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Registros recuperados : 62 | |
1. | | LASTORIA, G.; GABAS, S. G.; BERGIER, I.; MIRANDA, C. de S.; SOUZA, A. de; SANTOS, T. H. L. dos; MACHADO, C. D. A gestão do SAG na Borda Oeste da Bacia Sedimentar do Paraná no Estado do Mato Grosso do Sul. In: HIRATA, R.; ROCHA, G.; SINDICO, F. A gestão do sistema aquífero Guarani: um exemplo de cooperação. São Paulo: USP, 2011. p. 50. Biblioteca(s): Embrapa Pantanal. |
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2. | | ARAÚJO, M. I. de; SOUSA, S. G. A. de; SOUZA NETA, N. L. de; SOUZA, A. de. A importância socioeconômica e cultural do feirão da Sepror, no abastecimento de frutas tropicais na cidade de Manaus-AM. In: CONGRESSO BRASILEIRO DE FRUTICULTURA, 24., 2016, São Luis. Fruticultura: fruteiras nativas e sustentabilidade. São Luis, MA: SBF, 2016. Biblioteca(s): Embrapa Amazônia Ocidental. |
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4. | | NETO, C. B. S.; GOMES, T. G.; ARAÚJO, A. P.; SOUZA, A. de; MIDORIKAWA, G. E. O.; ALVES, G. S. C.; SIQUEIRA, F. G. de; MILLER, R. N. G. Análise transcriptômica de genes de macrofungos durante a destoxificação em torta de caroço de algodão. IN: V SIMPÓSIO DO PROGRAMA DE PÓS-GRADUAÇÃO EM BIOLOGIA MOLECULAR, 5., Brasília, DF. [Anais...] Brasília: UnB, 2015. Biblioteca(s): Embrapa Agroenergia. |
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5. | | SOBIERAJSKI, G. da R.; BLAIN, G. C.; SOUSA, A. C. B.; JUNGMANN, L.; PEREIRA, G.; SOUZA, A. de; GARCIA, A. A. F. Analysis of the genetic structure and diversity of a Brazilian macadamia nut (Macadamia integrifolia) germplasm. Crop Breeding and Applied Biotechnology, v. 22, n. 3, e41382231, 2022. Biblioteca(s): Embrapa Agroenergia. |
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8. | | BARBOSA, F. R.; GONÇALVES, M. E. de; MOREIRA, W. A.; ALENCAR, J. A. de; SOUZA, E. A. de; SILVA, C. S. B. da; SOUZA, A. de M.; MIRANDA, I. da G. Artrópodes - praga e predadores (Arthropoda) associados à cultura da mangueira no Vale do São Francisco, Nordeste do Brasil. Neotropical Entomology, Vacaria, RS, v. 34, n. 3, p. 471-474, may/jun. 2005. Biblioteca(s): Embrapa Semiárido. |
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9. | | MOREIRA, F. R. B.; SOUZA, E. A. de; SILVA, C. S. B. de; GONÇALVES, M. E. de C.; MIRANDA, I. da G.; SOUZA, A. de M. Artrópodes - praga e predadores associados à cultura da mangueira no Vale do São Francisco. In: SEMINÁRIO BRASILEIRO DE PRODUÇÃO INTEGRADA DE FRUTAS, 6., 2004, Petrolina. Resumos... Petrolina: Embrapa Semi-Árido: Valexport, 2004. 1 CD-ROM. Biblioteca(s): Embrapa Semiárido. |
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10. | | BARBOSA, F. R.; SILVA, C. S. B. da; GONÇALVES, M. E. de C.; SOUZA, E. A. de; SOUZA, A. de M.; MIRANDA, I. da G. Artrópodes-pragas e inimigos naturais associados à cultura da mangueira no Submédio do Vale do São Francisco, Nordeste do Brasil. In: MENEZES, E. A.; BARBOSA, F. R. (Ed.). Pragas da mangueira: monitoramento, nível de ação e controle. Petrolina: Embrapa Semi-Árido, 2005. cap. 3, p. 71-84 Biblioteca(s): Embrapa Semiárido. |
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12. | | RICARTE, J. D.; FERRAZ, J. M. G.; FAGUNDES, G. G.; HABIB, M.; MATTOS, R.; SOUZA, A. de; SOUZA, P. de; SOUZA, E. de. Avaliação de sustentabilidade ecológica em duas propriedades agrícolas orgânicas em Jaguariúna (SP). In: CONGRESSO BRASILEIRO DE AGROECOLOGIA, 4., 2006, Belo Horizonte. Construindo horizontes sustentáveis: anais. Belo Horizonte, CBA, 2006. p. 1-4. Biblioteca(s): Embrapa Meio Ambiente. |
