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1.Imagem marcado/desmarcadoSINCLAIR, T. R. Model analysis of plant traits leading to prolonged crop survival during severe drought. Field Crops Research, v.68, n.3, p.211-217, 2000.

Biblioteca(s): Embrapa Pantanal.

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2.Imagem marcado/desmarcadoSINCLAIR, T. R. Simultaneous limitation to soybean yield increase by carbon and nitrogen. In: CONFERENCIA MUNDIAL DE INVESTIGACION EN SOJA, 4., 1989, Buenos Aires. Actas... Buenos Aires: AASOJA, 1989. t.1 p.183-188.

Biblioteca(s): Embrapa Soja.

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3.Imagem marcado/desmarcadoSINCLAIR, T. R. Water and nitrogen limitations in soybean grain production. I. Model development. Field Crops Res., v.15, p.125-141, 1986.

Biblioteca(s): Embrapa Agrobiologia.

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4.Imagem marcado/desmarcadoSINCLAIR, T. R.; HORIE, T. Leaf nitrogen, photosynthesis, and crop radiation use efficiency: a review. Crop Sci., v.29, p.90-98, 1989.

Biblioteca(s): Embrapa Agrobiologia.

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5.Imagem marcado/desmarcadoAMIR, J.; SINCLAIR, T. R. A model of the temperature and solar-radiation effects on spring wheat growth and yield. Field Crops Research, v. 28, p. 47-58, 1991.

Biblioteca(s): Embrapa Trigo.

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6.Imagem marcado/desmarcadoSINCLAIR, T. R.; SHIRAIWA, T. Soybean radiation-use efficiency as influenced by nonuniform specific leaf nitrogen distribution and diffuse radiation. Crop Sci., v.33, n.4, p.808-812, 1993.

Biblioteca(s): Embrapa Agrobiologia.

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7.Imagem marcado/desmarcadoSHIRAIWA, T.; SINCLAIR, T. R. Distribution of nitrogen among leaves in soybean canopies. Crop Sci., v.33, n.4, p.804-808, 1993.

Biblioteca(s): Embrapa Agrobiologia.

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8.Imagem marcado/desmarcadoSPAETH, S. C.; SINCLAIR, T. R. Linear increase in soybean harvest index during seed-filling. Agron. J., v. 77, n. 2, p. 207-211, 1985.

Biblioteca(s): Embrapa Agrobiologia.

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9.Imagem marcado/desmarcadoSINCLAIR, T. R.; WIT, C. T. DE. Analysis of the carbon and nitrogen limitations to soybean yield. Agron. J., v.68, n.2, p.319-324, 1976.

Biblioteca(s): Embrapa Agrobiologia.

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10.Imagem marcado/desmarcadoSINCLAIR, T. R.; NOGUEIRA, M. A. Selection of host-plant genotype: the next step to increase grain legume N2 fixation activity. Journal of Experimental Botany, v. 69, n. 15, p. 3523-3530, 2018.

Biblioteca(s): Embrapa Soja.

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11.Imagem marcado/desmarcadoRANDALL WEISZ, P.; SINCLAIR, T. R. Regulation of soybean nitrogen fixation in response to Rhizosphere oxygen. II. Quantification of nodule gas permeability. Plant Physiol., v. 84, n. 3, p. 906-910, 1987.

Biblioteca(s): Embrapa Agrobiologia.

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12.Imagem marcado/desmarcadoRANDALL WEISZ, P.; SINCLAIR, T. R. Regulation of soybean nitrogen fixation in response to Rhizosphere oxygen. I. Role of nodule respiration. Plant Physiol., v. 84, n. 3, p. 900-905, 1987.

Biblioteca(s): Embrapa Agrobiologia.

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13.Imagem marcado/desmarcadoPURCELL, L. C.; SINCLAIR, T. R. Soybean (Glycine max) nodule physical traits associated with permeability responses to oxygen. Plant Physiology, Bethesda, v. 103, n. 1, p. 149-156, 1993.

Biblioteca(s): Embrapa Soja.

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14.Imagem marcado/desmarcadoWEISZ, P. R.; SINCLAIR, T. R. Soybean nodule gas permeability, nitrogen fixation and diurnal cycles in soil temperature. Plant Soil, v. 109, n. 2, p. 227-234, 1988.

Biblioteca(s): Embrapa Agrobiologia.

