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Registros recuperados : 6 | |
1. | | MELO, L. C.; PEREIRA, H. S.; FARIA, L. C. de; SOUZA, T. L. P. O. de; WENDLAND, A.; CABRERA DIAZ, J. L.; CARVALHO, H. W. L. de; MELO, C. L. P. de; COSTA, A. F. da; MAGALDI, M. C. de S.; COSTA, J. G. C. da; AGUIAR, M. S. de; ABREU, A. de F. B.; PEREIRA FILHO, I. A.; POSSE, S. C. P.; MARTINS, M.; ALBRECHT, J. C.; SOUZA FILHO, B. F. de; CARNEIRO, G. E. de S.; GUIMARAES, C. M.; BRAZ, A. J. B. P.; MARANGON, M. A.; TRINDADE, N. L. S. R.; SOUZA, N. P. de; FARIA, J. C. de; DEL PELOSO, M. J. BRS FC402: cultivar de feijão-comum carioca com alta produtividade, resistência à antracnose e murcha-de-fusário. Santo Antônio de Goiás: Embrapa Arroz e Feijão, 2017. 4 p. (Embrapa Arroz e Feijão. Comunicado técnico, 237).Biblioteca(s): Biblioteca Rui Tendinha. |
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2. | | PEREIRA, H. S.; MELO, L. C.; SOUZA, T. L. P. O. de; FARIA, L. C. de; CABRERA DIAZ, J. L.; CARVALHO, H. W. L. de; MELO, C. L. P. de; COSTA, A. F. da; WENDLAND, A.; MAGALDI, M. C. de S.; KNUPP, A. M.; POSSE, S. C. P.; COSTA, J. G. C. da; ABREU, A. de F. B.; PEREIRA FILHO, I. A.; MARTINS, M.; ALBRECHT, J. C.; ALMEIDA, V. M. de; GUIMARÃES, C. M.; BRAZ, A. J. B. P.; MARANGON, M. A.; CARVALHO, A. J. de; MELO, P. G. S.; TRINDADE, N. L. S. R.; SOUZA, N. P. de; FARIA, J. C. de BRS FC409: cultivar de feijoeiro-comum com alto valor comercial e nutricional, resistência à murcha de Fusarium e à murcha de Curtobacterium. Santo Antônio de Goiás: Embrapa Arroz e Feijão, 2020. 9 p. (Embrapa Arroz e Feijão. Comunicado técnico, 255).Biblioteca(s): Biblioteca Rui Tendinha. |
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3. | | MELO, L. C.; SOUZA, T. L. P. O. de; AGUIAR, M. S. de; FARIA, L. C. de; COSTA, J. G. C. da; MAGALDI, M. C. de S.; SOUZA, N. P. de; KNUPP, A. M.; GUIMARÃES, C. M.; CARVALHO, H. W. L. de; ALMEIDA, V. M. de; ITO, M. A.; ALBRECHT, J. C.; MARTINS, S. M.; TORGA, P. P.; POSSE, S. C. P.; MELO, P. G. S.; ABREU, A. de F. B.; CARVALHO, A. J. de; MARTINS, M.; PEREIRA FILHO, I. A.; BRAZ, A. J. B. P.; CABRERA DIAZ, J. L.; MARANGON, M. A.; SARMENTO, P. H. L.; OLIVEIRA, L. F. C. de; VIANELLO, R. P.; FARIA, J. C. de; PEREIRA, H. S. BRS FC414: cultivar de feijoeiro-comum com alta produtividade e qualidade comercial indicada para cultivo sob pivô central. Santo Antônio de Goiás: Embrapa Arroz e Feijão, 2022. 9 p. (Embrapa Arroz e Feijão. Comunicado técnico, 266).Biblioteca(s): Biblioteca Rui Tendinha. |
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4. | | SOUZA, T. L. P. O. de; MELO, L. C.; PEREIRA, H. S.; FARIA, L. C. de; AGUIAR, M. S. de; CABRERA DIAZ, J. L.; CARVALHO, H. W. L. de; MELO, C. L. P. de; COSTA, A. F. da; MAGALDI, M. C. de S.; COSTA, J. G. C. da; WENDLAND, A.; ABREU, A. de F. B.; PEREIRA FILHO, I. A.; POSSE, S. C. P.; MARTINS, M.; ALBRECHT, J. C.; SOUZA FILHO, B. F. de; ALMEIDA, V. M. de; GUIMARÃES, C. M.; BRAZ, A. J. B. P.; MARANGON, M. A.; TRINDADE, N. L. S. R.; SOUZA, N. P. de; FARIA, J. C. de; DEL PELOSO, M. J. BRS FP403: cultivar de feijão preto com alta produtividade e qualidade de grãos, moderada resistência à murcha de Fusarium e podridões radiculares. Santo Antônio de Goiás: Embrapa Arroz e Feijão, 2019. 9 p. (Embrapa Arroz e Feijão. Comunicado técnico, 247).Biblioteca(s): Biblioteca Rui Tendinha. |
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5. | | AGUIAR, M. S. de; PEREIRA, H. S.; SOUZA, T. L. P. O. de; FARIA, L. C. de; COSTA, J. G. C. da; MAGALDI, M. C. de S.; SOUZA, N. P. de; KNUPP, A. M.; ALMEIDA, V. M. de; CABRERA DIAZ, J. L.; MELO, C. L. P. de; WENDLAND, A.; POSSE, S. C. P.; ABREU, A. de F. B.; MARTINS, M.; ALBRECHT, J. C.; BRAZ, A. J. B. P.; MARANGON, M. A.; CARVALHO, A. J. de; MELO, P. G. S.; TRINDADE, N. L. S. R.; FARIA, J. C. de; SOUZA FILHO, B. F. de; MELO, L. C. BRS FS311: cultivar de feijoeiro-comum de grãos rajados, com alta produtividade e qualidade comercial. Santo Antônio de Goiás: Embrapa Arroz e Feijão, 2022. 8 p. (Embrapa Arroz e Feijão. Comunicado técnico, 260).Biblioteca(s): Biblioteca Rui Tendinha. |
