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Registro Completo |
Biblioteca(s): |
Embrapa Instrumentação. |
Data corrente: |
25/08/2005 |
Data da última atualização: |
25/08/2005 |
Autoria: |
CAVALCANTE, J. R.; PERES, R.; CONFORTO, E. C.; PESSOA, J. D. C.; MATTOSO, L. H. C. |
Título: |
Monitoração do balanço hídrico e das trocas gasosas em seringueiras adultas, na Estação Experimental de Votuporanga (IAC). |
Ano de publicação: |
2001 |
Fonte/Imprenta: |
In: CONGRESSO BRASILEIRO DE FISIOLOGIA VEGETAL, 8., 2001, Ilhéus. Fisiologia de plantas no novo milênio: desafios e perspectivas. Resumos... Ilhéus: Sociedade Brasileira de Fisiologia Vegetal, 2001. ref. 1-010. CD-ROM. |
Idioma: |
Português |
Conteúdo: |
O Brasil é o centro primário de diversidade genética do gênero Hevea (família Euphorbiacea); dentre as onze espécies classificadas, destaca-se a Hevea brasiliensis [(Willd. Ex. Adr. De Juss) Muell Arg.], que apresenta maior variabilidade genética para resistência à doenças, e é a principal produtora de borracha natural, matéria-prima para diversos ramos da indústria. |
Thesagro: |
Borracha; Seringueira. |
Categoria do assunto: |
-- |
Marc: |
LEADER 01137naa a2200193 a 4500 001 1029023 005 2005-08-25 008 2001 bl --- 0-- u #d 100 1 $aCAVALCANTE, J. R. 245 $aMonitoração do balanço hídrico e das trocas gasosas em seringueiras adultas, na Estação Experimental de Votuporanga (IAC). 260 $c2001 520 $aO Brasil é o centro primário de diversidade genética do gênero Hevea (família Euphorbiacea); dentre as onze espécies classificadas, destaca-se a Hevea brasiliensis [(Willd. Ex. Adr. De Juss) Muell Arg.], que apresenta maior variabilidade genética para resistência à doenças, e é a principal produtora de borracha natural, matéria-prima para diversos ramos da indústria. 650 $aBorracha 650 $aSeringueira 700 1 $aPERES, R. 700 1 $aCONFORTO, E. C. 700 1 $aPESSOA, J. D. C. 700 1 $aMATTOSO, L. H. C. 773 $tIn: CONGRESSO BRASILEIRO DE FISIOLOGIA VEGETAL, 8., 2001, Ilhéus. Fisiologia de plantas no novo milênio: desafios e perspectivas. Resumos... Ilhéus: Sociedade Brasileira de Fisiologia Vegetal, 2001. ref. 1-010. CD-ROM.
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Embrapa Instrumentação (CNPDIA) |
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![](/consulta/web/img/deny.png) | Acesso ao texto completo restrito à biblioteca da Embrapa Mandioca e Fruticultura. Para informações adicionais entre em contato com cnpmf.biblioteca@embrapa.br. |
Registro Completo
Biblioteca(s): |
Embrapa Mandioca e Fruticultura. |
Data corrente: |
01/10/2009 |
Data da última atualização: |
04/02/2010 |
Tipo da produção científica: |
Resumo em Anais de Congresso |
Autoria: |
DITA, M. A.; WAALWIJK, C.; PAIVA, L. V.; SOUZA JUNIOR, M. T.; KEMA, G. H. J. |
Afiliação: |
Miguel Angel Dita Rodríguez, CNPMF; C. Waalwijk, PRI-Plant Research International; Luciano Vilela Paiva, UFLA; Manoel Teixeira Souza Junior, Embrapa LABEX Europe; Gert H. J. Kema, PRI-Plant Research International. |
Título: |
A greenhouse bio-assay for the Fusarium oxysporum f. sp. cubense (Tropical Race 4) X banana (Cavendish subgroup) interaction. |
Ano de publicação: |
2009 |
Fonte/Imprenta: |
In: ISHS/PROMUSA BANANA SYMPOSIUM, 2009, Guangzhou, China. Global perspectives on asian challenges: programme and abstracts. Guangzhou: ISHS: Promusa, 2009. p. 45. |
Idioma: |
Inglês |
Conteúdo: |
Several disease resistance screening protocols for fusarium wilt of banana (causal agent Fusarium oxysporum f. sp. cubense-foc) under greenhouse conditions have been reported. However, a standard and worldwide accepted methodology is still undefined. A standardised greenhouse bioassay for this pathosystem is necessary for the identification of resistant banana genotypes and for detailed plant-pathogen interaction studies. This became especially important with the advent of tropical race 4 ( TR4), which is a significant threat for the global Cavendish-based banana export industry. Thiswork aimed to establish a reliable and rapid greenhouse biossayfor foc with a focus on the TR4- cavendish interaction. Using a doublepot system, hardened 3-months-old tissue-culture plants of 'Grand Naine' (AAA, Cavendish subgroup) were, separately, inoculated with three isolates, belonging to the Vegetative Compatiblility Group (VCG) 01213 and considered as TR4, and one isolate, ranked as race 1 with known pathogenicity on 'Silk' (AAB). Plants were inoculated by root dipping (30 minutes, 105 conidia/mL) and then transferred to pots partially filled with sand supplemented with 20 maize kernels, previously colonised with foc for 10 days. In TR4-inoculated plants, first symptoms appeared at 7 days after inoculation (dai) showing the typical external (yellowing) and internal (rhizome discoloration) symptoms at 14 dai. At 40 dai, TR4-inoculated plants showed severe wilting and internal