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21. | | EUCLIDES FILHO, K.; EUCLIDES, V. P. B.; FIGUEIREDO, G. R. de; CARVALHO, J. de. Avaliacao de animais Nelore e de seus mesticos com Charoles; Fleckvieh; Chianina, em tres dietas. 2. Caracteristicas da carcaca. Revista Brasileira de Zootecnia, Vicosa, v.26, n.1, p.73-79, jan./fev. 1997. CNPGC. Biblioteca(s): Embrapa Gado de Corte. |
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24. | | CARVALHO, J. de O.; SARTORI, R.; LEMES, A. P.; MOURÃO, G. B.; DODE, M. A. N. Cinética de espermatozoides criopreservados de bovinos após sexagem por citometria de fluxo. Pesquisa Agropecuária Brasileira, Brasília, DF, v. 44, n. 10, p. 1346-1351, out. 2009 Biblioteca(s): Embrapa Agricultura Digital; Embrapa Recursos Genéticos e Biotecnologia; Embrapa Unidades Centrais. |
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25. | | SOUSA, H. U. de; CARVALHO, J. de C.; RAMOS, J. D.; MARTINS, G. C. Crescimento de mudas de acaizeiro (Euterpe oleracea Mart.) em funcao da relacao calcio, potassio e sodio em solucao nutritiva. In: REUNIAO BRASILEIRA DE FERTILIDADE DO SOLO E NUTRICAO DE PLANTAS, 25; REUNIAO BRASILEIRA SOBRE MICORRIZAS, 8.; SIMPOSIO BRASILEIRO DE MICROBIOLOGIA DO SOLO, 6., 2000, Santa Maria, RS. Biodinamica do Solo Fertbio 2000. Santa Maria: SBCS, 2000. CD-ROM. Biblioteca(s): Embrapa Meio-Norte. |
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31. | | GOMES, L. A. A.; MOURA, D. C. M. de; CARVALHO, J. de A. Evapotranspiração da cultura da berinjela irrigada com diferentes concentrações de sais na água. Horticultura Brasileira, Brasília, v. 22, n. 2, jul. 2004. Suplemento 2. Trabalho apresentado no 44º Congresso Brasileiro de Olericultura, 2004. Publicado também como resumo em: Horticultura Brasileira, Brasília, v. 22, n. 2, p. 485, jul. 2004. Suplemento. Biblioteca(s): Embrapa Hortaliças. |
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33. | | MAZZEI, L.; RUSCHEL, A.; SILVA, J.; SCHWARTZ, G.; CARVALHO, J. de; KANASHIRO, M.; LOPES, J. Forest resilience depends on stand variations: forest dynamics of an Amazonian forest 30 years after logging. The International Forestry Review, v. 16, n. 5, p. 136, 2014. Edição dos abstracts do 24º IUFRO World Congress, 2014, Salt Lake City. Sustaining forests, sustaining people: the role of research. Biblioteca(s): Embrapa Amazônia Oriental. |
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35. | | KOETZ, M.; COELHO, G.; CARVALHO, J. de A.; SOUZA, R J. de; SILVA, R. A. da. Produção do meloeiro em ambiente protegido irrigado com diferentes lâminas de água. Irriga, Botucatu, v. 11, n. 4, p. 500, out./dez. 2006. Biblioteca(s): Embrapa Hortaliças. |
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39. | | AVILA, A. de; RUSCHEL, A.; CARVALHO, J. de; SILVA, J.; MAZZEI, L.; CASTRO, T.; BAUHUS, J. Post-logging stand dynamics of a tropical rain forest in the Brazilian Amazon. The International Forestry Review, v. 16, n. 5, p. 138, 2014. Edição dos abstracts do 24º IUFRO World Congress, 2014, Salt Lake City. Sustaining forests, sustaining people: the role of research. Biblioteca(s): Embrapa Amazônia Oriental. |
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40. | | COTRIM, R.; COELHO, E. F.; LIMA, D.; TÚLIO, R.; CARVALHO, J. de. Qualidade de fruto da cv. Terra Maranhão, submetida a diferentes regimes hídricos. In: JORNADA CIENTÍFICA EMBRAPA MANDIOCA E FRUTICULTURA TROPICAL, 7., 2013, Cruz das Almas. Anais... Cruz das Almas: Embrapa Mandioca e Fruticultura, 2013. Publicação online. Biblioteca(s): Embrapa Mandioca e Fruticultura. |
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Registro Completo
Biblioteca(s): |
Embrapa Soja. |
Data corrente: |
27/06/2013 |
Data da última atualização: |
04/04/2022 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
ROLLA, A. A. de P.; CARVALHO, J. de F. C.; FUGANTI-PAGLIARINI, R.; ENGELS, C.; RIO, A. do; MARIN, S. R. R.; OLIVEIRA, M. C. N. de; BENEVENTI, M. A.; MARCELINO-GUIMARÃES, F. C.; FARIAS, J. R. B.; NEUMAIER, N.; NAKASHIMA, K.; YAMAGUCHI-SHINOZAKI, K.; NEPOMUCENO, A. L. |
Afiliação: |
AMANDA ALVES DE PAIVA ROLLA, UEL; JOSIRLEY DE FÁTIMA CORRÊA CARVALHO; RENATA FUGANTI-PAGLIARINI; CIBELLE ENGELS, UEL; ALEXANDRE DO RIO; SILVANA REGINA ROCKENBACH MARIN, CNPSO; MARIA CRISTINA NEVES DE OLIVEIRA, CNPSO; MAGDA A. BENEVENTI, UFRGS; FRANCISMAR CORREA MARCELINO, CNPSO; JOSE RENATO BOUCAS FARIAS, CNPSO; NORMAN NEUMAIER, CNPSO; KAZUO NAKASHIMA, JIRCAS; KAZUKO YAMAGUCHI-SHINOZAKI, The University of Tokyo; ALEXANDRE LIMA NEPOMUCENO, SRI. |
Título: |
Phenotyping soybean plants transformed with rd29A:AtDREB1A for drought tolerance in the greenhouse and field. |
Ano de publicação: |
2014 |
Fonte/Imprenta: |
Transgenic Research, Dordrecht, v. 23, p. 75-87, 2014. |
Páginas: |
13 p. |
DOI: |
10.1007/s11248-013-9723-6 |
Idioma: |
Inglês |
Conteúdo: |
