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Registros recuperados : 23 | |
1. | | MACHADO, T. M. M.; IGARASHI, M. L.; CONTEL, E. P.; FERRO, J. A. Diversite genetique entre populations caprines bresiliennes. In: INTERNATIONAL CONFERENCE ON GOATS, 7., 2000, Tours, Poitiers, France. Proceedings... Paris: INRA: IGA: Institut de Elevage, 2000. v. 2, p. 959-962. Biblioteca(s): Embrapa Caprinos e Ovinos. |
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2. | | DOURADO, J. B.; EZEQUIEL, J. M. B.; MACARI, M.; FERRO, J. A.; KRONKA, S. N. Efeito da somatropina bovina (bST) e tipops de volumosos na utilizacao das racoes em ovinos. II. proteina, energia e ganho em peso. In: REUNIAO ANUAL DA SOCIEDADE BRASILEIRA DE ZOOTECNIA, 32., 1995, Brasilia. Anais... Brasilia: SBZ, 1995. p.274-276 Biblioteca(s): Embrapa Pecuária Sudeste. |
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4. | | IGARASHI, M. L. S. P.; MACHADO, T. M.; CASTRO, S. R.; FERRO, J. A.; CONTEL, E. P. B. Genetic caracterization of goat herds of the Brazil. In: GLOBAL CONFERENCE ON CONSERVATION OF DOMESTIC ANIMAL GENETIC RESOURCES, 5., 2000, Brasilia. Proceedings... Brasilia: Embrapa Genetic Resources and Biotechnology, 2000. 1 CD ROM. (Embrapa Genetic Resources and Biotechnology. Document, 49). Biblioteca(s): Embrapa Caprinos e Ovinos. |
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5. | | GIACHETTO, P. F.; GUERREIRO, E. N.; FERRO, J. A.; FERRO, M. I. T.; FURLAN, R. L.; MACARI, M. Performance and hormonal profile in broiler chickens fed with different energy levels during post restriction period. Pesquisa Agropecuária Brasileira, Brasília, DF, v. 38, n. 6, p. 697-702, jun. 2003 Título em português: Desempenho e perfil hormonal de frangos alimentados com diferentes níveis energéticos após restrição alimentar. Biblioteca(s): Embrapa Unidades Centrais. |
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7. | | RODRIGUES, F. A.; GRAÇA, J. P. da; LAIA, M. L. de; NHANI JUNIOR, A.; GALBIATI, J. A.; FERRO, M. I. T.; FERRO, J. A.; ZINGARETTI, S. M. Sugarcane genes differentially expressed during water deficit. Biologia Plantarum, Praha, v. 55, n. 1, p. 43-53, 2011. Biblioteca(s): Embrapa Trigo. |
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8. | | OLIVEIRA, J. D. de; IGARASHI, M. L. S. de; MACHADO, T. M. M.; MIRETTI, M. M.; FERRO, J. A.; CONTEL, E. P. B. Structure and genetic relationships between Brazilian naturalized and exotic purebred goat domestic goat (Capra hircus) breeds based on microsatellites. Genetics and Molecular Biology, São Paulo, v. 30, n. 2, p. 356-363, Mar. 2007. Biblioteca(s): Embrapa Caprinos e Ovinos. |
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9. | | ALVES, M. N.; LAUDECIR L.; GIRARDI, E. A.; MIRANDA, M.; WULFF, N. A.; CARVALHO, E. V.; LOPES, SÍLVIO A.; FERRO, J. A.; OLLITRAUL, P.; PEÑA, L. Insight into resistance to 'Candidatus Liberibacter asiaticus,' associated with Huanglongbing, in Oceanian citrus genotypes. Frontiers in Plant Science, September 2022. Biblioteca(s): Embrapa Mandioca e Fruticultura. |
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10. | | ABREU, V. A. C. de; ALVES, R. M.; SILVA, S. R.; FERRO, J. A.; DOMINGUES, D. S.; MIRANDA, V. F. O.; VARANI, A. M. Comparative analyses of Theobroma cacao and T. grandiflorum mitogenomes reveal conserved gene content embedded within complex and plastic structures. Gene, v. 849, 146904, 2023. Biblioteca(s): Embrapa Amazônia Oriental. |
