Comparative proteomic profiling in compatible and incompatible interactions between hop roots and Verticillium albo-atrum

Verticillium wilt, caused by the soil borne fungal pathogen Verticillium albo-atrum, is a serious threat to hop (Humulus lupulus L.) production in several hop-growing regions. A proteomic approach was applied to analyse the response of root tissue in compatible and incompatible interactions between...

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Veröffentlicht in:Plant physiology and biochemistry 2013-07, Vol.68, p.23-31
Hauptverfasser: Mandelc, Stanislav, Timperman, Isaak, Radišek, Sebastjan, Devreese, Bart, Samyn, Bart, Javornik, Branka
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Sprache:eng
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Zusammenfassung:Verticillium wilt, caused by the soil borne fungal pathogen Verticillium albo-atrum, is a serious threat to hop (Humulus lupulus L.) production in several hop-growing regions. A proteomic approach was applied to analyse the response of root tissue in compatible and incompatible interactions between hop and V. albo-atrum at 10, 20 and 30 days after inoculation, using two-dimensional difference gel electrophoresis (2D-DIGE) coupled with de novo sequencing of derivatized peptides. Approximately 1200 reproducible spots were detected on the gels, of which 102 were identified. In the compatible interaction, 252 spots showed infection-specific changes in spot abundance and an accumulation of defence-related proteins, such as chitinase, β-glucanase, thaumatin-like protein, peroxidase and germin-like protein, was observed. However, no significant infection-specific changes were detected in the incompatible interaction. The results indicate that resistance in this pathosystem may be conferred by constitutive rather than induced defence mechanisms. The identification and high abundance of two mannose/glucose-specific lectin isoforms present only in the roots of the resistant cultivar suggests function of lectins in hop resistance against V. albo-atrum. [Display omitted] •A proteomic approach was used in studies of the hop-Verticillium pathosystem.•De novo peptide sequencing proved useful in hop with limited genomic resources.•No induced response was detected in the incompatible interaction.•A novel candidate protein that may be implicated in resistance was identified.
ISSN:0981-9428
1873-2690
DOI:10.1016/j.plaphy.2013.03.017