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1. | | PERON, F. N.; FERNANDES, P. M. B.; VENTURA, J. A. Detecção do pineapple mealybug wilt-associated virus (PMWaV1, PMWaV2 e PMWaV3) em abacaxizeiros no Estado do Espírito Santo. Tropical Plant Pathology, Brasília, DF, v. 35, p. S185, ago. 2010. Suplemento, ref. 05.091. Edição dos resumos do XLIII Congresso Brasileiro de Fitopatologia, Cuiabá, ago. 2010.Biblioteca(s): Biblioteca Rui Tendinha. |
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3. | | COSTA, H. B.; FERNANDES, P.M.B.; VENTURA, J. A. Extração, purificação parcial e comparação de duas técnicas de precipitação de enzimas proteolíticas do abacaxizeiro. In: CONGRESSO BRASILEIRO DE FRUTICULTURA, 20.; ANNUAL MEETING OF THE INTERAMERICAN SOCIETY FOR TROPICAL HORTICULTURE, 54., 2008, Vitória. Frutas para todos: estratégias, tecnologias e visão sustentável: anais. Vitória: INCAPER: Sociedade Brasileira de Fruticultura, 2008. 5p.Biblioteca(s): Biblioteca Rui Tendinha. |
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4. | | RODRIGUES, S. P.; VENTURA, J. A.; ZINGALI, R. B.; FERNANDES, P. M. B. Avaliação de diferentes métodos de preparação de amostra de proteínas de folha de mamoeiro para análise proteômica por eletroforese bi-dimensional. In: CONGRESSO BRASILEIRO DE FRUTICULTURA, 20.; ANNUAL MEETING OF THE INTERAMERICAN SOCIETY FOR TROPICAL HORTICULTURE, 54., 2008, Vitória. Frutas para todos: estratégias, tecnologias e visão sustentável: anais. Vitória: INCAPER: Sociedade Brasileira de Fruticultura, 2008. 5p.Biblioteca(s): Biblioteca Rui Tendinha. |
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6. | | RODRIGUES, S. P.; CUNHA, M. da.; VENTURA, J. A.; FERNANDES, P. M. B. Análise estrutural e histoquímica de compostos presentes no latex de plantas com meleira e sua relação com o Papaya meleira virus (PMev). In: SIMPÓSIO PAPAYA BRASILEIRO, 2., 2005, Vitória, ES. MARTINS, D dos S. (Ed.). Papaya Brasil : mercado e inovações tecnológicas para o mamão. Vitória: Incaper, 2005. p. 430-433.Biblioteca(s): Biblioteca Rui Tendinha. |
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8. | | QUADROS, O. de F.; VENTURA, J. A.; FERNANDES, A. A. R.; FERNANDES, P. M. B. Atividade fungicida e larvicida de extrato proteico de folhas de mamoeiro infectadas pelo vírus da meleira. In: SIMPÓSIO DO PAPAYA BRASILEIRO, 6., 2015, Vitória, ES. Tecnologia de produção e mercado para o mamão brasileiro : Anais... Vitória, ES : Incaper, 2015.Biblioteca(s): Biblioteca Rui Tendinha. |
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12. | | CARNIELLI, L.; FERNANDES, P. M. B.; FERNANDES, A. A. R.; VENTURA, J. A. Diagnóstico molecular de Fusarium guttiforme com PCR em tempo real. In: CONGRESSO BRASILEIRO DE FITOPATOLOGIA, 48.; CONGRESSO BRASILEIRO DE PATOLOGIA PÓS-COLHEITA, 2., 2015, São Pedro, SP. Fitopatologia de precisão: fronteiras da ciência: anais. São Pedro, SP: Sociedade Brasileira de Fitopatologia, 2015.Biblioteca(s): Biblioteca Rui Tendinha. |
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14. | | DETONI, J. L.; KORRES, A. M. N.; VENTURA, J. A.; FERNANDES, P. M. B. Estudo de enzimas proteolíticas e pectinolíticas relacionadas a microrganismos associados à podridão espumosa do abacaxi. In: CONGRESSO BRASILEIRO DE FRUTICULTURA, 20.; ANNUAL MEETING OF THE INTERAMERICAN SOCIETY FOR TROPICAL HORTICULTURE, 54., 2008, Vitória. Frutas para todos: estratégias, tecnologias e visão sustentável: anais. Vitória: INCAPER: Sociedade Brasileira de Fruticultura, 2008. 5p.Biblioteca(s): Biblioteca Rui Tendinha. |
