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Registros recuperados : 117 | |
81. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | CIPRIANI, H. N.; SALMAN, A. K. D.; SOUZA, E. C.; PELLEGRINETTI, T. A.; CRUZ, P. G. da; TSAI, S. M. Influência da espécie arbórea na abundância diferencial de procariotos do solo em sistemas silvipastoris na Amazônia Ocidental. In: SIMPÓSIO CIENTÍFICO DOS PÓS-GRADUANDOS DO CENA, 14., 2023, Piracicaba.Antropoceno: Desafios e soluções para um futuro sustentável: resumos... Piracicaba, SP: CENA/USP, 2023. p. 36 Biblioteca(s): Embrapa Rondônia. |
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82. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | FRANCO, M. C.; CASSINI, S. T. A.; OLIVEIRA, V. R. de; CRUZ, C. D.; VIEIRA, C.; TSAI, S. M. Nodulação em acessos divergentes de feijão (Phaseolus vulgaris L.): II. Avaliação do potencial genético de parentais em cruzamento dialético. In: ENCONTRO CIENTIFICO DOS POS-GRADUADOS DO CENA/USP, 2., 1996, Piracicaba. Resumos... Piracicaba: CENA, 1996. p. 8. Biblioteca(s): Embrapa Semiárido. |
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84. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | GERMANO, M. G.; MENDES, L. W.; IWAI, S.; TEIXEIRA, W. G.; QUENSEN, J.; TIEDJE, J.; TSAI, S. M. Pirosequenciamento e qPCR revelam extensa diversidade funcional em solos de terra preta de indio da Amazônia e carvão pirogênico. In: CONGRESSO BRASILEIRO DE CIÊNCIA DO SOLO, 33., 2011, Uberlândia, MG. Biblioteca(s): Embrapa Solos. |
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87. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | MARTINATI, J. C.; LACAVA, P. T.; MIYASAWA, S. K. S.; GUZZO, S. D.; AZEVEDO, J. L.; TSAI, S. M. Redução dos sintomas causados pela Xylella fastidiosa subsp. pauca por meio de aplicação de benzotiadiazole e silício Pesquisa Agropecuária Brasileira, Brasília, DF, v. 42, n. 8, p. 1083-1089, ago. 2007 Título em inglês: Redution of the symptons caused by Xylella fastidiosa subsp. pauca through application of benzothiadiazole and silicon. Biblioteca(s): Embrapa Unidades Centrais. |
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88. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | KAMMANN, C.; LIMA, A. B.; FINKE, C.; TEIXEIRA, W. G.; TSAI, S. M.; MUNIZ, A. W.; BRAKER, G.; MÜLLER, C. N2O emissions and gross soil N transformations in two Amazonian Dark Earth and corresponding adjacent soils. In: INTERNATIONAL CONGRESS EUROSOIL 2012 : SOIL SCIENCE FOR THE BENEFIT OF MANKIND AND ENVIRONMENT, FIERA DEL LEVANTE, 4., Bari, Itália: ECSSS, jul. 2012. p. 1444. Biblioteca(s): Embrapa Amazônia Ocidental. |
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89. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | KAMMANN, C.; LIMA, A. B.; FINKE, C.; TEIXEIRA, W. G.; TSAI, S. M.; MUNIZ, A. W.; BRAKER, G.; MULLER, C. N2O emissions and gross soil N transformations in two Amazonian Dark Earth and corresponding adjacent soils. In: INTERNATIONAL CONGRESS EUROSOIL 2012 : SOIL SCIENCE FOR THE BENEFIT OF MANKIND AND ENVIRONMENT, FIERA DEL LEVANTE, 4., Bari, Itália:ECSSS, 2-6 de jul, 2012. p. 1444. Biblioteca(s): Embrapa Solos. |
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90. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | DIAS, A. C. F.; DINI-ANDREOTE, F.; TAKETANI, R. G.; TSAI, S. M.; AZEVEDO, J. L.; MELO, I. S. de; ANDREOTE, F. D. Archaeal communities in the sediments of three contrasting mangroves. Journal of Soils and Sediments, Berlin, v. 11, n. 8, p. 1466-1476, 2011. Biblioteca(s): Embrapa Meio Ambiente. |
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91. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | FREITAS, A. S. de; ZAGATTO, L. F. G.; ROCHA, G. S.; MUCHALAK, F.; SILVA, S. dos S.; MUNIZ, A. W.; HANADA, R. E.; TSAI, S. M. Amazonian dark earths enhance the establishment of tree species in forest ecological restoration. Frontiers in Soil Science, v. 3, art. 1161627, 2023. Biblioteca(s): Embrapa Amazônia Ocidental. |