necrosis even in the pseudostem. No symptoms were observed in plants inoculate with the race 1 isolate. All the TR4 isolates caused similar symptoms, and no differences regarding incubation period or severity were observed. In addition, all TR4 isolates were successfully recovered from the symptomatic rhizomes on Komada's medium. These results suggest that the bio-assay here described is suitable to screen banana germplasm for TR4 resistance, to discriminate Foc races and to help studies to elucidate the defence mechanism underlyng the Foc-banana interaction. MenosSeveral disease resistance screening protocols for fusarium wilt of banana (causal agent Fusarium oxysporum f. sp. cubense-foc) under greenhouse conditions have been reported. However, a standard and worldwide accepted methodology is still undefined. A standardised greenhouse bioassay for this pathosystem is necessary for the identification of resistant banana genotypes and for detailed plant-pathogen interaction studies. This became especially important with the advent of tropical race 4 ( TR4), which is a significant threat for the global Cavendish-based banana export industry. Thiswork aimed to establish a reliable and rapid greenhouse biossayfor foc with a focus on the TR4- cavendish interaction. Using a doublepot system, hardened 3-months-old tissue-culture plants of 'Grand Naine' (AAA, Cavendish subgroup) were, separately, inoculated with three isolates, belonging to the Vegetative Compatiblility Group (VCG) 01213 and considered as TR4, and one isolate, ranked as race 1 with known pathogenicity on 'Silk' (AAB). Plants were inoculated by root dipping (30 minutes, 105 conidia/mL) and then transferred to pots partially filled with sand supplemented with 20 maize kernels, previously colonised with foc for 10 days. In TR4-inoculated plants, first symptoms appeared at 7 days after inoculation (dai) showing the typical external (yellowing) and internal (rhizome discoloration) symptoms at 14 dai. At 40 dai, TR4-inoculated plants showed severe wilting and internal necrosis eve... Mostrar Tudo |
Thesagro: |
Banana; Doença de Planta; Fusariose. |
Categoria do assunto: |
G Melhoramento Genético |
Marc: |
LEADER 02770naa a2200205 a 4500 001 1655762 005 2010-02-04 008 2009 bl uuuu u00u1 u #d 100 1 $aDITA, M. A. 245 $aA greenhouse bio-assay for the Fusarium oxysporum f. sp. cubense (Tropical Race 4) X banana (Cavendish subgroup) interaction. 260 $c2009 520 $aSeveral disease resistance screening protocols for fusarium wilt of banana (causal agent Fusarium oxysporum f. sp. cubense-foc) under greenhouse conditions have been reported. However, a standard and worldwide accepted methodology is still undefined. A standardised greenhouse bioassay for this pathosystem is necessary for the identification of resistant banana genotypes and for detailed plant-pathogen interaction studies. This became especially important with the advent of tropical race 4 ( TR4), which is a significant threat for the global Cavendish-based banana export industry. Thiswork aimed to establish a reliable and rapid greenhouse biossayfor foc with a focus on the TR4- cavendish interaction. Using a doublepot system, hardened 3-months-old tissue-culture plants of 'Grand Naine' (AAA, Cavendish subgroup) were, separately, inoculated with three isolates, belonging to the Vegetative Compatiblility Group (VCG) 01213 and considered as TR4, and one isolate, ranked as race 1 with known pathogenicity on 'Silk' (AAB). Plants were inoculated by root dipping (30 minutes, 105 conidia/mL) and then transferred to pots partially filled with sand supplemented with 20 maize kernels, previously colonised with foc for 10 days. In TR4-inoculated plants, first symptoms appeared at 7 days after inoculation (dai) showing the typical external (yellowing) and internal (rhizome discoloration) symptoms at 14 dai. At 40 dai, TR4-inoculated plants showed severe wilting and internal necrosis even in the pseudostem. No symptoms were observed in plants inoculate with the race 1 isolate. All the TR4 isolates caused similar symptoms, and no differences regarding incubation period or severity were observed. In addition, all TR4 isolates were successfully recovered from the symptomatic rhizomes on Komada's medium. These results suggest that the bio-assay here described is suitable to screen banana germplasm for TR4 resistance, to discriminate Foc races and to help studies to elucidate the defence mechanism underlyng the Foc-banana interaction. 650 $aBanana 650 $aDoença de Planta 650 $aFusariose 700 1 $aWAALWIJK, C. 700 1 $aPAIVA, L. V. 700 1 $aSOUZA JUNIOR, M. T. 700 1 $aKEMA, G. H. J. 773 $tIn: ISHS/PROMUSA BANANA SYMPOSIUM, 2009, Guangzhou, China. Global perspectives on asian challenges: programme and abstracts. Guangzhou: ISHS: Promusa, 2009. p. 45.
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