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16. | | COSTA, H. B. da.; VENTURA, J. A.; FERNANDES, P. M. B. Processo de purificação de bromelina, bromelina purificada e usos da enzima purificada. Titular: Instituto Capixaba de Pesquisa, Assistência Técnica e Extensão Rural; Universidade Federal do Espírito Santo. Patente de Invenção, nº depósito: BR 10 2012 027122-2 A2, classificação, A61 K36/88; A61 K38/48; A61K125/00, depósito em: 23 out. 2012, concessão em: 10 març. 2015.Biblioteca(s): Biblioteca Rui Tendinha. |
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Registros recuperados : 66 | |
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Registro Completo |
Biblioteca(s): |
Biblioteca Rui Tendinha. |
Data corrente: |
17/04/2018 |
Data da última atualização: |
17/04/2018 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
MADRONERO, J.; RODRIGUES, S. P.; ANTUNES, T. F. S.; ABREU, P. M. V.; VENTURA, J. A.; FERNANDES, A. A. R.; FERNANDES, P. M. B. |
Afiliação: |
Johana Madroñero, UFES; Silas P. Rodrigues, UFES; Tathiana F. S. Antunes, UFES; Paolla M. V. Abreu, UFES; Jose Aires Ventura, Incaper; A. Alberto R. Fernandes, UFES; Patricia Machado Bueno Fernandes, UFES. |
Título: |
Transcriptome analysis provides insights into the delayed sticky disease symptoms in Carica papaya |
Ano de publicação: |
2018 |
Fonte/Imprenta: |
Plant Cell Reports, p. 1-14, 2018. |
Idioma: |
Português |
Conteúdo: |
Carica papaya plants develop the papaya sticky disease (PSD) as a result of the combined infection of papaya meleira virus (PMeV) and papaya meleira virus 2 (PMeV2), or PMeV complex. PSD symptoms appear only after C. papaya flowers. To understand the mechanisms involved in this phenomenon, the global gene expression patterns of PMeV complex-infected C. papaya at pre-and post-flowering stages were assessed by RNA-Seq. The result was 633 and 88 differentially expressed genes at pre- and post-flowering stages, respectively. At pre-flowering stage, genes related to stress and transport were up-regulated while metabolism-related genes were down-regulated. It was observed that induction of several salicylic acid (SA)-activated genes, including PR1, PR2, PR5, WRKY transcription factors, ROS and callose genes, suggesting SA signaling involvement in the delayed symptoms. In fact, pre-flowering C. papaya treated with exogenous SA showed a tendency to decrease the PMeV and PMeV2 loads when compared to control plants. However, pre-flowering C. papaya also accumulated transcripts encoding a NPR1-inhibitor (NPR1-I/NIM1-I) candidate, genes coding for UDP-glucosyltransferases (UGTs) and several genes involved with ethylene pathway, known to be negative regulators of SA signaling. At post-flowering, when PSD symptoms appeared, the down-regulation of PR-1 encoding gene and the induction of BSMT1 and JA metabolism-related genes were observed. Hence, SA signaling likely operates at the pre-flowering stage of PMeV complex-infected C. papaya inhibiting the development of PSD symptoms, but the induction of its negative regulators prevents the full-scale and long-lasting tolerance. MenosCarica papaya plants develop the papaya sticky disease (PSD) as a result of the combined infection of papaya meleira virus (PMeV) and papaya meleira virus 2 (PMeV2), or PMeV complex. PSD symptoms appear only after C. papaya flowers. To understand the mechanisms involved in this phenomenon, the global gene expression patterns of PMeV complex-infected C. papaya at pre-and post-flowering stages were assessed by