract

Several bacterial strains of the Pseudomonas genus provide plant growth stimulation, plant protection against pests or bioremediation. Among these bacteria, P. fluorescens Pf29Arp reduces the severity of take-all, a disease caused by the pathogenic fungus Gaeumannomyces graminis var. tritici (Ggt) on wheat roots. In this study, we obtained a draft genome of Pf29Arp and subsequent comparative genomic analyses have revealed that this bacterial strain is closely related to strains of the 'P. brassicacearum-like' subgroup including P. brassicacearum ssp. brassicacearum NFM421 and P. fluorescens F113. Despite an overall chromosomal organization similar to these strains, a number of features including antibiotic synthesis gene clusters from secondary metabolism are not found in the Pf29Arp genome. But Pf29Arp possesses different protein secretion systems including type III (T3SS) and type VI (T6SS) secretion systems. Pf29Arp is the first Pseudomonas sp. strain described with four T6SS clusters (cluster I, II, III and IV). In addition, some protein-coding genes involved in the assembly of these secretion systems are basally expressed during Pf29Arp colonization of healthy wheat roots and display different expression patterns on necrotized roots caused by Ggt. These data suggest a role of T3SS and T6SS in the Pf29Arp adaptation to different root environments.

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Source
http://dx.doi.org/10.1111/1758-2229.12048DOI Listing

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