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4. | | MOREIRA, A. G.; PEREIRA, C. O.; MELLO, R. N.; ALMEIDA, A. M.; ZERBINI, F. M. Partial molecular characterization of two begomoviruses infecting soybean and associated weeds in Brazil. Fitopatologia Brasileira, Brasília, DF, v. 30, p. S 189, ago. 2005. Suplemento. ref. 801. Edição dos Resumos do XXXVIII Congresso Brasileiro de Fitopatologia, Brasília, DF, ago. 2005. Nome correto do quarto autor: ALMEIDA, A. M. R. Biblioteca(s): Embrapa Soja. |
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15. | | SAKATE-KRAUSE, R.; MELLO, R. N.; PAVAN, M. A.; ZAMBOLIM, E. M.; CARVALHO, M. G.; GALL LE, O.; ZERBINI, M. Molecular characterization of two Brazilian isolates of Lettuce mosaic virus with distinct biological propertis. Fitopatologia Brasileira, Brasilia, v.26, n.2, p.153-157, jun. 2001. Biblioteca(s): Embrapa Hortaliças. |
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16. | | ABREU, A. G.; DUITAMA, J.; BORBA, T. C. O.; RODRIGUES, L. A.; COSTA, S. P. P.; MELLO, R. N. Development and molecular characterizationof a rice mapping populationfor blast resistance. In: CONGRESSO BRASILEIRO DE ARROZ IRRIGADO, 11., 2019. Balneário Camboriú, SC. Inovação e desenvolvimento na orizicultura: anais eletrônico. Itajaí: Epagri: Sosbai, 2019. Ciência em notícia. Biblioteca(s): Embrapa Arroz e Feijão. |
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17. | | CABRAL, C. S.; COSTA, H.; MELLO, R. N.; CARVALHO, M. R. M.; SANTOS JUNIOR, W. N.; REIS, A. Ocorrência de Fusarium oxysporum f sp. lactucae em alface no Brasil. Tropical Plant Pathology, Brasília, DF, v. 34, p. S174, ago. 2009. Suplemento, ref. 597. Edição dos Resumos do XLII do Congresso Brasileiro de Fitopatologia, Rio de Janeiro, RJ, ago. 2009. Biblioteca(s): Embrapa Arroz e Feijão; Embrapa Hortaliças. |
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18. | | CRISPIM, B. C. F.; RÉSIO, L.; BUENO, L. G.; COELHO, A. S. G.; MELLO, R. N. de. Identificação de genitores para resistência à Magnaporthe oryzae em arroz utilizando-se a análise AMMI. In: SEMINÁRIO JOVENS TALENTOS, 5., 2011, Santo Antônio de Goiás. Resumos apresentados. Santo Antônio de Goiás: Embrapa Arroz e Feijão, 2011. p. 51. (Embrapa Arroz e Feijão. Documentos, 270). Biblioteca(s): Embrapa Arroz e Feijão. |
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19. | | BORBA, T. C. de O.; MELLO, R. N. de; NEVES, P. C.; BASSINELLO, P. Z.; MATSUSHIGE, I. Identificação de polimorfimos do tipo SNP em população segregante para o mapeamento de QTL relacionados a zinco e ferro em arroz. In: REUNIÃO DE BIOFORTIFICAÇÃO NO BRASIL, 5., 2015, São Paulo. [Anais]... Brasília, DF: Embrapa; Rio de Janeiro: Embrapa Agroindústria de Alimentos, 2015. p. 182-184. Editora técnica: Marília Regini Nutti. Biblioteca(s): Embrapa Arroz e Feijão. |
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| Acesso ao texto completo restrito à biblioteca da Embrapa Arroz e Feijão. Para informações adicionais entre em contato com cnpaf.biblioteca@embrapa.br. |
Registro Completo
Biblioteca(s): |
Embrapa Arroz e Feijão; Embrapa Recursos Genéticos e Biotecnologia. |
Data corrente: |
24/04/2021 |
Data da última atualização: |
12/07/2021 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
TÁVORA, F. T. P. K.; BEVITORI, R.; MELLO, R. N. de; CINTRA, M. M. D. F.; OLIVEIRA NETO, O. B.; FONTES, W.; CASTRO, M. S.; SOUSA, M. V.; FRANCO, O. L.; REIS, A. M. dos. |
Afiliação: |
FABIANO T. P. K. TÁVORA, UNIVERSIDADE FEDERAL DE JUIZ DE FORA, MG; ROSANGELA BEVITORI, CNPAF; RAQUEL NEVES DE MELLO, CNPAF; MARIA MONICA DOMINGUES F CINTRA, CNPAF; OSMUNDO B. OLIVEIRA NETO, CENTRO UNIVERSITARIO UNIEURO, Brasília-DF; WAGNER FONTES, UNIVERSIDADE DE BRASÍLIA; MARIANA S. CASTRO, UNIVERSIDADE DE BRASÍLIA; MARCELO V. SOUSA, UNIVERSIDADE DE BRASÍLIA; OCTAVIO L. FRANCO, UNIVERSIDADE CATÓLICA DE BRASÍLIA; ANGELA MEHTA DOS REIS, Cenargen. |