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13. | | RIBEIRO, M. T.; FAGUNDES, G. G.; FERRAZ, J. M. G.; HABIB, M.; MATTOS, R.; SOUZA, A. de; SOUZA, P. de; SOUZA, E. de. Avaliação de sustentabilidade sócio-econômica em duas propriedades agrícolas no Município de Jaguariúna/SP. In: CONGRESSO BRASILEIRO DE AGROECOLOGIA, 4., 2006, Belo Horizonte. Construindo horizontes sustentáveis: anais. Belo Horizonte, CBA, 2006. p. 1-4. Biblioteca(s): Embrapa Meio Ambiente. |
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15. | | GRIGIO, M. L.; CHAGAS, E. A.; DURIGAN, M. F. B.; SOUZA, A. DE A.; NASCIMENTO, C. R. do; BACELAR-LIMA, C. G.; ARAÚJO, W. F.; NEVES, L. C. Conservação pós-colheita de frutos de camu-camu usando diferentes embalagens. In: SIMPÓSIO INTERNACIONAL DE BOTÂNICA APLICADA, 2.; SIMPÓSIO NACIONAL DE FRUTÍFERAS E ORNAMENTAIS DO NORTE E NORDESTE, 2., 2013, Manaus. Anais... Manaus: Ufam, 2013. Biblioteca(s): Embrapa Roraima. |
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17. | | YAMAGUCHI, L. C. T.; MELLO, R. P. de; CAMPOS, A. T. de; LOBATO NETO, J.; SOUZA, A. de A. M.; RODRIGUES, J. C. P. Custo de criacao dos animais no sistema de producao de leite do CNPGL/EMBRAPA. Porto Alegre: SBZ, 1989. p.285. In: REUNIAO ANUAL DA SOCIEDADE BRASILEIRA DE ZOOTECNIA, 26., 1989, Porto Alegre. Anais... Biblioteca(s): Embrapa Gado de Leite. |
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18. | | CASTRO, A. M. G. de; SOUZA, A. de P.; LOPES, E. S.; SOBRAL, L. F.; LOVATO, L. A.; MENEZES, M.; TISSELLI FILHO, O. Deficiencias de macronutrientes em Milho (Zea mays L.), cv. Piranao. Piracicaba: ESALQ, 1975. 37p. Trabalho apresentado a disciplina Nutricao Mineral de Plantas, do Curso de Pos-Graduacao em Solos e Nutricao de Plantas. Biblioteca(s): Embrapa Tabuleiros Costeiros. |
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Registros recuperados : 62 | |
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Registro Completo
Biblioteca(s): |
Embrapa Florestas. |
Data corrente: |
15/09/2008 |
Data da última atualização: |
15/09/2008 |
Autoria: |
BAROIS, I.; VELASQUEZ, E.; LAVELLE, P.; NEGRETE-YANKELEVICH, S; GARCÍA, J. A.; SANTOS, M.; ÁLVAREZ-SÁNCHEZ, J.; CASTILLO-CAMPOS, G.; CRAM, S.; FRAGOSO, C; FRANCO-NAVARRO, F.; MARTÍNEZ-ROMERO, E.; MEZA, E.; MORÓN, M. A.; RODRÍGUEZ, P.; ROJAS, P.; SOSA, V.; TREJO, D.; VARELA, L.; BUENO-VILLEGAS, J.; GÓMEZ, J. A.; SORMANI, C. |
Título: |
Soil quality parameters that determine the below ground biodiversity in Los Tuxtlas Veracruz Mexico. |
Ano de publicação: |
2008 |
Fonte/Imprenta: |
In: INTERNATIONAL COLLOQUIUM ON SOIL ZOOLOGY, 15; INTERNATIONAL COLLOQUIUM ON APTERYGOTA, 12., 2008, Curitiba. Biodiversity, conservation and sustainabele management of soil animal: abstracts. Colombo: Embrapa Florestas. Editors: George Gardner Brown; Klaus Dieter Sautter; Renato Marques; Amarildo Pasini. 1 CD-ROM. |
Idioma: |
Inglês |
Conteúdo: |
In the frame of the project ?Conservation and sustainable management of below ground
biodiversity (GEF/UNEP-CIAT/TSBF)? soil organisms inventories were done in the biosphere
reserve of Los Tuxtlas around Santa Martha volcano. 3 Sites (LM, SF and VC) and 4 land use
(forest (S), fallow (A), pasture (P) and maize (M) were sampled, in 89 points . The sampled
organisms were the biological nitrogen fixators, the mychorrizal fungi, the nematodes, the
macrofauna (earthworms, ants, termites, beetles, millipedes, centipedes?). In each point the
