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Registro Completo |
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Biblioteca(s): |
Embrapa Mandioca e Fruticultura. |
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Data corrente: |
11/03/2026 |
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Data da última atualização: |
11/03/2026 |
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Tipo da produção científica: |
Artigo em Periódico Indexado |
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Autoria: |
COSTA, T. F.; SANTOS, M. C.; SOUZA JUNIOR, L. C. de; ROCHA, A. de J.; LINO, L. S. M.; FARIA, G. A.; FERREIRA, C. F.; HADDAD, F.; AMORIM, E. P.; SEREJO, J. A. dos S. |
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Afiliação: |
TAÍS FERREIRA COSTA, STATE UNIVERSITY PAULISTA JÚLIO DE MESQUITA FILHO; MANOELA CALDAS SANTOS, STATE UNIVERSITY OF FEIRA DE SANTANA; LUIZ CARLOS DE SOUZA JUNIOR, FEDERAL UNIVERSITY OF RECÔNCAVO DA BAHIA; ANELITA DE JESUS ROCHA; LUCYMEIRE SOUZA MORAIS LINO; GLAUCIA AMORIM FARIA, STATE UNIVERSITY PAULISTA JÚLIO DE MESQUITA FILHO; CLAUDIA FORTES FERREIRA, CNPMF; FERNANDO HADDAD, CNPMF; EDSON PERITO AMORIM, CNPMF; JANAY ALMEIDA DOS SANTOS SEREJO, CNPMF. |
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Título: |
Gamma radiation‑induced mutagenesis in the development of Cavendish subgroup banana cultivars resistant to Fusarium oxysporum f. sp. cubense. |
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Ano de publicação: |
2025 |
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Fonte/Imprenta: |
Euphytica, v. 221, n. 147, 2025. |
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ISSN: |
1573-5060. |
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DOI: |
https://doi.org/10.1007/s10681-025-03595-4 |
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Idioma: |
Inglês |
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Conteúdo: |
Abstract: The banana plant is a crop of great economic importance, widely cultivated in tropical and subtropical regions around the world. One of the main limiting factors in banana production is the fungus Fusarium oxysporum f. sp. cubense (Foc), the causal agent of Fusarium wilt. Cavendish bananas are susceptible to both Tropical Race 4 (TR4) and Subtropical Race 4 (SR4) of the pathogen. Although TR4 has not yet been identified in banana-producing areas of Brazil, the races already present require the development of resistant cultivars. Cavendish bananas have a high level of female sterility, which makes conventional breeding very difficult. One promising strategy for develop new Cavendish cultivars is the induction of mutations through tissue culture techniques. Given this scenario, the present study aimed to induce mutations using gamma radiation from a cobalt-60 source, applied to the shoot apices of the Valery and Grande Naine cultivars (genome AAA). Two radiation doses were tested: 20 Gy and 30 Gy. A total of 1,051 mutant plants were phenotypically evaluated for internal symptoms in greenhouse conditions. Of these, 57 resistant mutants with a score of 0 indicating no symptoms after 150 days of exposure to the pathogen were selected. Histochemical and histological analyses performed on the resistant mutants indicated possible defense mechanisms against Foc, including increased production of phenolic compounds and the presence of cellulose and callose in the roots. In some mutants, no pathogenic structures (such as hyphae and chlamydospores) were observed, suggesting resistance to pathogen penetration. It is concluded that gamma irradiation is effective in inducing mutations in Cavendish cultivars, with the 20 Gy dose being the most effective among those tested. Promising mutants of the Valery and Grande Naine cultivars, designated MV8, MV23, MV39, MG7, and MG8, showed no pathogenic structures and exhibited all three defense mechanisms analyzed in this study. These results suggest the activation of post-formed resistance mechanisms capable of preventing the spread of pathogen infection. Further agronomic and molecular characterization studies will be conducted on the resistant mutants identified, aiming to deepen understanding of their traits and productive potential. MenosAbstract: The banana plant is a crop of great economic importance, widely cultivated in tropical and subtropical regions around the world. One of the main limiting factors in banana production is the fungus Fusarium oxysporum f. sp. cubense (Foc), the causal agent of Fusarium wilt. Cavendish bananas are susceptible to both Tropical Race 4 (TR4) and Subtropical Race 4 (SR4) of the pathogen. Although TR4 has not yet been identified in banana-producing areas of Brazil, the races already present