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92. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | AMARAL, A. M. do; SAITO, D.; FORMIGHIERI, E. F.; RABELLO, E.; SOUZA, A. N. de; SILVA STENICO, M. E.; TSAI, S. M. Identification of citrus expressed sequence tags (ESTs) encoding pleiotropic drug resistance (PDR)-like proteins. Genetics and Molecular Biology, v. 30, n. 3, suppl., p. 857-865, 2007. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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93. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | MENDES, L. W.; RAAIJMAKERS, J. M.; HOLLANDER, M. de; SEPO, E.; EXPÓSITO, R. G.; CHIORATO, A. F.; MENDES, R.; TSAI, S. M.; CARRIÓN, V. J. Impact of the fungal pathogen Fusarium oxysporum on the taxonomic and functional diversity of the common bean root microbiome. Environmental Microbiome, v. 18, n. 1, article 68, 2023. Biblioteca(s): Embrapa Meio Ambiente. |
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94. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | MENDES, L. W.; RAAIJMAKERS, J. M.; HOLLANDER, M. DE; SEPO, E.; EXPÓSITO, R. G.; MENDES, R.; TSAI, S. M.; CARRÓN, V. J. Impact of the fungal pathogen Fusarium oxysporum on the taxonomic and functional diversity of the common bean root microbiome. In: PLANT MICROBIOME SYMPOSIUM, 4., 2023, Quito. Abstracts... Quito, Equador: Universidad San Francisco de Quito, 2023. Ref. 2-C. 1 p. Biblioteca(s): Embrapa Meio Ambiente. |
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96. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | GERMANO, M. G.; CANNAVAN, F. S.; MENDES, L. W.; LIMA, A. B.; TEIXEIRA, W. G.; PELLIZARI, V. H.; TSAI, S. M. Functional diversity of bacterial genes associated with aromatic hydrocarbon degradation in anthropogenic dark earth of Amazonia. Pesquisa Agropecuária Brasileira, v. 47, n. 5, p. 654-664, maio 2012. Biblioteca(s): Embrapa Amazônia Ocidental; Embrapa Solos. |
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97. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | SILVA, M. G. G.; CANNAVAN, F. S.; MENDES, L. W.; LIMA, A. B.; TEIXEIRA, W. G.; PELLIZARI, V. H.; TSAI, S. M. Functional diversity of bacterial genes associated with aromatic hydrocarbon degradation in anthropogenic dark earth of Amazonia. Pesquisa Agropecuária Brasileira, Brasília, DF, v. 47, n. 5, p. 654-664, maio 2012 Título em português: Diversidade funcional de genes bacterianos associados à degradação de hidrocarbonetos aromáticos em solos de terra preta de índio. Biblioteca(s): Embrapa Unidades Centrais. |
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98. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | KLAUBERG FILHO, O.; TSAI, S. M.; BROWN, G. G.; BARTZ, M.; LUIZ MAFRA, A. L.; DECAËNS, T.; SOUSA, J. P.; BARETTA, C. M.; STÜRMER, S. L.; BARETTA, D. Soil quality and biodiversity across a land-use intensification gradient in Santa Catarina, Brazil. In: INTERNATIONAL COLLOQUIUM ON SOIL ZOOLOGY, 16., 2012, Coimbra. Book of abstracts. Coimbra: University of Coimbra, 2012. p. 76. Biblioteca(s): Embrapa Florestas. |
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99. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | ETCHEGARAY, A.; BUENO, C. de C.; MELO, I. S. de; TSAI, S. M.; FIORE, M. F.; SILVA-STENICO, M. E.; MORAES, L. A. B. de; TESCHKE, O. Effect of a highly concentrated lipopeptide extract of Bacillus subtilis on fungal and bacterial cells. Archives of Microbiology, v. 190, n. 6, p.611-622, 2008. Biblioteca(s): Embrapa Meio Ambiente. |
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100. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | CIPRIANI, H. N.; PELLEGRINETTI, T. A.; SALMAN, A. K. D.; SOUZA, E. C. de; CRUZ, P. G. da; TSAI, S. M. Differential abundance analyses of soil prokaryotes in two Amazon livestock-forestry systems with different algorithms. In: REUNIÃO ANUAL DA REGIÃO BRASILEIRA DA SOCIEDADE INTERNACIONAL DE BIOMETRIA, 68., 2024, Piracicaba. Ciência de Dados, Estatística e a Pós-Graduação: oportunidades e desafios: Resumos. Piracicaba: ESALQ/USP, 2024. Biblioteca(s): Embrapa Rondônia. |
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Registros recuperados : 117 | |
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![](/consulta/web/img/deny.png) | Acesso ao texto completo restrito à biblioteca da Embrapa Instrumentação. Para informações adicionais entre em contato com cnpdia.biblioteca@embrapa.br. |
Registro Completo
Biblioteca(s): |
Embrapa Instrumentação. |
Data corrente: |
26/09/2023 |
Data da última atualização: |
26/09/2023 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
