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Enhanced Synthesis of Antioxidant Enzymes, Defense Proteins and Leghemoglobin in Rhizobium-Free Cowpea Roots after Challenging with Meloydogine incognita

The root knot nematodes (RKN), Meloydogine spp., particularly Meloidogyne incognita and Meloidogyne javanica species, parasitize several plant species and are responsible for large annual yield losses all over the world. Only a few available chemical nematicides are still authorized for RKN control...

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Autores principales: Oliveira, Jose T. A., Araujo-Filho, Jose H., Grangeiro, Thalles B., Gondim, Darcy M. F., Segalin, Jeferson, Pinto, Paulo M., Carlini, Celia R. R. S., Silva, Fredy D. A., Lobo, Marina D. P., Costa, Jose H., Vasconcelos, Ilka M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5302692/
https://www.ncbi.nlm.nih.gov/pubmed/28250394
http://dx.doi.org/10.3390/proteomes2040527
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author Oliveira, Jose T. A.
Araujo-Filho, Jose H.
Grangeiro, Thalles B.
Gondim, Darcy M. F.
Segalin, Jeferson
Pinto, Paulo M.
Carlini, Celia R. R. S.
Silva, Fredy D. A.
Lobo, Marina D. P.
Costa, Jose H.
Vasconcelos, Ilka M.
author_facet Oliveira, Jose T. A.
Araujo-Filho, Jose H.
Grangeiro, Thalles B.
Gondim, Darcy M. F.
Segalin, Jeferson
Pinto, Paulo M.
Carlini, Celia R. R. S.
Silva, Fredy D. A.
Lobo, Marina D. P.
Costa, Jose H.
Vasconcelos, Ilka M.
author_sort Oliveira, Jose T. A.
collection PubMed
description The root knot nematodes (RKN), Meloydogine spp., particularly Meloidogyne incognita and Meloidogyne javanica species, parasitize several plant species and are responsible for large annual yield losses all over the world. Only a few available chemical nematicides are still authorized for RKN control owing to environmental and health reasons. Thus, plant resistance is currently considered the method of choice for controlling RKN, and research performed on the molecular interactions between plants and nematodes to identify genes of interest is of paramount importance. The present work aimed to identify the differential accumulation of root proteins of a resistant cowpea genotype (CE-31) inoculated with M. incognita (Race 3) in comparison with mock-inoculated control, using 2D electrophoresis assay, mass spectrometry identification and gene expression analyses by RT-PCR. The results showed that at least 22 proteins were differentially represented in response to RKN challenge of cowpea roots mainly within 4–6 days after inoculation. Amongst the up-represented proteins were SOD, APX, PR-1, β-1,3-glucanase, chitinases, cysteine protease, secondary metabolism enzymes, key enzymes involved in ethylene biosynthesis, proteins involved in MAPK pathway signaling and, surprisingly, leghemoglobin in non-rhizobium-bacterized cowpea. These findings show that an important rearrangement in the resistant cowpea root proteome occurred following challenge with M. incognita.
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spelling pubmed-53026922017-02-27 Enhanced Synthesis of Antioxidant Enzymes, Defense Proteins and Leghemoglobin in Rhizobium-Free Cowpea Roots after Challenging with Meloydogine incognita Oliveira, Jose T. A. Araujo-Filho, Jose H. Grangeiro, Thalles B. Gondim, Darcy M. F. Segalin, Jeferson Pinto, Paulo M. Carlini, Celia R. R. S. Silva, Fredy D. A. Lobo, Marina D. P. Costa, Jose H. Vasconcelos, Ilka M. Proteomes Article The root knot nematodes (RKN), Meloydogine spp., particularly Meloidogyne incognita and Meloidogyne javanica species, parasitize several plant species and are responsible for large annual yield losses all over the world. Only a few available chemical nematicides are still authorized for RKN control owing to environmental and health reasons. Thus, plant resistance is currently considered the method of choice for controlling RKN, and research performed on the molecular interactions between plants and nematodes to identify genes of interest is of paramount importance. The present work aimed to identify the differential accumulation of root proteins of a resistant cowpea genotype (CE-31) inoculated with M. incognita (Race 3) in comparison with mock-inoculated control, using 2D electrophoresis assay, mass spectrometry identification and gene expression analyses by RT-PCR. The results showed that at least 22 proteins were differentially represented in response to RKN challenge of cowpea roots mainly within 4–6 days after inoculation. Amongst the up-represented proteins were SOD, APX, PR-1, β-1,3-glucanase, chitinases, cysteine protease, secondary metabolism enzymes, key enzymes involved in ethylene biosynthesis, proteins involved in MAPK pathway signaling and, surprisingly, leghemoglobin in non-rhizobium-bacterized cowpea. These findings show that an important rearrangement in the resistant cowpea root proteome occurred following challenge with M. incognita. MDPI 2014-11-26 /pmc/articles/PMC5302692/ /pubmed/28250394 http://dx.doi.org/10.3390/proteomes2040527 Text en © 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Oliveira, Jose T. A.
Araujo-Filho, Jose H.
Grangeiro, Thalles B.
Gondim, Darcy M. F.
Segalin, Jeferson
Pinto, Paulo M.
Carlini, Celia R. R. S.
Silva, Fredy D. A.
Lobo, Marina D. P.
Costa, Jose H.
Vasconcelos, Ilka M.
Enhanced Synthesis of Antioxidant Enzymes, Defense Proteins and Leghemoglobin in Rhizobium-Free Cowpea Roots after Challenging with Meloydogine incognita
title Enhanced Synthesis of Antioxidant Enzymes, Defense Proteins and Leghemoglobin in Rhizobium-Free Cowpea Roots after Challenging with Meloydogine incognita
title_full Enhanced Synthesis of Antioxidant Enzymes, Defense Proteins and Leghemoglobin in Rhizobium-Free Cowpea Roots after Challenging with Meloydogine incognita
title_fullStr Enhanced Synthesis of Antioxidant Enzymes, Defense Proteins and Leghemoglobin in Rhizobium-Free Cowpea Roots after Challenging with Meloydogine incognita
title_full_unstemmed Enhanced Synthesis of Antioxidant Enzymes, Defense Proteins and Leghemoglobin in Rhizobium-Free Cowpea Roots after Challenging with Meloydogine incognita
title_short Enhanced Synthesis of Antioxidant Enzymes, Defense Proteins and Leghemoglobin in Rhizobium-Free Cowpea Roots after Challenging with Meloydogine incognita
title_sort enhanced synthesis of antioxidant enzymes, defense proteins and leghemoglobin in rhizobium-free cowpea roots after challenging with meloydogine incognita
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5302692/
https://www.ncbi.nlm.nih.gov/pubmed/28250394
http://dx.doi.org/10.3390/proteomes2040527
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