Induced ligno-suberin vascular coating and tyramine-derived hydroxycinnamic acid amides restrict Ralstonia solanacearum colonization in resistant tomato

Tomato varieties resistant to the bacterial wilt pathogen Ralstonia solanacearum have the ability to restrict bacterial movement in the plant. Inducible vascular cell wall reinforcements seem to play a key role in confining R. solanacearum into the xylem vasculature of resistant tomato. However, the...

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Authors: Kashyap, Anurag|||0000-0003-2622-8209, Jiménez Jiménez, Álvaro Luis|||0000-0002-9406-4595, Zhang, Weiqi|||0000-0002-2535-1398, Capellades, Montserrat|||0000-0001-9514-2885, Srinivasan, Sumithra Yasaswini|||0000-0002-0473-9801, Laromaine, Anna|||0000-0002-4764-0780, Serra, Olga|||0000-0002-1678-0932, Figueras, Mercè|||0000-0002-6288-1830, Rencoret, Jorge|||0000-0003-2728-7331, Gutiérrez Casbas, Ana|||0000-0002-8823-9029, Valls, Marc|||0000-0003-2312-0091, Sánchez Coll, Núria|||0000-0002-8889-0399
Format: article
Publication Date:2022
Country:España
Institution:Universitat Autònoma de Barcelona
Repository:Dipòsit Digital de Documents de la UAB
Language:English
OAI Identifier:oai:ddd.uab.cat:255144
Online Access:https://ddd.uab.cat/record/255144
https://dx.doi.org/urn:doi:10.1111/nph.17982
Access Level:Open access
Keyword:Bacterial wilt
Feruloyltyramine
HCAAs
Lignin
Ralstonia solanacearum
Suberin
Tomato
Vascular coating
Description
Summary:Tomato varieties resistant to the bacterial wilt pathogen Ralstonia solanacearum have the ability to restrict bacterial movement in the plant. Inducible vascular cell wall reinforcements seem to play a key role in confining R. solanacearum into the xylem vasculature of resistant tomato. However, the type of compounds involved in such vascular physico-chemical barriers remain understudied, while being a key component of resistance. Here we use a combination of histological and live-imaging techniques, together with spectroscopy and gene expression analysis to understand the nature of R. solanacearum-induced formation of vascular coatings in resistant tomato. We describe that resistant tomato specifically responds to infection by assembling a vascular structural barrier formed by a ligno-suberin coating and tyramine-derived hydroxycinnamic acid amides. Further, we show that overexpressing genes of the ligno-suberin pathway in a commercial susceptible variety of tomato restricts R. solanacearum movement inside the plant and slows disease progression, enhancing resistance to the pathogen. We propose that the induced barrier in resistant plants does not only restrict the movement of the pathogen, but may also prevent cell wall degradation by the pathogen and confer anti-microbial properties, effectively contributing to resistance.