BIELUCZYK, W.; ASSELTA, F. O.; NAVROSKI, D.; GONTIJO, J. B.; VENTURINI, A. M.; MENDES, L. W.; SIMON, C. P.; CAMARGO, P. B. de; TADINI, A. M.; MARTIN NETO, L.; BENDASSOLLI, J. A.; RODRIGUES, R. R.; van der PUTTEN, H. W.; TSAI, S. M. |
Afiliação: |
Laboratory of Nematology, Wageningen University; Laboratory of Nematology, Wageningen University; University of Sao Paulo, Center for Nuclear Energy in Agriculture, Cell and Molecular Biology Laboratory; University of Sao ˜ Paulo, Center for Nuclear Energy in Agriculture, Cell and Molecular Biology Laboratory; Princeton Institute for International and Regional Studies; University of Sao Paulo, Center for Nuclear Energy in Agriculture, Cell and Molecular Biology Laboratory; University of Sao Paulo, Center for Nuclear Energy in Agriculture, Isotopic Ecology Laboratory; University of Sao Paulo, Center for Nuclear Energy in Agriculture, Isotopic Ecology Laboratory; Brazilian Agricultural Research Corporation, Embrapa Instrumentation; LADISLAU MARTIN NETO, CNPDIA; University of Sao Paulo, Center for Nuclear Energy in Agriculture, Stable Isotope Laboratory; University of Sao Paulo, “Luiz de Queiroz” College of Agriculture, Laboratory of Ecology and Forest Restoration; Laboratory of Nematology, Wageningen University; University of Sao Paulo, Center for Nuclear Energy in Agriculture, Cell and Molecular Biology Laboratory. |
Título: |
Linking above and belowground carbon sequestration, soil organic matter properties, and soil health in Brazilian Atlantic Forest restoration. |
Ano de publicação: |
2023 |
Fonte/Imprenta: |
Journal of Environmental Management, v. 344, 118573, 2023. |
Páginas: |
15 p. |
ISSN: |
0301-4797 |
DOI: |
https://doi.org/10.1016/j.jenvman.2023.118573 |
Idioma: |
Inglês |
Conteúdo: |
Forest restoration mitigates climate change by removing CO2 and storing C in terrestrial ecosystems. However, incomplete information on C storage in restored tropical forests often fails to capture the ecosystem?s holistic C dynamics. This study provides an integrated assessment of C storage in above to belowground subsystems, its consequences for greenhouse gas (GHG) fluxes, and the quantity, quality, and origin of soil organic matter (SOM) in restored Atlantic forests in Brazil. Relations between SOM properties and soil health indicators were also explored. We examined two restorations using tree planting (?active restoration?): an 8-year-old forest with green manure and native trees planted in two rounds, and a 15-year-old forest with native-planted trees in one round without green manure. Restorations were compared to reformed pasture and primary forest sites. We measured C storage in soil layers (0?10, 10?20, and 20?30 cm), litter, and plants. GHG emissions were assessed using CH4 and CO2 fluxes. SOM quantity was evaluated using C and N, quality using humification index (HLIFS), and origin using δ13C and δ15N. Nine soil health indicators were interrelated with SOM attributes. The primary forest presented the highest C stocks (107.7 Mg C ha− 1 ), followed by 15- and 8-year-old restorations and pasture with 69.8, 55.5, and 41.8 Mg C ha− 1 , respectively. Soil C stocks from restorations and pasture were 20% lower than primary forest. However, 8- and 15-year-old restorations stored 12.3 and 28.3 Mg ha− 1 more aboveground C than pasture. The younger forest had δ13C and δ15N values of 2.1 and 1.7?, respectively, lower than the 15-year-old forest, indicating more C derived from C3 plants and biological N fixation. Both restorations and pasture had at least 34% higher HLIFS in deeper soil layers (10?30 cm) than primary forest, indicating a lack of labile SOM. Native and 15-year-old forests exhibited higher soil methane influx (141.1 and 61.9 μg m− 2 h− 1 ). Forests outperformed pasture in most soil health indicators, with 69% of their variance explained by SOM properties. However, SOM quantity and quality regeneration in both restorations approached the pristine forest state only in the top 10 cm layer, while deeper soil retained agricultural degradation legacies. In conclusion, active restoration of the Atlantic Forest is a superior approach compared to pasture reform for GHG mitigation. Nonetheless, the development of restoration techniques to facilitate labile C input into deeper soil layers (>10 cm) is needed to further improve