RNA-Seq. The result was 633 and 88 differentially expressed genes at pre- and post-flowering stages, respectively. At pre-flowering stage, genes related to stress and transport were up-regulated while metabolism-related genes were down-regulated. It was observed that induction of several salicylic acid (SA)-activated genes, including PR1, PR2, PR5, WRKY transcription factors, ROS and callose genes, suggesting SA signaling involvement in the delayed symptoms. In fact, pre-flowering C. papaya treated with exogenous SA showed a tendency to decrease the PMeV and PMeV2 loads when compared to control plants. However, pre-flowering C. papaya also accumulated transcripts encoding a NPR1-inhibitor (NPR1-I/NIM1-I) candidate, genes coding for UDP-glucosyltransferases (UGTs) and several genes involved with ethylene pathway, known to be negative regulators of SA signaling. At post-flowering, when PSD symptoms appeared, the down-regulation of PR-1 encoding gene and the induction of BSMT1 and JA metabolism-related genes were observed. Hence, SA signaling likely operates at the pre-flow... Mostrar Tudo |
Thesaurus NAL: |
Carica papaya; Defense responses; Papaya meleira virus; Transcriptome Plant'virus interaction. |
Categoria do assunto: |
-- |
Marc: |
LEADER 02422naa a2200241 a 4500 001 1020018 005 2018-04-17 008 2018 bl uuuu u00u1 u #d 100 1 $aMADRONERO, J. 245 $aTranscriptome analysis provides insights into the delayed sticky disease symptoms in Carica papaya$h[electronic resource] 260 $c2018 520 $aCarica papaya plants develop the papaya sticky disease (PSD) as a result of the combined infection of papaya meleira virus (PMeV) and papaya meleira virus 2 (PMeV2), or PMeV complex. PSD symptoms appear only after C. papaya flowers. To understand the mechanisms involved in this phenomenon, the global gene expression patterns of PMeV complex-infected C. papaya at pre-and post-flowering stages were assessed by RNA-Seq. The result was 633 and 88 differentially expressed genes at pre- and post-flowering stages, respectively. At pre-flowering stage, genes related to stress and transport were up-regulated while metabolism-related genes were down-regulated. It was observed that induction of several salicylic acid (SA)-activated genes, including PR1, PR2, PR5, WRKY transcription factors, ROS and callose genes, suggesting SA signaling involvement in the delayed symptoms. In fact, pre-flowering C. papaya treated with exogenous SA showed a tendency to decrease the PMeV and PMeV2 loads when compared to control plants. However, pre-flowering C. papaya also accumulated transcripts encoding a NPR1-inhibitor (NPR1-I/NIM1-I) candidate, genes coding for UDP-glucosyltransferases (UGTs) and several genes involved with ethylene pathway, known to be negative regulators of SA signaling. At post-flowering, when PSD symptoms appeared, the down-regulation of PR-1 encoding gene and the induction of BSMT1 and JA metabolism-related genes were observed. Hence, SA signaling likely operates at the pre-flowering stage of PMeV complex-infected C. papaya inhibiting the development of PSD symptoms, but the induction of its negative regulators prevents the full-scale and long-lasting tolerance. 650 $aCarica papaya 650 $aDefense responses 650 $aPapaya meleira virus 650 $aTranscriptome Plant'virus interaction 700 1 $aRODRIGUES, S. P. 700 1 $aANTUNES, T. F. S. 700 1 $aABREU, P. M. V. 700 1 $aVENTURA, J. A. 700 1 $aFERNANDES, A. A. R. 700 1 $aFERNANDES, P. M. B. 773 $tPlant Cell Reports, p. 1-14, 2018.
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