Utilize este identificador para referenciar este registo: http://hdl.handle.net/10400.5/26979
Título: An in‑planta comparative study of Plasmopara viticola proteome reveals diferent infection strategies towards susceptible and Rpv3‑mediated resistance hosts
Autor: Figueiredo, Joana
Santos, Rita B.
Guerra-Guimarães, Leonor
Leclercq, Céline C.
Renaut, Jenny
Malhó, Rui
Figueiredo, Andreia
Palavras-chave: plasmopara viticola
grapevine diseases
grapevine
Data: 2022
Editora: Nature portfolio
Citação: Figueiredo J, Santos RB, Guerra-Guimarães L, Leclercq CC, Renaut J, Malhó R, Figueiredo A. An in-planta comparative study of Plasmopara viticola proteome reveals different infection strategies towards susceptible and Rpv3-mediated resistance hosts. Sci Rep. 2022 Dec 1;12(1):20794.
Resumo: Plasmopara viticola, an obligate biotrophic oomycete, is the causal agent of one of the most harmful grapevine diseases, downy mildew. Within this pathosystem, much information is gathered on the host, as characterization of pathogenicity and infection strategy of a biotrophic pathogen is quite challenging. Molecular insights into P. viticola development and pathogenicity are just beginning to be uncovered, mainly by transcriptomic studies. Plasmopara viticola proteome and secretome were only predicted based on transcriptome data. In this study, we have identified the in-planta proteome of P. viticola during infection of a susceptible ('Trincadeira') and a Rpv3-mediated resistance ('Regent') grapevine cultivar. Four hundred and twenty P. viticola proteins were identified on a label-free mass spectrometry-based approach of the apoplastic fluid of grapevine leaves. Overall, our study suggests that, in the compatible interaction, P. viticola manipulates salicylic-acid pathway and isoprenoid biosynthesis to enhance plant colonization. Furthermore, during the incompatible interaction, development-associated proteins increased while oxidoreductases protect P. viticola from ROS-associated plant defence mechanism. Up to our knowledge this is the first in-planta proteome characterization of this biotrophic pathogen, thus this study will open new insights into our understanding of this pathogen colonization strategy of both susceptible and Rpv3-mediated resistance grapevine genotypes.
URI: http://hdl.handle.net/10400.5/26979
DOI: https://doi.org/10.1038/s41598-022-25164-8
Versão do Editor: https://www.nature.com/scientificreports
Aparece nas colecções:ISA - Artigos em Revistas Internacionais

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