samples for the microorganisms and nematodes came from a composite soil sample made of
12 cores of 5 cm diameter and 20 cm height. The macrofauna was sampled with monoliths
(25x25x30cm), Winkler bags and Pitfall traps. Some chemical parameters (pH, Na, K, Mg. Ca
and P Bray), physical (% H,EC, clay, lime, sand, ad, rd, slope) and organic parameters ( C, N,
NH4, NO3, litter and deshydrogenase and B-glucosidase activity) were measured in each points
from the composed sample.
In order to synthesized the results and to evaluate which parameters of the soil determine the
diversity of organisms the general indicator of soil quality (GISQ) was build after 4 subindicators
that evaluates the physical, chemical, organic matter and the macrofauna data. The construction
of the GISQ was made with PCA of each of the 4 sets of variables and a cluster analysis. Also
identification of species indicators (Ind Val) and coinertia analysis was carried out.
The PCA of the 4 set of variables showed significant separation among sites and among land
uses. LM site had the best soil quality, followed by SF and VC. In the land use system S showed
the best soil quality and M the lowest, although in some group of variables P and A uses presented
a quality near to S.
The highest GISQ (1.00-0.85) were from LM but in different land uses (S, A and P); the lowest
(0.49-0.21) were in VC in maize and pasture and in SF in maize. The cluster analysis did
discriminate 8 groups of the sampling points having a similar GISQ.
The Ind Val analysis extracted some species indicators many from the ants and the nematodes
and few from the earthworms, termites and mycorrhizal fungi.
The co-inertia analysis between soil quality indicators and species richness displayed that
some diplopodes and coleoptera and native earthworms required a high soil quality soil. Other
coleoptera, ants and exotic earthworms required a less rich soil although with a high quality in
organic matter. Finally ,the microorganisms (Rhizobia and mycorrhizal fungi), Nematodes and
Chilopoda, were more represented in poor quality soils MenosIn the frame of the project ?Conservation and sustainable management of below ground
biodiversity (GEF/UNEP-CIAT/TSBF)? soil organisms inventories were done in the biosphere
reserve of Los Tuxtlas around Santa Martha volcano. 3 Sites (LM, SF and VC) and 4 land use
(forest (S), fallow (A), pasture (P) and maize (M) were sampled, in 89 points . The sampled
organisms were the biological nitrogen fixators, the mychorrizal fungi, the nematodes, the
macrofauna (earthworms, ants, termites, beetles, millipedes, centipedes?). In each point the
samples for the microorganisms and nematodes came from a composite soil sample made of
12 cores of 5 cm diameter and 20 cm height. The macrofauna was sampled with monoliths
(25x25x30cm), Winkler bags and Pitfall traps. Some chemical parameters (pH, Na, K, Mg. Ca
and P Bray), physical (% H,EC, clay, lime, sand, ad, rd, slope) and organic parameters ( C, N,
NH4, NO3, litter and deshydrogenase and B-glucosidase activity) were measured in each points
from the composed sample.
In order to synthesized the results and to evaluate which parameters of the soil determine the
diversity of organisms the general indicator of soil quality (GISQ) was build after 4 subindicators
that evaluates the physical, chemical, organic matter and the macrofauna data. The construction
of the GISQ was made with PCA of each of the 4 sets of variables and a cluster analysis. Also
identification of species indicators (Ind Val) and coinertia analysis was carried out.
