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18. | | MACHADO, E. C.; PEREIRA, A. R.; FAHL, J. I.; ARRUDA, H. V.; SILVA, W. J. da; TEIXEIRA, J. P. F. Análise quantitativa de crescimento de quatro variedades de milho em três densidades de plantio, através de funções matemáticas ajustadas. Pesquisa Agropecuária Brasileira, Brasília, V.17, n.6, p. 825-833 jun. 1982 Título em inglês: Quantitative growth analysis of four corn varieties grown in three plant densities, with the use of fitted mathematical functions. Biblioteca(s): Embrapa Unidades Centrais. |
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19. | | 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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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.; SA, M. F. G. de; GUZZO, E. C.; HOFFMANN, H. P.; LANDELL, M. G. de A.; MACEDO, N.; MATSUOKA, S.; REINACH, F. de C.; PINTO, E. R. de C.; 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 Recursos Genéticos e Biotecnologia. |
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Registros recuperados : 20 | |
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Registro Completo
Biblioteca(s): |
Embrapa Arroz e Feijão. |
Data corrente: |
26/11/2015 |
Data da última atualização: |
26/11/2015 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
B - 1 |
Autoria: |
FAGERIA, N. K.; MORAIS, O. P.; CARVALHO, M. C. S.; COLOMBARI FILHO, J. M. |
Afiliação: |
NAND KUMAR FAGERIA, CNPAF; ORLANDO PEIXOTO DE MORAIS, CNPAF; MARIA DA CONCEICAO SANTANA CARVALHO, CNPAF; JOSE MANOEL COLOMBARI FILHO, CNPAF. |
Título: |
Upland rice genotype evaluations for acidity tolerance. |
Ano de publicação: |
2015 |
Fonte/Imprenta: |
Communications in Soil Science and Plant Analysis, New York, v. 46, n. 9, p. 1076-1096, 2015. |
DOI: |
10.1080/00103624.2015.1018525 |
Idioma: |
Inglês |
Conteúdo: |
Upland rice is an important crop in South American cropping systems. In Brazil it is mainly grown in the central area, locally known as the Cerrado region. Soils of the Cerrado region are acidic and have poor fertility. A greenhouse experiment was conducted with the objective to evaluate thirty upland rice genotypes for acidity tolerance. Two acidity levels were created: high (without lime addition) and low (addition of 2.5 g dolomitic lime per kg soil). Plant height, straw yield, grain yield, panicle number, thousand-grain weight, spikelet sterility, grain harvest index (GHI), maximum root length, and root dry weight were significantly influenced by lime and genotype treatments. Lime × genotype interactions were also significant for most of these traits, indicating variation in these treats with the variation in acidity levels. Based on grain yield acidity tolerance index (GYATI), genotypes were classified as tolerant, moderately tolerant, and susceptible to soil acidity. Among thirty genotypes, 30 percent were classified as tolerant, 53 percent were classified as moderately tolerant, and 17 percent were classified as susceptible to soil acidity. Most of the growth, yield, and yield components had significant quadratic positive association with grain yield across two acidity levels. Soil acidity indices such as pH, base saturation, calcium (Ca) saturation, magnesium (Mg) saturation, and potassium (K) saturation increased with the addition of lime. Phosphorus content also increased with the addition of lime. However, hydrogen and aluminum (H + Al) and iron (Fe) content decreased with the addition of lime. Adequate soil acidity indices for grain yield were established. MenosUpland rice is an important crop in South American cropping systems. In Brazil it is mainly grown in the central area, locally known as the Cerrado region. Soils of the Cerrado region are acidic and have poor fertility. A greenhouse experiment was conducted with the objective to evaluate thirty upland rice genotypes for acidity tolerance. Two acidity levels were created: high (without lime addition) and low (addition of 2.5 g dolomitic lime per kg soil). Plant height, straw yield, grain yield, panicle number, thousand-grain weight, spikelet sterility, grain harvest index (GHI), maximum root length, and root dry weight were significantly influenced by lime and genotype treatments. Lime × genotype interactions were also significant for most of these traits, indicating variation in these treats with the variation in acidity levels. Based on grain yield acidity tolerance index (GYATI), genotypes were classified as tolerant, moderately tolerant, and susceptible to soil acidity. Among thirty genotypes, 30 percent were classified as tolerant, 53 percent were classified as moderately tolerant, and 17 percent were classified as susceptible to soil acidity. Most of the growth, yield, and yield components had significant quadratic positive association with grain yield across two acidity levels. Soil acidity indices such as pH, base saturation, calcium (Ca) saturation, magnesium (Mg) saturation, and potassium (K) saturation increased with the addition of lime. Phosphorus content also in... Mostrar Tudo |
Palavras-Chave: |
Root. |
Thesagro: |
Acidez do solo; Arroz; Cerrado; Genótipo; Oryza sativa; Raíz; Rendimento. |
Thesaurus NAL: |
Grain yield; Rice. |
Categoria do assunto: |
F Plantas e Produtos de Origem Vegetal |
Marc: |
LEADER 02499naa a2200289 a 4500 001 2029609 005 2015-11-26 008 2015 bl uuuu u00u1 u #d 024 7 $a10.1080/00103624.2015.1018525$2DOI 100 1 $aFAGERIA, N. K. 245 $aUpland rice genotype evaluations for acidity tolerance.$h[electronic resource] 260 $c2015 520 $aUpland rice is an important crop in South American cropping systems. In Brazil it is mainly grown in the central area, locally known as the Cerrado region. Soils of the Cerrado region are acidic and have poor fertility. A greenhouse experiment was conducted with the objective to evaluate thirty upland rice genotypes for acidity tolerance. Two acidity levels were created: high (without lime addition) and low (addition of 2.5 g dolomitic lime per kg soil). Plant height, straw yield, grain yield, panicle number, thousand-grain weight, spikelet sterility, grain harvest index (GHI), maximum root length, and root dry weight were significantly influenced by lime and genotype treatments. Lime × genotype interactions were also significant for most of these traits, indicating variation in these treats with the variation in acidity levels. Based on grain yield acidity tolerance index (GYATI), genotypes were classified as tolerant, moderately tolerant, and susceptible to soil acidity. Among thirty genotypes, 30 percent were classified as tolerant, 53 percent were classified as moderately tolerant, and 17 percent were classified as susceptible to soil acidity. Most of the growth, yield, and yield components had significant quadratic positive association with grain yield across two acidity levels. Soil acidity indices such as pH, base saturation, calcium (Ca) saturation, magnesium (Mg) saturation, and potassium (K) saturation increased with the addition of lime. Phosphorus content also increased with the addition of lime. However, hydrogen and aluminum (H + Al) and iron (Fe) content decreased with the addition of lime. Adequate soil acidity indices for grain yield were established. 650 $aGrain yield 650 $aRice 650 $aAcidez do solo 650 $aArroz 650 $aCerrado 650 $aGenótipo 650 $aOryza sativa 650 $aRaíz 650 $aRendimento 653 $aRoot 700 1 $aMORAIS, O. P. 700 1 $aCARVALHO, M. C. S. 700 1 $aCOLOMBARI FILHO, J. M. 773 $tCommunications in Soil Science and Plant Analysis, New York$gv. 46, n. 9, p. 1076-1096, 2015.
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