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Registros recuperados : 42 | |
13. | | BARRIOS, S. C. L.; TEIXEIRA, J. E.; AZEVEDO, S. M. de; CAMPOS, M. de A.; PAIVA, L. V. Obtenção de anticorpos policlonais contra proteínas presentes em plantas afetadas pela anomalia declínio dos citros. Ciência e Agrotecnologia, Lavras, v. 30, n. 5, p.1013-1016, set./out. 2006. Biblioteca(s): Embrapa Mandioca e Fruticultura. |
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15. | | OLIVEIRA, S. M. de; BARBOSA, V. M.; CAMPOS, M. de; SOUZA, T. P. O. de; ASPIAZÚ, I.; CARVALHO, A. de. Produtividade de grãos de linhagens-elite de feijão branco no norte de Minas Gerais:ciclo de avaliação 2018-2019. In: CONGRESSO NACIONAL DE PESQUISA DE FEIJÃO, 13., 2021, Goiânia. Conectividade tecnológica, intensificação sustentável: resumos. Brasília, DF: Embrapa; Santo Antônio de Goiás: Embrapa Arroz e Feijão, 2021. p. 91. Evento online. Biblioteca(s): Embrapa Arroz e Feijão. |
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17. | | SORATTO, R. P.; CRUSCIOL, C. A. C.; CAMPOS, M. DE; GILABEL, A. P.; COSTA, C. H. M. DA; CASTRO, G. S. A.; FERRARI NETO, J. Efficiency and residual effect of alternative potassium sources in grain crops. Pesquisa Agropecuária Brasileira, Brasília, v. 56, e02686, 2021. Biblioteca(s): Embrapa Territorial. |
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18. | | OLIVEIRA, E. J. de; OLIVEIRA, S. A. S. de; MORALES, C. F. G.; SILVA, M. R.; CAMPOS, M. DE S.; OLIVEIRA FILHO, M. DOS S. BRS Progresso and BRS Rendeira - new cassava cultivars with tolerance to post-harvest deterioration. Crop Breeding and Applied Biotechnology, v. 23, n.1, p. 1-6, e444723110, 2023. Biblioteca(s): Embrapa Mandioca e Fruticultura. |
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19. | | CRUSCIOL, C. A. C.; SORATTO, R. P.; GILABEL, A. P.; COSTA, C. H. M. da; CAMPOS, M. de; CASTRO, G. S. A.; FERRARI NETO, J. Broadcast application of ground silicate rocks as potassium sources for grain crops. Pesquisa Agropecuária Brasileira, v. 57, e02443, 2022. Título em português: Aplicação a lanço de rochas silicáticas moídas como fontes de potássio para culturas de grãos. Biblioteca(s): Embrapa Territorial; Embrapa Unidades Centrais. |
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20. | | LOPES, M. J. C.; CAMPOS, M. de A.; PAIVA, L. V.; SÁ, M. E. L. de; ARANTES, N. E.; ZITO, R. K.; GROSSI-DE-SÁ, M. F. Changes in gene expression in resistant soybean genotype during interaction with Meloidogyne javanica. In: WORLD SOYBEAN RESEARCH CONFERENCE, 8., 2009, Beijing. Developing a global soy blueprint for a safe secure and sustainable supply: abstracts. Beijing: Chinese Academy of Agricultural Sciences: Institute of Crop Science, 2009. p. 142, ref. P363. WSRC 2009. Editado por Lijuan Qiu, Rongxia Guan, Jian Jin, Qijan Song, Shuntang Guo, Wenbin Li, Yuanchao Wang, Tianfu Han, Xiaobing Liu, Deyue Yu, Lianzhou Jiang, Deliang Peng. Biblioteca(s): Embrapa Soja. |
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Registros recuperados : 42 | |
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Registro Completo
Biblioteca(s): |
Embrapa Milho e Sorgo. |
Data corrente: |
12/05/2023 |
Data da última atualização: |
12/05/2023 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
B - 1 |
Autoria: |
CRUSCIOL, C. A. C.; FERREIRA, J. H. S.; MOMESSO, L.; PORTUGAL, J. R.; CAMPOS, M. de; VOLF, M. R.; BORGHI, E.; SORATTO, R. P.; CALONEGO, J. C. |
Afiliação: |
CARLOS ALEXANDRE COSTA CRUSCIOL, Universidade Estadual Paulista; JOÃO HENRIQUE SANTOS FERREIRA, Universidade Estadual Paulista; LETUSA MOMESSO, Universidade Estadual Paulista; JOSÉ ROBERTO PORTUGAL, Universidade Estadual Paulista; MURILO DE CAMPOS, Universidade Estadual Paulista; MARCELO RAPHAEL VOLF, Universidade do Oeste Paulista; EMERSON BORGHI, CNPMS; ROGÉRIO PERES SORATTO, Universidade Estadual Paulista; JULIANO CARLOS CALONEGO, Universidade Estadual Paulista. |
Título: |
Lasting effect of Urochloa brizantha on a common bean-wheat-maize rotation in a medium-term no-till system. |
Ano de publicação: |
2023 |
Fonte/Imprenta: |
Frontiers in Sustainable Food Systems, v. 7, 940996, 2023. |
DOI: |
https://doi.org/10.3389/fsufs.2023.940996 |
Idioma: |
Inglês |
Conteúdo: |
Grass intercropping under no-till is an option to increase crop residues on the soil surface and crop diversity. Urochloa spp. is frequently selected for intercropping to improve land use and agricultural production because of its high residue production, slow residue decomposition, as well as its vigorous, abundant, and deep root system. However, the effects of intercropping Urochloa and maize, especially the effects of Urochloa residues, on subsequent crops in rotation have not been established. To address this knowledge gap, a field experiment was carried out over 5 years (from 2014 to 2018) comprising 2 years of maize monocropping or intercropping and 3 years of crop rotation (common bean-wheat-common bean-wheat-maize). We evaluated the medium-term effects of monocropped maize or maize intercropped with Urochloa brizantha on soil fertility and the development, yields, and grain nutrient accumulation of subsequent common bean, wheat, and maize crops. The cultivation of U. brizantha in the intercropping