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Vlkova-Zlebkova, M.

Publications and source records attributed to Vlkova-Zlebkova, M..

2 recordsLinked to original sources

Multiple effectors trigger nonhost resistance in Solanum americanum against Pseudomonas syringae

Wild plant species are threatened by diverse pathogens, but disease symptoms are rarely observed in nature. This suggests that wild plants harbor valuable sources of resistance. In this study, we show that a model bacterial pathogen Pseudomonas syringae pv. tomato (Pto) DC3000 triggered defense responses in all tested accessions of a wild Solanaceae species, Solanum americanum. Pto DC3000-triggered immunity in S. americanum required type III secretion system. We show that seven Pto DC3000 effectors (AvrPto, HopAD1, HopAM1, HopC1, HopAA1-1, HopM1, and AvrE1) triggered hypersensitive responses (HR) in S. americanum accession SP2273. Significantly, sequential deletion of the HR-triggering effectors from Pto DC3000 resulted in enhanced virulence in S. americanum. However, the well-conserved effectors, HopM1 and AvrE1 were indispensable for virulence. We conclude that the immunity triggered by multiple effectors contributes to nonhost resistance in S. americanum against P. syringae. We propose that the identification of the corresponding disease resistance genes for HopM1 and AvrE1 in S. americanum would accelerate development of durable immunity to P. syringae pathogens in Solanaceae crops.

plant biology↗

Emergence and host range expansion of an epidemic lineage of Ralstonia solanacearum

The evolutionary processes underlying disease outbreaks remain unknown for most bacterial plant pathogens. We sequenced an outbreak of lethal wilt disease in Martinique caused by two distantly related lineages in the Ralstonia solanacearum species complex. One lineage (R. solanacearum IIB-4NPB) exhibited the broadest host range ever documented for a single lineage in the field, while the other (R. pseudosolanacearum I-18) expanded in parallel but retained specialisation on solanaceaous hosts. Phylogenomic analysis of 407 outbreak isolates shows both lineages independently disseminated from mainland populations into Martinique. We resolved fine-scale geographic patterns of genomic diversity and identified spatial hotspots of interspecies mobile element exchange, resulting in the identification of a new family of Ralstonia integrative conjugative elements (ICEs) associated with the outbreak. ICE accessory gene integration sites display striking functional specialization and differentiation despite variable gene content: each site acquires only metabolism-associated or defence-related genes, respectively. This work provides insight into the origin and genomic changes associated with an outbreak of plant disease, and highlights the role of mobile elements in driving pathogen emergence.

microbiology↗