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15.Imagem marcado/desmarcadoCORTES, P. M.; SINCLAIR, T. R. Gas exchange of field-grown soybean under drought. Agron. J., v. 78, n. 3, p. 454-458, 1986.

Biblioteca(s): Embrapa Agrobiologia.

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16.Imagem marcado/desmarcadoMUCHOW, R. C.; SINCLAIR, T. R. Epidermial conductance, stomatal density and stomatal size among genotypes of Sorghum bicolor (L.) Moench. Plant, Cell and Environment, v. 12, p. 425-431, 1989.

Biblioteca(s): Embrapa Trigo.

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17.Imagem marcado/desmarcadoDENISON, R. F.; SINCLAIR, T. R. Diurnal and seasonal variation in dinitrogen fixation (acetylene reduction) rates by field grown soybeans. Agronomy Journal, Madison, v. 77, n. 5, p. 679-684, 1985.

Biblioteca(s): Embrapa Agrobiologia.

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18.Imagem marcado/desmarcadoPURCELL, L. C.; SINCLAIR, T. R. Nitrogenase activity and nodule gas permeability response to Rhizospheric NH3 in soybean. Plant Physiol., v. 92, n. 1, p. 268-272, 1989.

Biblioteca(s): Embrapa Agrobiologia.

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19.Imagem marcado/desmarcadoSINCLAIR, T. R.; WEISZ, P. R. Response of soil temperature of dinitrogen fixation (acetylene reduction) rates by field-grown soybeans. Agron. J., v. 77, n. 5, p. 685-688, 1985.

Biblioteca(s): Embrapa Agrobiologia.

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20.Imagem marcado/desmarcadoSINCLAIR, T. R.; ALLEN JUNIOR, L. H. Carbon dioxide ant water vapour exchange of leaves on field-grown citrus trees. Journal of experimental botany, v.33, n. 137, p.1166-1175 l982.

Biblioteca(s): Embrapa Mandioca e Fruticultura.

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Registro Completo

Biblioteca(s):  Embrapa Soja.
Data corrente:  10/11/2004
Data da última atualização:  10/11/2004
Autoria:  PIPOLO, A. E.; SINCLAIR, T. R.; CAMARA, G. M. S.
Título:  Protein and oil concentration of soybean seed cultured in vitro using nutrient solutions of differing glutamine concentration.
Ano de publicação:  2004
Fonte/Imprenta:  Annals of Applied Biology, Cambridge, v. 144, n.2, p. 223-227, 2004.
Idioma:  Inglês
Conteúdo:  Oil and protein are the most valuable components of soybean seed. Evidence indicates that growth and composition of soybean seed are controlled by supplies of carbon and nitrogen provided by the maternal plant to the seed, but it is difficult experimentally to control and quantify the precise amount of carbon and nitrogen provided to the seed by the whole plant. To examine whether oil and protein concentrations are affected by the supply of nitrogen to the seed, immature soybean seeds (Glycine max cv. Williams 82) were grown in vitro in nutrient solutions containing 20, 40, 60 or 80 mM of glutamine. The seeds were incubated in Erlenmeyer flasks for 8 days at 25°C. The rate of dry matter accumulation changed from 7.2 to 8.3 mg seed[sup-1] day[sup-1] as the glutamine concentration increased from 20 to 80 mM but the differences were not significant (P > 0.05). Seed protein concentration increased as glutamine concentration increased from 294 mg g[sup-1] at 20 mM glutamine to as high as 445 mg g[sup-1] at 80 mM glutamine. Typical in vivo protein concentration of mature soybean seeds is about 400 mg g[sup-1]. Oil and protein concentrations were negatively correlated (r[sup2] = 0.44), which indicates that oil and protein synthesis are interrelated. Protein synthesis was favoured over oil synthesis when nitrogen became more abundant. The seeds used in this study clearly demonstrated a capacity to respond to nitrogen availability with changes in seed protein concentration.
Categoria do assunto:  --
URL:  https://vnweb.hwwilsonweb.com/hww/shared/shared_main.jhtml;jsessionid=4TADKJFID3CNRQA3DIMSFGOADUNGIIV0?_requestid=45941
Marc:  Mostrar Marc Completo
Registro original:  Embrapa Soja (CNPSO)
Biblioteca ID Origem Tipo/Formato Classificação Cutter Registro Volume Status
CNPSO24557 - 1UPCSP - --1012010120
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