The development of drought tolerant plants is a high priority because the area suffering from drought is expected to increase in the future due to global warming. One strategy for the development of drought tolerance is to genetically engineer plants with transcription factors (TFs) that regulate the expression of several genes related to abiotic stress defense responses. This work assessed the performance of soybean plants overexpressing the TF DREB1A under drought conditions in the field and in the greenhouse. Drought was simulated in the greenhouse by progressively drying the soil of pot cultures of the P58 and P1142 lines. In the field, the performance of the P58 line and of 09D-0077, a cross between the cultivarsBR16andP58,was evaluated under four different water regimes: irrigation, natural drought (no irrigation) and water stress created using rain-out shelters in the vegetative or reproductive stages. Although the dehydration-responsive element-binding protein (DREB) plants did not outperform the cultivar BR16 in terms of yield, some yield components were increased when drought was introduced during the vegetative stage, such as the number of seeds, the number of pods with seeds and the total number of pods. The greenhouse data suggest that the higher survival rates ofDREB plants are because of lowerwater use due to lower transpiration rates under well watered conditions. Further studies are needed to better characterize the soil and atmospheric conditions under which these plants may outperform the non-transformed parental plants. MenosThe development of drought tolerant plants is a high priority because the area suffering from drought is expected to increase in the future due to global warming. One strategy for the development of drought tolerance is to genetically engineer plants with transcription factors (TFs) that regulate the expression of several genes related to abiotic stress defense responses. This work assessed the performance of soybean plants overexpressing the TF DREB1A under drought conditions in the field and in the greenhouse. Drought was simulated in the greenhouse by progressively drying the soil of pot cultures of the P58 and P1142 lines. In the field, the performance of the P58 line and of 09D-0077, a cross between the cultivarsBR16andP58,was evaluated under four different water regimes: irrigation, natural drought (no irrigation) and water stress created using rain-out shelters in the vegetative or reproductive stages. Although the dehydration-responsive element-binding protein (DREB) plants did not outperform the cultivar BR16 in terms of yield, some yield components were increased when drought was introduced during the vegetative stage, such as the number of seeds, the number of pods with seeds and the total number of pods. The greenhouse data suggest that the higher survival rates ofDREB plants are because of lowerwater use due to lower transpiration rates under well watered conditions. Further studies are needed to better characterize the soil and atmospheric conditions under whic... Mostrar Tudo |
Thesagro: |
Soja. |
Thesaurus NAL: |
Soybeans. |
Categoria do assunto: |
X Pesquisa, Tecnologia e Engenharia |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/doc/960816/1/ID-34502-PaivaRolla2014-Article-PhenotypingSoybeanPlantsTransf.pdf
|
Marc: |
LEADER 02540naa a2200325 a 4500 001 1960816 005 2022-04-04 008 2014 bl uuuu u00u1 u #d 024 7 $a10.1007/s11248-013-9723-6$2DOI 100 1 $aROLLA, A. A. de P. 245 $aPhenotyping soybean plants transformed with rd29A$bAtDREB1A for drought tolerance in the greenhouse and field.$h[electronic resource] 260 $c2014 300 $a13 p. 520 $aThe development of drought tolerant plants is a high priority because the area suffering from drought is expected to increase in the future due to global warming. One strategy for the development of drought tolerance is to genetically engineer plants with transcription factors (TFs) that regulate the expression of several genes related to abiotic stress defense responses. This work assessed the performance of soybean plants overexpressing the TF DREB1A under drought conditions in the field and in the greenhouse. Drought was simulated in the greenhouse by progressively drying the soil of pot cultures of the P58 and P1142 lines. In the field, the performance of the P58 line and of 09D-0077, a cross between the cultivarsBR16andP58,was evaluated under four different water regimes: irrigation, natural drought (no irrigation) and water stress created using rain-out shelters in the vegetative or reproductive stages. Although the dehydration-responsive element-binding protein (DREB) plants did not outperform the cultivar BR16 in terms of yield, some yield components were increased when drought was introduced during the vegetative stage, such as the number of seeds, the number of pods with seeds and the total number of pods. The greenhouse data suggest that the higher survival rates ofDREB plants are because of lowerwater use due to lower transpiration rates under well watered conditions. Further studies are needed to better characterize the soil and atmospheric conditions under which these plants may outperform the non-transformed parental plants. 650 $aSoybeans 650 $aSoja 700 1 $aCARVALHO, J. de F. C. 700 1 $aFUGANTI-PAGLIARINI, R. 700 1 $aENGELS, C. 700 1 $aRIO, A. do 700 1 $aMARIN, S. R. R. 700 1 $aOLIVEIRA, M. C. N. de 700 1 $aBENEVENTI, M. A. 700 1 $aMARCELINO-GUIMARÃES, F. C. 700 1 $aFARIAS, J. R. B. 700 1 $aNEUMAIER, N. 700 1 $aNAKASHIMA, K. 700 1 $aYAMAGUCHI-SHINOZAKI, K. 700 1 $aNEPOMUCENO, A. L. 773 $tTransgenic Research, Dordrecht$gv. 23, p. 75-87, 2014.
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