Título: |
Shotgun proteomics coupled to transient-inducible gene silencing reveal rice susceptibility genes as new sources for blast disease resistance. |
Ano de publicação: |
2021 |
Fonte/Imprenta: |
Journal of Proteomics, v. 241, 104223, June 2021. |
ISSN: |
1874-3919 |
DOI: |
https://doi.org/10.1016/j.jprot.2021.104223 |
Idioma: |
Inglês Português |
Notas: |
Na publicação: Angela Mehta. |
Conteúdo: |
A comparative proteomic analysis between two near-isogenic rice lines, displaying a resistant and susceptible phenotype upon infection with Magnaporthe oryzae was performed. We identified and validated factors associ-ated with rice disease susceptibility, representing a flourishing source toward a more resolute rice-blast resis-tance. Proteome profiles were remarkably different during early infection (12 h post-inoculation), revealing several proteins with increased abundance in the compatible interaction. Potential players of rice susceptibility were selected and gene expression was evaluated by RT-qPCR. Gene Ontology analysis disclosed susceptibility gene-encoded proteins claimed to be involved in fungus sustenance and suppression of plant immunity, such as sucrose synthase 4-like, serpin-ZXA-like, nudix hydrolase15, and DjA2 chaperone protein. Two other candidate genes, picked from a previous transcriptome study, were added into our downstream analysis including pyr-abactin resistant-like 5 (OsPYL5), and rice ethylene-responsive factor 104 (OsERF104). Further, we validated their role in susceptibility by Transient-Induced Gene Silencing (TIGS) using short antisense oligodeoxyr-ibonucleotides that resulted in a remarkable reduction of foliar disease symptoms in the compatible interaction. Therefore, we successfully employed shotgun proteomics and antisense-based gene silencing to prospect and functionally validate rice potential susceptibility factors, which could be further explored to build rice-blast resistance. Significance: R gene-mediated disease resistance is race-specific and often not durable in the field. More recently, advancements in new breeding techniques (NBTs) have made plant disease susceptibility genes (S-genes) a new target to build a broad spectrum and more durable resistance, hence an alternative source to R-genes in breeding programs. We successfully coupled shotgun proteomics and gene silencing tools to prospect and validate new rice-bast susceptibility genes that can be further exploited toward a more resolute blast disease resistance. MenosA comparative proteomic analysis between two near-isogenic rice lines, displaying a resistant and susceptible phenotype upon infection with Magnaporthe oryzae was performed. We identified and validated factors associ-ated with rice disease susceptibility, representing a flourishing source toward a more resolute rice-blast resis-tance. Proteome profiles were remarkably different during early infection (12 h post-inoculation), revealing several proteins with increased abundance in the compatible interaction. Potential players of rice susceptibility were selected and gene expression was evaluated by RT-qPCR. Gene Ontology analysis disclosed susceptibility gene-encoded proteins claimed to be involved in fungus sustenance and suppression of plant immunity, such as sucrose synthase 4-like, serpin-ZXA-like, nudix hydrolase15, and DjA2 chaperone protein. Two other candidate genes, picked from a previous transcriptome study, were added into our downstream analysis including pyr-abactin resistant-like 5 (OsPYL5), and rice ethylene-responsive factor 104 (OsERF104). Further, we validated their role in susceptibility by Transient-Induced Gene Silencing (TIGS) using short antisense oligodeoxyr-ibonucleotides that resulted in a remarkable reduction of foliar disease symptoms in the compatible interaction. Therefore, we successfully employed shotgun proteomics and antisense-based gene silencing to prospect and functionally validate rice potential susceptibility factors, which could be furth... Mostrar Tudo |