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6. | | AGUIAR, M. S. de; PEREIRA, H. S.; SOUZA, T. L. P. O. de; FARIA, L. C. de; COSTA, J. G. C. da; MAGALDI, M. C. de S.; SOUZA, N. P. de; KNUPP, A. M.; ALMEIDA, V. M. de; MELO, L. C.; CABRERA DIAZ, J. L.; MELO, C. L. P. de; WENDLAND, A.; POSSE, S. C. P.; ABREU, A. de F. B.; MARTINS, M.; ALBRECHT, J. C.; BRAZ, A. J. B. P.; MARANGON, M. A.; CARVALHO, A. J. de; MELO, P. G. S.; TRINDADE, N. L. S. R.; FARIA, J. C. de; SOUZA FILHO, B. F. de BRS FS313: cultivar de feijoeiro-comum do tipo jalo, com grão graúdo e alta produtividade. Santo Antônio de Goiás: Embrapa Arroz e Feijão, 2022. 8 p. (Embrapa Arroz e Feijão. Comunicado técnico, 267). ODS 2, ODS 12.Biblioteca(s): Biblioteca Rui Tendinha. |
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Registros recuperados : 6 | |
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Registro Completo |
Biblioteca(s): |
Biblioteca Rui Tendinha. |
Data corrente: |
12/08/2016 |
Data da última atualização: |
12/08/2016 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
- - - |
Autoria: |
CULIK, M. P.; SOUZA, J. L. de.; VENTURA, J. A. |
Afiliação: |
Mark Paul Culik, CNPq/Incaper; Jacimar Luis de Souza, Incaper; Jose Aires Ventura, Incaper. |
Título: |
Biodiversity of collembola in tropical agricultural environments of Espírito Santo, Brazil |
Ano de publicação: |
2002 |
Fonte/Imprenta: |
APPLIED SOIL ECOLOGY, v. 21, n. 1, p. 49-58, july 2002. |
Idioma: |
Inglês |
Conteúdo: |
Despite the environmental importance of Collembola, basic information on the occurrence and ecology of these soil microarthropods is lacking, especially in Neotropical and agricultural environments. To address such gaps in information this research was conducted with objectives to determine what Collembola species inhabit agricultural soils of Esp??rito Santo, Brazil; obtain a record of the seasonal abundance of Collembola in this area; and to investigate effects of alternative agricultural practices on Collembola in this tropical environment. Research field sites are located in Domingos Martins municipality, Esp??rito Santo (20°23?S, 41°03?W) and consist of three sites: (A) fertilizer site, with two fertilizer treatments, organic fertilizer and inorganic fertilizer; (B) tillage site, with two tillage treatments, no tillage and conventional tillage; and (C) mulch site, with two mulch treatments, mulch and no mulch. Experimental plots have received similar treatments since the sites were established (1991, 1992) and a variety of crops are grown on the sites annually. From December 1999 to November 2000, soil core samples (4.8 cm diameter) were taken randomly from the surface 10 cm of each plot every 28?71 days. Tullgren funnels were used to extract Collembola from the soil samples and the Collembola collected were identified and quantified. A total of 9650 collembolan specimens was collected from 88 samples taken at approximately 2 month intervals, averaging 60,600 Collembola per meter square, including 38 species and three probable new species. Averaged across sites and treatments, total collembolan density was greater in September than in December. Total collembolan densities were greater with no tillage versus conventional tillage and with mulch versus no mulch. MenosDespite the environmental importance of Collembola, basic information on the occurrence and ecology of these soil microarthropods is lacking, especially in Neotropical and agricultural environments. To address such gaps in information this research was conducted with objectives to determine what Collembola species inhabit