The PCA o... Mostrar Tudo |
Categoria do assunto: |
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LEADER 03903naa a2200373 a 4500 001 1314804 005 2008-09-15 008 2008 bl uuuu u00u1 u #d 100 1 $aBAROIS, I. 245 $aSoil quality parameters that determine the below ground biodiversity in Los Tuxtlas Veracruz Mexico. 260 $c2008 520 $aIn the frame of the project ?Conservation and sustainable management of below ground biodiversity (GEF/UNEP-CIAT/TSBF)? soil organisms inventories were done in the biosphere reserve of Los Tuxtlas around Santa Martha volcano. 3 Sites (LM, SF and VC) and 4 land use (forest (S), fallow (A), pasture (P) and maize (M) were sampled, in 89 points . The sampled organisms were the biological nitrogen fixators, the mychorrizal fungi, the nematodes, the macrofauna (earthworms, ants, termites, beetles, millipedes, centipedes?). In each point the samples for the microorganisms and nematodes came from a composite soil sample made of 12 cores of 5 cm diameter and 20 cm height. The macrofauna was sampled with monoliths (25x25x30cm), Winkler bags and Pitfall traps. Some chemical parameters (pH, Na, K, Mg. Ca and P Bray), physical (% H,EC, clay, lime, sand, ad, rd, slope) and organic parameters ( C, N, NH4, NO3, litter and deshydrogenase and B-glucosidase activity) were measured in each points from the composed sample. In order to synthesized the results and to evaluate which parameters of the soil determine the diversity of organisms the general indicator of soil quality (GISQ) was build after 4 subindicators that evaluates the physical, chemical, organic matter and the macrofauna data. The construction of the GISQ was made with PCA of each of the 4 sets of variables and a cluster analysis. Also identification of species indicators (Ind Val) and coinertia analysis was carried out. The PCA of the 4 set of variables showed significant separation among sites and among land uses. LM site had the best soil quality, followed by SF and VC. In the land use system S showed the best soil quality and M the lowest, although in some group of variables P and A uses presented a quality near to S. The highest GISQ (1.00-0.85) were from LM but in different land uses (S, A and P); the lowest (0.49-0.21) were in VC in maize and pasture and in SF in maize. The cluster analysis did discriminate 8 groups of the sampling points having a similar GISQ. The Ind Val analysis extracted some species indicators many from the ants and the nematodes and few from the earthworms, termites and mycorrhizal fungi. The co-inertia analysis between soil quality indicators and species richness displayed that some diplopodes and coleoptera and native earthworms required a high soil quality soil. Other coleoptera, ants and exotic earthworms required a less rich soil although with a high quality in organic matter. Finally ,the microorganisms (Rhizobia and mycorrhizal fungi), Nematodes and Chilopoda, were more represented in poor quality soils 700 1 $aVELASQUEZ, E. 700 1 $aLAVELLE, P. 700 1 $aNEGRETE-YANKELEVICH, S 700 1 $aGARCÍA, J. A. 700 1 $aSANTOS, M. 700 1 $aÁLVAREZ-SÁNCHEZ, J. 700 1 $aCASTILLO-CAMPOS, G. 700 1 $aCRAM, S. 700 1 $aFRAGOSO, C 700 1 $aFRANCO-NAVARRO, F. 700 1 $aMARTÍNEZ-ROMERO, E. 700 1 $aMEZA, E. 700 1 $aMORÓN, M. A. 700 1 $aRODRÍGUEZ, P. 700 1 $aROJAS, P. 700 1 $aSOSA, V. 700 1 $aTREJO, D. 700 1 $aVARELA, L. 700 1 $aBUENO-VILLEGAS, J. 700 1 $aGÓMEZ, J. A. 700 1 $aSORMANI, C. 773 $tIn: INTERNATIONAL COLLOQUIUM ON SOIL ZOOLOGY, 15; INTERNATIONAL COLLOQUIUM ON APTERYGOTA, 12., 2008, Curitiba. Biodiversity, conservation and sustainabele management of soil animal: abstracts. Colombo: Embrapa Florestas. Editors: George Gardner Brown; Klaus Dieter Sautter; Renato Marques; Amarildo Pasini. 1 CD-ROM.
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