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11. | | EZEQUIEL, J. M. B.; SANCANARI, J. B. D.; SAMPAIO, A. A. M.; KRONKA, S. N.; FERRO, J. A.; FERRO, M. I. T.; MACARI, M.; SILVA, F. P. da. Digestibilidade e ganhos em peso de ovinos alimentados com diferentes fontes de volumosos e recebendo somatotropina recombinante bovina (rBST). Revista Brasileira de Zootecnia, Viçosa, MG, v. 28, n. 5, p. 1102-1108, 1999. Biblioteca(s): Embrapa Caprinos e Ovinos. |
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12. | | DABBAS, K. M.; LAIA, M. L. de; JOVINO, D. F. R.; GIACHETTO, P. F.; MORAES, F. E. de; FERRO, J. A.; FERRO, M. I. T. Avaliação do perfil de expressão gênica em cana-de-açúcar após inoculação com Xanthomonas albilineans utilizando a técnica de macroarranjos de cDNA. In: CONGRESSO BRASILEIRO DE MICROBIOLOGIA, 25., 2009, Porto de Galinhas. Resumos... São Paulo: Sociedade Brasileira de Microbiologia, 2009. Não paginado. CBM 2009. Biblioteca(s): Embrapa Agricultura Digital. |
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13. | | MIRETTI, M. M.; POLI, M.; MARTINEZ, G.; NAVES, M.; REYNOSO, G.; WORNACK, J.; CARVALHO, J. H. de; FERRO, J. A.; CONTEL, E. P. B. Origin and distribution of Mitochondrial Haplotypes in american native cattle breeds (Bos taurus): phylogenetic network analysis. In: CONGRESSO NACIONAL DE GENETICA, 48., 2002, Águas de Lindóia. resumos... Águas de Lindóia: SBG, 2002. Biblioteca(s): Embrapa Meio-Norte. |
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14. | | DABBAS, K. M.; FERRO, M. I. T.; BARROS, N. M. de; LAIA, M. L. de; ZINGARETTI, S. M.; GIACHETTO, P. F.; MORAES, V. A. de; FERRO, J. A. Genes diferencialmente expressos em cana-de-açúcar inoculada com Xanthomonas albilineans, o agente causal da escaldadura da folha. Summa Phytopathologica, Botucatu, v. 32, n. 4, p. 328-338, Oct./Dec. 2006. Biblioteca(s): Embrapa Agricultura Digital. |
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15. | | JOVINO, D. F. R.; DABBAS, K. M.; LAIA, M. L. de; GIACHETTO, P. F.; MORAES, F. E. de; GUIMARÃES, A. R.; FERRO, M. I. T.; FERRO, J. A. Genes induzidos em plântulas de cana-de-açúcar (Saccharum ssp) exclusivamente após 6 horas de inoculação com Xanthomonas albilineans. In: CONGRESSO BRASILEIRO DE MICROBIOLOGIA, 25., 2009, Porto de Galinhas. Resumos... São Paulo: Sociedade Brasileira de Microbiologia, 2009. Não paginado. CBM 2009. Biblioteca(s): Embrapa Agricultura Digital. |
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16. | | FERRO, M. I. T.; BARROS, N. M. de; DABBAS, K. M.; LAIA, M. L. de; KUPPER, K. C.; MORAES, V. A. de; OLIVEIRA, J. C. F. de; FERRO, J. A.; ZINGARETTI, S. M. Análise do perfil de expressão dos genes da cana-de-açúcar envolvidos na interação com Leifsonia xyli subsp. xyli. Summa Phytopathologica, Botucatu, v. 33, n. 2, p. 157-166, Apr./June 2007. Biblioteca(s): Embrapa Agricultura Digital; Embrapa Tabuleiros Costeiros. |
