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cDNA-AFLP analysis of plant and pathogen genes expressed in grapevine infected with Plasmopara viticola

BACKGROUND: The oomycete Plasmopara viticola (Berk. and Curt.) Berl. and de Toni causes downy mildew in grapevine (Vitis vinifera L.). This pathogen is strictly biotrophic, thus completely dependent on living host cells for its survival. The molecular basis of compatibility and disease development i...

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Autores principales: Polesani, Marianna, Desario, Filomena, Ferrarini, Alberto, Zamboni, Anita, Pezzotti, Mario, Kortekamp, Andreas, Polverari, Annalisa
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2292706/
https://www.ncbi.nlm.nih.gov/pubmed/18366764
http://dx.doi.org/10.1186/1471-2164-9-142
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author Polesani, Marianna
Desario, Filomena
Ferrarini, Alberto
Zamboni, Anita
Pezzotti, Mario
Kortekamp, Andreas
Polverari, Annalisa
author_facet Polesani, Marianna
Desario, Filomena
Ferrarini, Alberto
Zamboni, Anita
Pezzotti, Mario
Kortekamp, Andreas
Polverari, Annalisa
author_sort Polesani, Marianna
collection PubMed
description BACKGROUND: The oomycete Plasmopara viticola (Berk. and Curt.) Berl. and de Toni causes downy mildew in grapevine (Vitis vinifera L.). This pathogen is strictly biotrophic, thus completely dependent on living host cells for its survival. The molecular basis of compatibility and disease development in this system is poorly understood. We have carried out a large-scale cDNA-AFLP analysis to identify grapevine and P. viticola genes associated with the infection process. RESULTS: We carried out cDNA-AFLP analysis on artificially infected leaves of the susceptible cultivar Riesling at the oil spot stage, on water-treated leaves and on a sample of pure sporangia as controls. Selective amplifications with 128 primer combinations allowed the visualization of about 7000 transcript-derived fragments (TDFs) in infected leaves, 1196 of which (17%) were differentially expressed. We sequenced 984 fragments, 804 of which were identified as grapevine transcripts after homology searching, while 96 were homologous to sequences in Phytophthora spp. databases and were attributed to P. viticola. There were 82 orphan TDFs. Many grapevine genes spanning almost all functional categories were downregulated during infection, especially genes involved in photosynthesis. Grapevine genes homologous to known resistance genes also tended to be repressed, as were several resistance gene analogs and carbonic anhydrase (recently implicated in pathogen resistance). In contrast, genes encoding cytoskeletal components, enzymes of the phenylpropanoid and beta-oxidation pathways, and pathogenesis related proteins were primarily upregulated during infection. The majority of P. viticola transcripts expressed in planta showed homology to genes of unknown function or to genomic Phytophthora sequences, but genes related to metabolism, energy production, transport and signal transduction were also identified. CONCLUSION: This study provides the first global catalogue of grapevine and P. viticola genes expressed during infection, together with their functional annotations. This will help to elucidate the molecular basis of the infection process and identify genes and chemicals that could help to inhibit the pathogen.
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spelling pubmed-22927062008-04-12 cDNA-AFLP analysis of plant and pathogen genes expressed in grapevine infected with Plasmopara viticola Polesani, Marianna Desario, Filomena Ferrarini, Alberto Zamboni, Anita Pezzotti, Mario Kortekamp, Andreas Polverari, Annalisa BMC Genomics Research Article BACKGROUND: The oomycete Plasmopara viticola (Berk. and Curt.) Berl. and de Toni causes downy mildew in grapevine (Vitis vinifera L.). This pathogen is strictly biotrophic, thus completely dependent on living host cells for its survival. The molecular basis of compatibility and disease development in this system is poorly understood. We have carried out a large-scale cDNA-AFLP analysis to identify grapevine and P. viticola genes associated with the infection process. RESULTS: We carried out cDNA-AFLP analysis on artificially infected leaves of the susceptible cultivar Riesling at the oil spot stage, on water-treated leaves and on a sample of pure sporangia as controls. Selective amplifications with 128 primer combinations allowed the visualization of about 7000 transcript-derived fragments (TDFs) in infected leaves, 1196 of which (17%) were differentially expressed. We sequenced 984 fragments, 804 of which were identified as grapevine transcripts after homology searching, while 96 were homologous to sequences in Phytophthora spp. databases and were attributed to P. viticola. There were 82 orphan TDFs. Many grapevine genes spanning almost all functional categories were downregulated during infection, especially genes involved in photosynthesis. Grapevine genes homologous to known resistance genes also tended to be repressed, as were several resistance gene analogs and carbonic anhydrase (recently implicated in pathogen resistance). In contrast, genes encoding cytoskeletal components, enzymes of the phenylpropanoid and beta-oxidation pathways, and pathogenesis related proteins were primarily upregulated during infection. The majority of P. viticola transcripts expressed in planta showed homology to genes of unknown function or to genomic Phytophthora sequences, but genes related to metabolism, energy production, transport and signal transduction were also identified. CONCLUSION: This study provides the first global catalogue of grapevine and P. viticola genes expressed during infection, together with their functional annotations. This will help to elucidate the molecular basis of the infection process and identify genes and chemicals that could help to inhibit the pathogen. BioMed Central 2008-03-26 /pmc/articles/PMC2292706/ /pubmed/18366764 http://dx.doi.org/10.1186/1471-2164-9-142 Text en Copyright © 2008 Polesani et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Polesani, Marianna
Desario, Filomena
Ferrarini, Alberto
Zamboni, Anita
Pezzotti, Mario
Kortekamp, Andreas
Polverari, Annalisa
cDNA-AFLP analysis of plant and pathogen genes expressed in grapevine infected with Plasmopara viticola
title cDNA-AFLP analysis of plant and pathogen genes expressed in grapevine infected with Plasmopara viticola
title_full cDNA-AFLP analysis of plant and pathogen genes expressed in grapevine infected with Plasmopara viticola
title_fullStr cDNA-AFLP analysis of plant and pathogen genes expressed in grapevine infected with Plasmopara viticola
title_full_unstemmed cDNA-AFLP analysis of plant and pathogen genes expressed in grapevine infected with Plasmopara viticola
title_short cDNA-AFLP analysis of plant and pathogen genes expressed in grapevine infected with Plasmopara viticola
title_sort cdna-aflp analysis of plant and pathogen genes expressed in grapevine infected with plasmopara viticola
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2292706/
https://www.ncbi.nlm.nih.gov/pubmed/18366764
http://dx.doi.org/10.1186/1471-2164-9-142
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