system improved soil fertility over at least 4 years, with increases in soil pH; soil organic matter (SOM); phosphorus (P); exchangeable potassium (K), calcium (Ca), and magnesium (Mg); sulfur (S?SO42?); cation exchange capacity (CEC); and base saturation (BS) at all soil depths. The benefits of U. brizantha extended to root dry matter and distribution; 70?77% of the total roots were concentrated within a soil depth of 0.0?0.2?m. The intercropping system improved the root dry matter mass, yield components, and grain yields of subsequent common bean, wheat, and maize crops in all cultivation years. These findings indicate that intercropping maize and U. brizantha provides medium-term benefits for subsequent common bean, wheat, and maize crops, and improves nutrient cycling to increase soil P; exchangeable K, Ca, and Mg; S?SO42?; and organic matter content. MenosGrass intercropping under no-till is an option to increase crop residues on the soil surface and crop diversity. Urochloa spp. is frequently selected for intercropping to improve land use and agricultural production because of its high residue production, slow residue decomposition, as well as its vigorous, abundant, and deep root system. However, the effects of intercropping Urochloa and maize, especially the effects of Urochloa residues, on subsequent crops in rotation have not been established. To address this knowledge gap, a field experiment was carried out over 5 years (from 2014 to 2018) comprising 2 years of maize monocropping or intercropping and 3 years of crop rotation (common bean-wheat-common bean-wheat-maize). We evaluated the medium-term effects of monocropped maize or maize intercropped with Urochloa brizantha on soil fertility and the development, yields, and grain nutrient accumulation of subsequent common bean, wheat, and maize crops. The cultivation of U. brizantha in the intercropping system improved soil fertility over at least 4 years, with increases in soil pH; soil organic matter (SOM); phosphorus (P); exchangeable potassium (K), calcium (Ca), and magnesium (Mg); sulfur (S?SO42?); cation exchange capacity (CEC); and base saturation (BS) at all soil depths. The benefits of U. brizantha extended to root dry matter and distribution; 70?77% of the total roots were concentrated within a soil depth of 0.0?0.2?m. The intercropping system improved the root d... Mostrar Tudo |
Palavras-Chave: |
Agricultura tropical. |
Thesagro: |
Capim; Gramínea; Plantio Direto; Sistema Radicular. |
Categoria do assunto: |
F Plantas e Produtos de Origem Vegetal |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/doc/1153721/1/Lasting-effect-of-Urochloa-brizantha.pdf
|
Marc: |
LEADER 02761naa a2200289 a 4500 001 2153721 005 2023-05-12 008 2023 bl uuuu u00u1 u #d 024 7 $ahttps://doi.org/10.3389/fsufs.2023.940996$2DOI 100 1 $aCRUSCIOL, C. A. C. 245 $aLasting effect of Urochloa brizantha on a common bean-wheat-maize rotation in a medium-term no-till system.$h[electronic resource] 260 $c2023 520 $aGrass intercropping under no-till is an option to increase crop residues on the soil surface and crop diversity. Urochloa spp. is frequently selected for intercropping to improve land use and agricultural production because of its high residue production, slow residue decomposition, as well as its vigorous, abundant, and deep root system. However, the effects of intercropping Urochloa and maize, especially the effects of Urochloa residues, on subsequent crops in rotation have not been established. To address this knowledge gap, a field experiment was carried out over 5 years (from 2014 to 2018) comprising 2 years of maize monocropping or intercropping and 3 years of crop rotation (common bean-wheat-common bean-wheat-maize). We evaluated the medium-term effects of monocropped maize or maize intercropped with Urochloa brizantha on soil fertility and the development, yields, and grain nutrient accumulation of subsequent common bean, wheat, and maize crops. The cultivation of U. brizantha in the intercropping system improved soil fertility over at least 4 years, with increases in soil pH; soil organic matter (SOM); phosphorus (P); exchangeable potassium (K), calcium (Ca), and magnesium (Mg); sulfur (S?SO42?); cation exchange capacity (CEC); and base saturation (BS) at all soil depths. The benefits of U. brizantha extended to root dry matter and distribution; 70?77% of the total roots were concentrated within a soil depth of 0.0?0.2?m. The intercropping system improved the root dry matter mass, yield components, and grain yields of subsequent common bean, wheat, and maize crops in all cultivation years. These findings indicate that intercropping maize and U. brizantha provides medium-term benefits for subsequent common bean, wheat, and maize crops, and improves nutrient cycling to increase soil P; exchangeable K, Ca, and Mg; S?SO42?; and organic matter content. 650 $aCapim 650 $aGramínea 650 $aPlantio Direto 650 $aSistema Radicular 653 $aAgricultura tropical 700 1 $aFERREIRA, J. H. S. 700 1 $aMOMESSO, L. 700 1 $aPORTUGAL, J. R. 700 1 $aCAMPOS, M. de 700 1 $aVOLF, M. R. 700 1 $aBORGHI, E. 700 1 $aSORATTO, R. P. 700 1 $aCALONEGO, J. C. 773 $tFrontiers in Sustainable Food Systems$gv. 7, 940996, 2023.
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