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Vozelj, A.

Publications and source records attributed to Vozelj, A..

2 recordsLinked to original sources

Functionality of potato virus Y coat protein in cell-to-cell movement is defined by flexibility of its N terminal region

Potato virus Y (PVY) is one of the top ten economically most important plant viruses and responsible for major yield losses. We previously suggested the involvement of the N terminal region of potato virus Y coat protein (CP) in PVY spread. By constructing different N terminal deletion mutants of PVY N605 strain, we here show that deletions of 40 or more amino acid residues from the N terminal region of the CP resulted in the PVY multiplication limited to primary infected cells in Nicotiana clevelandii plants. Deletion of 26 residues profoundly impaired PVY cell-to-cell movement and prevented systemic PVY spread, while deletions of 19-23 residues allowed delayed systemic PVY spread. Introduced point mutations in the identified region prevent (S21G) or delay (G20P) PVY movement. In summary, this work shows the significance of the CP N-terminus for movement of the PVY.

plant biology↗

An ERF transcription factor StPTI5, a novel regulator of endophyte community maintenance in potato

We have recently identified ERF transcription factor PTI5 as a susceptibility factor, negatively regulating immune response to diverse pathogens. Here we investigated the processes involved in colonisation of potato with beneficial organisms. RNAseq showed that at the time of Bacillus subtilis biofilm establishment, immune responses in interacting roots were attenuated, and complex transcriptional network was triggered, with ethylene signalling being a central module and PTI5 strongly induced. Interestingly, the response is intensified if plants are inoculated by two antagonistic B. subtilis strains. While PTI5 is not involved in the establishment of biofilm on roots, we show that bacterial abundance increases in PTI5-silenced plants. Remarkably, root colonization by the arbuscular mycorrhizal fungus Rhizophagus irregularis was also higher in the PTI5-silenced plants. PTI5 is thus involved both in blocking defence against harmful and blocking colonisation with beneficial microbes. Such mechanistic understanding of plant-microbe interaction paves the way for sustainable crop management.

plant biology↗