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17. | | FITZPATRICK, J.; CHEAVEGATTI GIANOTTO, A.; FERRO, J. A.; SA, M. F. G. de; KEESE, P.; LAYTON, R.; LIMA, D.; NICKSON, T.; RAYBOULD, A.; PINTO, E. R. de C.; ROMEIS, J.; ULIAN, E.; BEREZOVSKY, M. Problem formulation in environmental risk assessment of genetically modified crops: a Brazilian Workshop. BioAssay, v. 4, 2009. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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18. | | FERRO, M. I. T.; DABBAS, K. M.; LAIA, M. L. de; JOVINO, D. F. R.; GIACHETTO, P. F.; FERRAZ, A. L. J.; MORAES, F. E. de; GUIMARÃES, A. R.; FERRO, J. A. Avaliação por RT-qPCR de ESTS de cana-de-açúcar; envolvidas nos mecanismos de defesa contra a infecção por Xanthomonas albilineans. In: CONGRESSO BRASILEIRO DE MICROBIOLOGIA, 25., 2009, Porto de Galinhas. Resumos... São Paulo: Sociedade Brasileira de Microbiologia, 2009. Não paginado. CBM 2009. Biblioteca(s): Embrapa Agricultura Digital. |
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19. | | FITZPATRICK, J.; CHEAVEGATTI-GIANOTTO, A.; FERRO, J. A.; SA, M. F. G. de; KEESE. P.; LAYTON, R.; LIMA, D.; NICKSON, T.; RAYBOULD, A.; PINTO, E. R. de C.; ROMEIS, J.; ULIAN, E.; BEREZOVSKY, M. Formulação de problema em análise de risco ambiental de cultivos geneticamente modificados: workshop no Brasil. Bioassay, v. 4, n. 5, 2009. 11 p. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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20. | | CHEAVEGATTI VIANOTTO, A.; ABREU, H. M. C. de; ARRUDA, P.; BESPALHOK FILHO, J. C.; BURNQUIST, W. L.; CRESTE, S.; CIERO, L. di; FERRO, J. A.; FIGUEIRA, A. V. de O.; FIULGUEIRAS, T. de S.; GROSSI de SA, M. de F.; GUZZO, E. C.; HOFFMANN, H. P.; LANDELL, M. G. de A.; MACEDO, N.; MATSUOKA, S.; REINACH, F. de C.; ROMANO, E.; SILVA, W. J. da; SILVA FILHO, M. de C.; ULIAN, E. C. Sugarcane (Saccharum X officinarum): a reference study for the regulation of genetically modified cultivars in Brazil. Tropical Plant Biology, v. 4, p. 62-89, 2011. Biblioteca(s): Embrapa Tabuleiros Costeiros. |
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Registros recuperados : 23 | |
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Registro Completo
Biblioteca(s): |
Embrapa Mandioca e Fruticultura. |
Data corrente: |
20/10/2022 |
Data da última atualização: |
14/11/2022 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
ALVES, M. N.; LAUDECIR L.; GIRARDI, E. A.; MIRANDA, M.; WULFF, N. A.; CARVALHO, E. V.; LOPES, SÍLVIO A.; FERRO, J. A.; OLLITRAUL, P.; PEÑA, L. |
Afiliação: |
MÔNICA N. ALVES, FUNDO DE DEFESA DA CITRICULTURA; LAUDECIR L. RAIOL-JUNIOR, FUNDO DE DEFESA DA CITRICULTURA; EDUARDO AUGUSTO GIRARDI, CNPMF; MAÉVA MIRANDA, INSTITUT AGRO, MONTPELLIER; NELSON A. WULFF, FUNDO DE DEFESA DA CITRICULTURA; EVERTON V. CARVALHO, FUNDO DE DEFESA DA CITRICULTURA; SÍLVIO A. LOPES, FUNDO DE DEFESA DA CITRICULTURA; JESUS A. FERRO, FACULDADE DE CIÊNCIAS AGRÁRIAS E VETERINÁRIAS; PATRICK OLLITRAUL, INSTITUT, MONTPELLIER; LEANDRO PEÑA, FUNDO DE DEFESA DA CITRICULTURA. |
Título: |
Insight into resistance to 'Candidatus Liberibacter asiaticus,' associated with Huanglongbing, in Oceanian citrus genotypes. |
Ano de publicação: |
2022 |
Fonte/Imprenta: |
Frontiers in Plant Science, September 2022. |
Idioma: |
Inglês |
Conteúdo: |
Huanglongbing (HLB), the most destructive citrus disease, is associated with unculturable, phloem-limited Candidatus Liberibacter species, mainly Ca. L. asiaticus (Las). Las is transmitted naturally by the insect Diaphorina citri. In a previous study, we determined that the Oceanian citrus relatives Eremocitrus glauca, Microcitrus warburgiana, Microcitrus papuana, and Microcitrus australis and three hybrids among them and Citrus were full-resistant to Las. After 2 years of evaluations, leaves of those seven