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FGB1 and WSC3 are in planta-induced beta-glucan-binding fungal lectins with different functions

Authors :
Wawra, Stephan
Fesel, Philipp
Widmer, Heidi
Neumann, Ulla
Lahrmann, Urs
Becker, Stefan
Hehemann, Jan-Hendrik
Langen, Gregor
Zuccaro, Alga
Wawra, Stephan
Fesel, Philipp
Widmer, Heidi
Neumann, Ulla
Lahrmann, Urs
Becker, Stefan
Hehemann, Jan-Hendrik
Langen, Gregor
Zuccaro, Alga
Publication Year :
2019

Abstract

In the root endophyte Serendipita indica, several lectin-like members of the expanded multigene family of WSC proteins are transcriptionally induced in planta and are potentially involved in beta-glucan remodeling at the fungal cell wall. Using biochemical and cytological approaches we show that one of these lectins, SiWSC3 with three WSC domains, is an integral fungal cell wall component that binds to long-chain beta 1-3-glucan but has no affinity for shorter beta 1-3- or beta 1-6-linked glucose oligomers. Comparative analysis with the previously identified beta-glucan-binding lectin SiFGB1 demonstrated that whereas SiWSC3 does not require beta 1-6-linked glucose for efficient binding to branched beta 1-3-glucan, SiFGB1 does. In contrast to SiFGB1, the multivalent SiWSC3 lectin can efficiently agglutinate fungal cells and is additionally induced during fungus-fungus confrontation, suggesting different functions for these two beta-glucan-binding lectins. Our results highlight the importance of the beta-glucan cell wall component in plant-fungus interactions and the potential of beta-glucan-binding lectins as specific detection tools for fungi in vivo.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1201315600
Document Type :
Electronic Resource