require the development of resistant cultivars. Cavendish bananas have a high level of female sterility, which makes conventional breeding very difficult. One promising strategy for develop new Cavendish cultivars is the induction of mutations through tissue culture techniques. Given this scenario, the present study aimed to induce mutations using gamma radiation from a cobalt-60 source, applied to the shoot apices of the Valery and Grande Naine cultivars (genome AAA). Two radiation doses were tested: 20 Gy and 30 Gy. A total of 1,051 mutant plants were phenotypically evaluated for internal symptoms in greenhouse conditions. Of these, 57 resistant mutants with a score of 0 indicating no symptoms after 150 days of exposure to the pathogen were selected. Histochemical and histological analyses performed on the resistant mutants indicated possible defense mechanisms against Foc, including increased production of phenolic compounds and the presence of cellulose and callose in the roots. In s... Mostrar Tudo |
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Thesagro: |
Banana; Cobalto; Fusarium Oxysporum Cubense; Melhoramento Genético Vegetal; Murcha de Fusarium; Musa sp; Mutante; Radiação. |
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Thesaurus Nal: |
Breeding and Genetic Improvement; Cobalt; Fusarium wilt; Mutants. |
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Categoria do assunto: |
G Melhoramento Genético |
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Marc: |
LEADER 03485naa a2200397 a 4500 001 2185311 005 2026-03-11 008 2025 bl uuuu u00u1 u #d 022 $a1573-5060. 024 7 $ahttps://doi.org/10.1007/s10681-025-03595-4$2DOI 100 1 $aCOSTA, T. F. 245 $aGamma radiation‑induced mutagenesis in the development of Cavendish subgroup banana cultivars resistant to Fusarium oxysporum f. sp. cubense.$h[electronic resource] 260 $c2025 520 $aAbstract: The banana plant is a crop of great economic importance, widely cultivated in tropical and subtropical regions around the world. One of the main limiting factors in banana production is the fungus Fusarium oxysporum f. sp. cubense (Foc), the causal agent of Fusarium wilt. Cavendish bananas are susceptible to both Tropical Race 4 (TR4) and Subtropical Race 4 (SR4) of the pathogen. Although TR4 has not yet been identified in banana-producing areas of Brazil, the races already present require the development of resistant cultivars. Cavendish bananas have a high level of female sterility, which makes conventional breeding very difficult. One promising strategy for develop new Cavendish cultivars is the induction of mutations through tissue culture techniques. Given this scenario, the present study aimed to induce mutations using gamma radiation from a cobalt-60 source, applied to the shoot apices of the Valery and Grande Naine cultivars (genome AAA). Two radiation doses were tested: 20 Gy and 30 Gy. A total of 1,051 mutant plants were phenotypically evaluated for internal symptoms in greenhouse conditions. Of these, 57 resistant mutants with a score of 0 indicating no symptoms after 150 days of exposure to the pathogen were selected. Histochemical and histological analyses performed on the resistant mutants indicated possible defense mechanisms against Foc, including increased production of phenolic compounds and the presence of cellulose and callose in the roots. In some mutants, no pathogenic structures (such as hyphae and chlamydospores) were observed, suggesting resistance to pathogen penetration. It is concluded that gamma irradiation is effective in inducing mutations in Cavendish cultivars, with the 20 Gy dose being the most effective among those tested. Promising mutants of the Valery and Grande Naine cultivars, designated MV8, MV23, MV39, MG7, and MG8, showed no pathogenic structures and exhibited all three defense mechanisms analyzed in this study. These results suggest the activation of post-formed resistance mechanisms capable of preventing the spread of pathogen infection. Further agronomic and molecular characterization studies will be conducted on the resistant mutants identified, aiming to deepen understanding of their traits and productive potential. 650 $aBreeding and Genetic Improvement 650 $aCobalt 650 $aFusarium wilt 650 $aMutants 650 $aBanana 650 $aCobalto 650 $aFusarium Oxysporum Cubense 650 $aMelhoramento Genético Vegetal 650 $aMurcha de Fusarium 650 $aMusa sp 650 $aMutante 650 $aRadiação 700 1 $aSANTOS, M. C. 700 1 $aSOUZA JUNIOR, L. C. de 700 1 $aROCHA, A. de J. 700 1 $aLINO, L. S. M. 700 1 $aFARIA, G. A. 700 1 $aFERREIRA, C. F. 700 1 $aHADDAD, F. 700 1 $aAMORIM, E. P. 700 1 $aSEREJO, J. A. dos S. 773 $tEuphytica$gv. 221, n. 147, 2025.
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