genotypes remained Las-free even with their susceptible rootstock being infected. However, Las was detected in their stem bark above the scion-rootstock graft union. Aiming to gain an understanding of the full-resistance phenotype, new experiments were carried out with the challenge-inoculated Oceanian citrus genotypes through which we evaluated: (1) Las acquisition by D. citri fed onto them; (2) Las infection in sweet orange plants grafted with bark or budwood from them; (3) Las infection in sweet orange plants top-grafted onto them; (4) Las infection in new shoots from rooted plants of them; and (5) Las infection in new shoots of them after drastic back-pruning. Overall, results showed that insects that fed on plants from the Oceanian citrus genotypes, their canopies, new flushes, and leaves from rooted cuttings evaluated remained quantitative real-time polymerase chain reaction (qPCR)-negative. Moreover, their budwood pieces were unable to infect sweet orange through grafting. Furthermore, sweet orange control leaves resulted infected when insects fed onto them and graft-receptor susceptible plants. Genomic and morphological analysis of the Oceanian genotypes corroborated that E. glauca and M. warburgiana are pure species while our M. australis accession is an M. australis × M. inodora hybrid and M. papuana is probably a M. papuana × M. warburgiana hybrid. E. glauca × C. sinensis hybrid was found coming from a cross between E. glauca and mandarin or tangor. Eremocitrus × Microcitrus hybrid is a complex admixture of M. australasica, M. australis, and E. glauca while the last hybrid is an M. australasica × M. australis admixture. Confirmation of consistent full resistance in these genotypes with proper validation of their genomic parentages is essential to map properly genomic regions for breeding programs aimed to generate new Citrus-like cultivars yielding immunity to HLB. MenosHuanglongbing (HLB), the most destructive citrus disease, is associated with unculturable, phloem-limited Candidatus Liberibacter species, mainly Ca. L. asiaticus (Las). Las is transmitted naturally by the insect Diaphorina citri. In a previous study, we determined that the Oceanian citrus relatives Eremocitrus glauca, Microcitrus warburgiana, Microcitrus papuana, and Microcitrus australis and three hybrids among them and Citrus were full-resistant to Las. After 2 years of evaluations, leaves of those seven genotypes remained Las-free even with their susceptible rootstock being infected. However, Las was detected in their stem bark above the scion-rootstock graft union. Aiming to gain an understanding of the full-resistance phenotype, new experiments were carried out with the challenge-inoculated Oceanian citrus genotypes through which we evaluated: (1) Las acquisition by D. citri fed onto them; (2) Las infection in sweet orange plants grafted with bark or budwood from them; (3) Las infection in sweet orange plants top-grafted onto them; (4) Las infection in new shoots from rooted plants of them; and (5) Las infection in new shoots of them after drastic back-pruning. Overall, results showed that insects that fed on plants from the Oceanian citrus genotypes, their canopies, new flushes, and leaves from rooted cuttings evaluated remained quantitative real-time polymerase chain reaction (qPCR)-negative. Moreover, their budwood pieces were unable to infect sweet orange through g... Mostrar Tudo |
