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The Hemileia vastatrix effector HvEC‐016 suppresses bacterial blight symptoms in coffee genotypes with the S(H)1 rust resistance gene

A number of genes that confer resistance to coffee leaf rust (S(H)1–S(H)9) have been identified within the genus Coffea, but despite many years of research on this pathosystem, the complementary avirulence genes of Hemileia vastatrix have not been reported. After identification of H. vastatrix effec...

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Autores principales: Maia, Thiago, Badel, Jorge L., Marin‐Ramirez, Gustavo, Rocha, Cynthia de M., Fernandes, Michelle B., da Silva, José C. F., de Azevedo‐Junior, Gilson M., Brommonschenkel, Sérgio H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6079635/
https://www.ncbi.nlm.nih.gov/pubmed/27918080
http://dx.doi.org/10.1111/nph.14334
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author Maia, Thiago
Badel, Jorge L.
Marin‐Ramirez, Gustavo
Rocha, Cynthia de M.
Fernandes, Michelle B.
da Silva, José C. F.
de Azevedo‐Junior, Gilson M.
Brommonschenkel, Sérgio H.
author_facet Maia, Thiago
Badel, Jorge L.
Marin‐Ramirez, Gustavo
Rocha, Cynthia de M.
Fernandes, Michelle B.
da Silva, José C. F.
de Azevedo‐Junior, Gilson M.
Brommonschenkel, Sérgio H.
author_sort Maia, Thiago
collection PubMed
description A number of genes that confer resistance to coffee leaf rust (S(H)1–S(H)9) have been identified within the genus Coffea, but despite many years of research on this pathosystem, the complementary avirulence genes of Hemileia vastatrix have not been reported. After identification of H. vastatrix effector candidate genes (HvECs) expressed at different stages of its lifecycle, we established an assay to characterize HvEC proteins by delivering them into coffee cells via the type‐three secretion system (T3SS) of Pseudomonas syringae pv. garcae (Psgc). Employing a calmodulin‐dependent adenylate cyclase assay, we demonstrate that Psgc recognizes a heterologous P. syringae T3SS secretion signal which enables us to translocate HvECs into the cytoplasm of coffee cells. Using this Psgc‐adapted effector detector vector (EDV) system, we found that HvEC‐016 suppresses the growth of Psgc on coffee genotypes with the S(H)1 resistance gene. Suppression of bacterial blight symptoms in S(H)1 plants was associated with reduced bacterial multiplication. By contrast, HvEC‐016 enhanced bacterial multiplication in S(H)1‐lacking plants. Our findings suggest that HvEC‐016 may be recognized by the plant immune system in a S(H)1‐dependent manner. Thus, our experimental approach is an effective tool for the characterization of effector/avirulence proteins of this important pathogen.
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spelling pubmed-60796352018-08-09 The Hemileia vastatrix effector HvEC‐016 suppresses bacterial blight symptoms in coffee genotypes with the S(H)1 rust resistance gene Maia, Thiago Badel, Jorge L. Marin‐Ramirez, Gustavo Rocha, Cynthia de M. Fernandes, Michelle B. da Silva, José C. F. de Azevedo‐Junior, Gilson M. Brommonschenkel, Sérgio H. New Phytol Research A number of genes that confer resistance to coffee leaf rust (S(H)1–S(H)9) have been identified within the genus Coffea, but despite many years of research on this pathosystem, the complementary avirulence genes of Hemileia vastatrix have not been reported. After identification of H. vastatrix effector candidate genes (HvECs) expressed at different stages of its lifecycle, we established an assay to characterize HvEC proteins by delivering them into coffee cells via the type‐three secretion system (T3SS) of Pseudomonas syringae pv. garcae (Psgc). Employing a calmodulin‐dependent adenylate cyclase assay, we demonstrate that Psgc recognizes a heterologous P. syringae T3SS secretion signal which enables us to translocate HvECs into the cytoplasm of coffee cells. Using this Psgc‐adapted effector detector vector (EDV) system, we found that HvEC‐016 suppresses the growth of Psgc on coffee genotypes with the S(H)1 resistance gene. Suppression of bacterial blight symptoms in S(H)1 plants was associated with reduced bacterial multiplication. By contrast, HvEC‐016 enhanced bacterial multiplication in S(H)1‐lacking plants. Our findings suggest that HvEC‐016 may be recognized by the plant immune system in a S(H)1‐dependent manner. Thus, our experimental approach is an effective tool for the characterization of effector/avirulence proteins of this important pathogen. John Wiley and Sons Inc. 2016-12-05 2017-02 /pmc/articles/PMC6079635/ /pubmed/27918080 http://dx.doi.org/10.1111/nph.14334 Text en © 2016 The Authors. New Phytologist © 2016 New Phytologist Trust This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Maia, Thiago
Badel, Jorge L.
Marin‐Ramirez, Gustavo
Rocha, Cynthia de M.
Fernandes, Michelle B.
da Silva, José C. F.
de Azevedo‐Junior, Gilson M.
Brommonschenkel, Sérgio H.
The Hemileia vastatrix effector HvEC‐016 suppresses bacterial blight symptoms in coffee genotypes with the S(H)1 rust resistance gene
title The Hemileia vastatrix effector HvEC‐016 suppresses bacterial blight symptoms in coffee genotypes with the S(H)1 rust resistance gene
title_full The Hemileia vastatrix effector HvEC‐016 suppresses bacterial blight symptoms in coffee genotypes with the S(H)1 rust resistance gene
title_fullStr The Hemileia vastatrix effector HvEC‐016 suppresses bacterial blight symptoms in coffee genotypes with the S(H)1 rust resistance gene
title_full_unstemmed The Hemileia vastatrix effector HvEC‐016 suppresses bacterial blight symptoms in coffee genotypes with the S(H)1 rust resistance gene
title_short The Hemileia vastatrix effector HvEC‐016 suppresses bacterial blight symptoms in coffee genotypes with the S(H)1 rust resistance gene
title_sort hemileia vastatrix effector hvec‐016 suppresses bacterial blight symptoms in coffee genotypes with the s(h)1 rust resistance gene
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6079635/
https://www.ncbi.nlm.nih.gov/pubmed/27918080
http://dx.doi.org/10.1111/nph.14334
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