Palavras-Chave: |
Gene ontology; Plant immunity; PTO-based TIGS; RT-qPCR; S-gene; Transient-Induced gene silencing. |
Thesagro: |
Arroz; Brusone; Doença de Planta; Oryza Sativa. |
Thesaurus NAL: |
blast disease; disease resistance; foliar diseases; Magnaporthe oryzae; plant diseases and disorders; proteomics; rice. |
Categoria do assunto: |
-- S Ciências Biológicas |
Marc: |
LEADER 03484naa a2200469 a 4500 001 2131497 005 2021-07-12 008 2021 bl uuuu u00u1 u #d 022 $a1874-3919 024 7 $ahttps://doi.org/10.1016/j.jprot.2021.104223$2DOI 100 1 $aTÁVORA, F. T. P. K. 245 $aShotgun proteomics coupled to transient-inducible gene silencing reveal rice susceptibility genes as new sources for blast disease resistance.$h[electronic resource] 260 $c2021 500 $aNa publicação: Angela Mehta. 520 $aA comparative proteomic analysis between two near-isogenic rice lines, displaying a resistant and susceptible phenotype upon infection with Magnaporthe oryzae was performed. We identified and validated factors associ-ated with rice disease susceptibility, representing a flourishing source toward a more resolute rice-blast resis-tance. Proteome profiles were remarkably different during early infection (12 h post-inoculation), revealing several proteins with increased abundance in the compatible interaction. Potential players of rice susceptibility were selected and gene expression was evaluated by RT-qPCR. Gene Ontology analysis disclosed susceptibility gene-encoded proteins claimed to be involved in fungus sustenance and suppression of plant immunity, such as sucrose synthase 4-like, serpin-ZXA-like, nudix hydrolase15, and DjA2 chaperone protein. Two other candidate genes, picked from a previous transcriptome study, were added into our downstream analysis including pyr-abactin resistant-like 5 (OsPYL5), and rice ethylene-responsive factor 104 (OsERF104). Further, we validated their role in susceptibility by Transient-Induced Gene Silencing (TIGS) using short antisense oligodeoxyr-ibonucleotides that resulted in a remarkable reduction of foliar disease symptoms in the compatible interaction. Therefore, we successfully employed shotgun proteomics and antisense-based gene silencing to prospect and functionally validate rice potential susceptibility factors, which could be further explored to build rice-blast resistance. Significance: R gene-mediated disease resistance is race-specific and often not durable in the field. More recently, advancements in new breeding techniques (NBTs) have made plant disease susceptibility genes (S-genes) a new target to build a broad spectrum and more durable resistance, hence an alternative source to R-genes in breeding programs. We successfully coupled shotgun proteomics and gene silencing tools to prospect and validate new rice-bast susceptibility genes that can be further exploited toward a more resolute blast disease resistance. 650 $ablast disease 650 $adisease resistance 650 $afoliar diseases 650 $aMagnaporthe oryzae 650 $aplant diseases and disorders 650 $aproteomics 650 $arice 650 $aArroz 650 $aBrusone 650 $aDoença de Planta 650 $aOryza Sativa 653 $aGene ontology 653 $aPlant immunity 653 $aPTO-based TIGS 653 $aRT-qPCR 653 $aS-gene 653 $aTransient-Induced gene silencing 700 1 $aBEVITORI, R. 700 1 $aMELLO, R. N. de 700 1 $aCINTRA, M. M. D. F. 700 1 $aOLIVEIRA NETO, O. B. 700 1 $aFONTES, W. 700 1 $aCASTRO, M. S. 700 1 $aSOUSA, M. V. 700 1 $aFRANCO, O. L. 700 1 $aREIS, A. M. dos 773 $tJournal of Proteomics$gv. 241, 104223, June 2021.
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Embrapa Arroz e Feijão (CNPAF) |
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