Palavras-Chave: |
HLB; Huanglongbing. |
Thesagro: |
Doença de Planta; Fruta Cítrica. |
Thesaurus NAL: |
Candidatus Liberibacter; Citrus; Diaphorina citri; Plant diseases and disorders. |
Categoria do assunto: |
-- |
Marc: |
LEADER 03362naa a2200325 a 4500 001 2147499 005 2022-11-14 008 2022 bl uuuu u00u1 u #d 100 1 $aALVES, M. N. 245 $aInsight into resistance to 'Candidatus Liberibacter asiaticus,' associated with Huanglongbing, in Oceanian citrus genotypes.$h[electronic resource] 260 $c2022 520 $aHuanglongbing (HLB), the most destructive citrus disease, is associated with unculturable, phloem-limited Candidatus Liberibacter species, mainly Ca. L. asiaticus (Las). Las is transmitted naturally by the insect Diaphorina citri. In a previous study, we determined that the Oceanian citrus relatives Eremocitrus glauca, Microcitrus warburgiana, Microcitrus papuana, and Microcitrus australis and three hybrids among them and Citrus were full-resistant to Las. After 2 years of evaluations, leaves of those seven genotypes remained Las-free even with their susceptible rootstock being infected. However, Las was detected in their stem bark above the scion-rootstock graft union. Aiming to gain an understanding of the full-resistance phenotype, new experiments were carried out with the challenge-inoculated Oceanian citrus genotypes through which we evaluated: (1) Las acquisition by D. citri fed onto them; (2) Las infection in sweet orange plants grafted with bark or budwood from them; (3) Las infection in sweet orange plants top-grafted onto them; (4) Las infection in new shoots from rooted plants of them; and (5) Las infection in new shoots of them after drastic back-pruning. Overall, results showed that insects that fed on plants from the Oceanian citrus genotypes, their canopies, new flushes, and leaves from rooted cuttings evaluated remained quantitative real-time polymerase chain reaction (qPCR)-negative. Moreover, their budwood pieces were unable to infect sweet orange through grafting. Furthermore, sweet orange control leaves resulted infected when insects fed onto them and graft-receptor susceptible plants. Genomic and morphological analysis of the Oceanian genotypes corroborated that E. glauca and M. warburgiana are pure species while our M. australis accession is an M. australis × M. inodora hybrid and M. papuana is probably a M. papuana × M. warburgiana hybrid. E. glauca × C. sinensis hybrid was found coming from a cross between E. glauca and mandarin or tangor. Eremocitrus × Microcitrus hybrid is a complex admixture of M. australasica, M. australis, and E. glauca while the last hybrid is an M. australasica × M. australis admixture. Confirmation of consistent full resistance in these genotypes with proper validation of their genomic parentages is essential to map properly genomic regions for breeding programs aimed to generate new Citrus-like cultivars yielding immunity to HLB. 650 $aCandidatus Liberibacter 650 $aCitrus 650 $aDiaphorina citri 650 $aPlant diseases and disorders 650 $aDoença de Planta 650 $aFruta Cítrica 653 $aHLB 653 $aHuanglongbing 700 1 $aLAUDECIR L. 700 1 $aGIRARDI, E. A. 700 1 $aMIRANDA, M. 700 1 $aWULFF, N. A. 700 1 $aCARVALHO, E. V. 700 1 $aLOPES, SÍLVIO A. 700 1 $aFERRO, J. A. 700 1 $aOLLITRAUL, P. 700 1 $aPEÑA, L. 773 $tFrontiers in Plant Science, September 2022.
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