agricultural soils of Esp??rito Santo, Brazil; obtain a record of the seasonal abundance of Collembola in this area; and to investigate effects of alternative agricultural practices on Collembola in this tropical environment. Research field sites are located in Domingos Martins municipality, Esp??rito Santo (20°23?S, 41°03?W) and consist of three sites: (A) fertilizer site, with two fertilizer treatments, organic fertilizer and inorganic fertilizer; (B) tillage site, with two tillage treatments, no tillage and conventional tillage; and (C) mulch site, with two mulch treatments, mulch and no mulch. Experimental plots have received similar treatments since the sites were established (1991, 1992) and a variety of crops are grown on the sites annually. From December 1999 to November 2000, soil core samples (4.8 cm diameter) were taken randomly from the surface 10 cm of each plot every 28?71 days. Tullgren funnels were used to extract Collembola from the soil samples and the Collembola collected were identified and quantified. A total of 9650 collembolan specimens was collected from 88 samples taken at approximately 2 month intervals, averaging 60,600 Collembola... Mostrar Tudo |
Palavras-Chave: |
Agroecosystems; Brazil; Collembola; Espírito Santo (Estado); Tropical biodiversity. |
Categoria do assunto: |
X Pesquisa, Tecnologia e Engenharia |
URL: |
http://biblioteca.incaper.es.gov.br/digital/bitstream/item/2102/1/BRT-BiodiversityofCollembolaintropicalagricultural2002.pdf
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Marc: |
LEADER 02412naa a2200205 a 4500 001 1011482 005 2016-08-12 008 2002 bl uuuu u00u1 u #d 100 1 $aCULIK, M. P. 245 $aBiodiversity of collembola in tropical agricultural environments of Espírito Santo, Brazil$h[electronic resource] 260 $c2002 520 $aDespite the environmental importance of Collembola, basic information on the occurrence and ecology of these soil microarthropods is lacking, especially in Neotropical and agricultural environments. To address such gaps in information this research was conducted with objectives to determine what Collembola species inhabit agricultural soils of Esp??rito Santo, Brazil; obtain a record of the seasonal abundance of Collembola in this area; and to investigate effects of alternative agricultural practices on Collembola in this tropical environment. Research field sites are located in Domingos Martins municipality, Esp??rito Santo (20°23?S, 41°03?W) and consist of three sites: (A) fertilizer site, with two fertilizer treatments, organic fertilizer and inorganic fertilizer; (B) tillage site, with two tillage treatments, no tillage and conventional tillage; and (C) mulch site, with two mulch treatments, mulch and no mulch. Experimental plots have received similar treatments since the sites were established (1991, 1992) and a variety of crops are grown on the sites annually. From December 1999 to November 2000, soil core samples (4.8 cm diameter) were taken randomly from the surface 10 cm of each plot every 28?71 days. Tullgren funnels were used to extract Collembola from the soil samples and the Collembola collected were identified and quantified. A total of 9650 collembolan specimens was collected from 88 samples taken at approximately 2 month intervals, averaging 60,600 Collembola per meter square, including 38 species and three probable new species. Averaged across sites and treatments, total collembolan density was greater in September than in December. Total collembolan densities were greater with no tillage versus conventional tillage and with mulch versus no mulch. 653 $aAgroecosystems 653 $aBrazil 653 $aCollembola 653 $aEspírito Santo (Estado) 653 $aTropical biodiversity 700 1 $aSOUZA, J. L. de. 700 1 $aVENTURA, J. A. 773 $tAPPLIED SOIL ECOLOGY$gv. 21, n. 1, p. 49-58, july 2002.
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