In Planta Study Localizes an Effector Candidate from Austropuccinia psidii Strain MF-1 to the Nucleus and Demonstrates In Vitro Cuticular Wax-Dependent Differential Expression

Author:

Hayashibara Carolina Alessandra de Almeida1,Lopes Mariana da Silva1,Tobias Peri A.2ORCID,Santos Isaneli Batista dos1,Figueredo Everthon Fernandes3,Ferrarezi Jessica Aparecida1,Marques João Paulo Rodrigues4ORCID,Marcon Joelma1,Park Robert F.5ORCID,Teixeira Paulo José Pereira Lima6,Quecine Maria Carolina1

Affiliation:

1. Department of Genetics, “Luiz de Queiroz” College of Agriculture, University of São Paulo, Piracicaba 13418-900, SP, Brazil

2. School of Life and Environmental Sciences, The University of Sydney, Camperdown, NSW 2006, Australia

3. Center for Nuclear Energy in Agriculture (CENA), University of São Paulo, Piracicaba 134009-70, SP, Brazil

4. Department of Basic Sciences, Faculty of Animal Science and Food Engineering, University of São Paulo, Pirassununga 13635-900, SP, Brazil

5. School of Life and Environmental Sciences, Plant Breeding Institute, The University of Sydney, Cobbitty, NSW 2570, Australia

6. Department of Biological Sciences, “Luiz de Queiroz” College of Agriculture, University of São Paulo, Piracicaba 13418-900, SP, Brazil

Abstract

Austropuccinia psidii is a biotrophic fungus that causes myrtle rust. First described in Brazil, it has since spread to become a globally important pathogen that infects more than 480 myrtaceous species. One of the most important commercial crops affected by A. psidii is eucalypt, a widely grown forestry tree. The A. psidii–Eucalyptus spp. interaction is poorly understood, but pathogenesis is likely driven by pathogen-secreted effector molecules. Here, we identified and characterized a total of 255 virulence effector candidates using a genome assembly of A. psidii strain MF-1, which was recovered from Eucalyptus grandis in Brazil. We show that the expression of seven effector candidate genes is modulated by cell wax from leaves sourced from resistant and susceptible hosts. Two effector candidates with different subcellular localization predictions, and with specific gene expression profiles, were transiently expressed with GFP-fusions in Nicotiana benthamiana leaves. Interestingly, we observed the accumulation of an effector candidate, Ap28303, which was upregulated under cell wax from rust susceptible E. grandis and described as a peptidase inhibitor I9 domain-containing protein in the nucleus. This was in accordance with in silico analyses. Few studies have characterized nuclear effectors. Our findings open new perspectives on the study of A. psidii–Eucalyptus interactions by providing a potential entry point to understand how the pathogen manipulates its hosts in modulating physiology, structure, or function with effector proteins.

Funder

Fundação de Amparo à Pesquisa do Estado de São Paulo—FAPESP

Conselho Nacional de Pesquisa

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Fundação de Amparo à Pesquisa do Estado de São Paulo

Publisher

MDPI AG

Subject

Plant Science,Ecology, Evolution, Behavior and Systematics,Microbiology (medical)

Reference80 articles.

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3. Repertorium. Rabenhorstii fungi europaei et extraeuraopaei Cent. XXXI et XXXII;Winter;Hedwigia,1884

4. Eucalyptus rust: A disease with the potential for serious international implications;Coutinho;Plant Dis.,1998

5. Ferrugem do eucalipto;Joffily;Bragantia,1944

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