Infection by Moniliophthora perniciosa reprograms tomato Micro-Tom physiology, establishes a sink, and increases secondary cell wall synthesis

Author:

Paschoal Daniele12ORCID,Costa Juliana L1,da Silva Eder M1ORCID,da Silva Fábia B2,Capelin Diogo2ORCID,Ometto Vitor1,Aricetti Juliana A3,Carvalho Gabriel G4,Pimpinato Rodrigo F1,de Oliveira Ricardo F2,Carrera Esther5ORCID,López-Díaz Isabel5,Rossi Mônica L1,Tornisielo Valdemar1ORCID,Caldana Camila6ORCID,Riano-Pachon Diego M1ORCID,Cesarino Igor4ORCID,Teixeira Paulo J P L2,Figueira Antonio1ORCID

Affiliation:

1. Centro de Energia Nuclear na Agricultura, Universidade de São Paulo, Piracicaba , SP, 13400-970 , Brazil

2. Escola Superior de Agricultura “Luiz de Queiroz”, Universidade de São Paulo, Piracicaba , SP, 13418-900 , Brazil

3. Laboratório Nacional de Biorrenováveis, Centro Nacional de Pesquisa em Energia e Materiais , Campinas, SP, 13083-100 , Brazil

4. Instituto de Biociências, Universidade de São Paulo , São Paulo, SP, 05508-090 , Brazil

5. Universitat Politècnica de València (UPV), Consejo Superior de Investigaciones Científicas (CSIC) , Valencia , Spain

6. Max Planck Institute for Molecular Plant Physiology , 14476 Potsdam-Golm , Germany

Abstract

Abstract Witches’ broom disease of cacao is caused by the pathogenic fungus Moniliophthora perniciosa. By using tomato (Solanum lycopersicum) cultivar Micro-Tom (MT) as a model system, we investigated the physiological and metabolic consequences of M. perniciosa infection to determine whether symptoms result from sink establishment during infection. Infection of MT by M. perniciosa caused reductions in root biomass and fruit yield, a decrease in leaf gas exchange, and down-regulation of photosynthesis-related genes. The total leaf area and water potential decreased, while ABA levels, water conductance/conductivity, and ABA-related gene expression increased. Genes related to sugar metabolism and those involved in secondary cell wall deposition were up-regulated upon infection, and the concentrations of sugars, fumarate, and amino acids increased. 14C-glucose was mobilized towards infected MT stems, but not in inoculated stems of the MT line overexpressing CYTOKININ OXIDASE-2 (35S::AtCKX2), suggesting a role for cytokinin in establishing a sugar sink. The up-regulation of genes involved in cell wall deposition and phenylpropanoid metabolism in infected MT, but not in 35S::AtCKX2 plants, suggests establishment of a cytokinin-mediated sink that promotes tissue overgrowth with an increase in lignin. Possibly, M. perniciosa could benefit from the accumulation of secondary cell walls during its saprotrophic phase of infection.

Funder

Fundação de Amparo à Pesquisa do Estado de São Paulo

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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