soil multifunctionality and long-term C storage. MenosForest restoration mitigates climate change by removing CO2 and storing C in terrestrial ecosystems. However, incomplete information on C storage in restored tropical forests often fails to capture the ecosystem?s holistic C dynamics. This study provides an integrated assessment of C storage in above to belowground subsystems, its consequences for greenhouse gas (GHG) fluxes, and the quantity, quality, and origin of soil organic matter (SOM) in restored Atlantic forests in Brazil. Relations between SOM properties and soil health indicators were also explored. We examined two restorations using tree planting (?active restoration?): an 8-year-old forest with green manure and native trees planted in two rounds, and a 15-year-old forest with native-planted trees in one round without green manure. Restorations were compared to reformed pasture and primary forest sites. We measured C storage in soil layers (0?10, 10?20, and 20?30 cm), litter, and plants. GHG emissions were assessed using CH4 and CO2 fluxes. SOM quantity was evaluated using C and N, quality using humification index (HLIFS), and origin using δ13C and δ15N. Nine soil health indicators were interrelated with SOM attributes. The primary forest presented the highest C stocks (107.7 Mg C ha− 1 ), followed by 15- and 8-year-old restorations and pasture with 69.8, 55.5, and 41.8 Mg C ha− 1 , respectively. Soil C stocks from restorations and pasture were 20% lower than primary forest. However, 8- and 1... Mostrar Tudo |
Palavras-Chave: |
Ecosystem restoration; Greenhouse gas; Soil health; SOM humification index. |
Categoria do assunto: |
-- |
Marc: |
LEADER 03790naa a2200361 a 4500 001 2156894 005 2023-09-26 008 2023 bl uuuu u00u1 u #d 022 $a0301-4797 024 7 $ahttps://doi.org/10.1016/j.jenvman.2023.118573$2DOI 100 1 $aBIELUCZYK, W. 245 $aLinking above and belowground carbon sequestration, soil organic matter properties, and soil health in Brazilian Atlantic Forest restoration.$h[electronic resource] 260 $c2023 300 $a15 p. 520 $aForest restoration mitigates climate change by removing CO2 and storing C in terrestrial ecosystems. However, incomplete information on C storage in restored tropical forests often fails to capture the ecosystem?s holistic C dynamics. This study provides an integrated assessment of C storage in above to belowground subsystems, its consequences for greenhouse gas (GHG) fluxes, and the quantity, quality, and origin of soil organic matter (SOM) in restored Atlantic forests in Brazil. Relations between SOM properties and soil health indicators were also explored. We examined two restorations using tree planting (?active restoration?): an 8-year-old forest with green manure and native trees planted in two rounds, and a 15-year-old forest with native-planted trees in one round without green manure. Restorations were compared to reformed pasture and primary forest sites. We measured C storage in soil layers (0?10, 10?20, and 20?30 cm), litter, and plants. GHG emissions were assessed using CH4 and CO2 fluxes. SOM quantity was evaluated using C and N, quality using humification index (HLIFS), and origin using δ13C and δ15N. Nine soil health indicators were interrelated with SOM attributes. The primary forest presented the highest C stocks (107.7 Mg C ha− 1 ), followed by 15- and 8-year-old restorations and pasture with 69.8, 55.5, and 41.8 Mg C ha− 1 , respectively. Soil C stocks from restorations and pasture were 20% lower than primary forest. However, 8- and 15-year-old restorations stored 12.3 and 28.3 Mg ha− 1 more aboveground C than pasture. The younger forest had δ13C and δ15N values of 2.1 and 1.7?, respectively, lower than the 15-year-old forest, indicating more C derived from C3 plants and biological N fixation. Both restorations and pasture had at least 34% higher HLIFS in deeper soil layers (10?30 cm) than primary forest, indicating a lack of labile SOM. Native and 15-year-old forests exhibited higher soil methane influx (141.1 and 61.9 μg m− 2 h− 1 ). Forests outperformed pasture in most soil health indicators, with 69% of their variance explained by SOM properties. However, SOM quantity and quality regeneration in both restorations approached the pristine forest state only in the top 10 cm layer, while deeper soil retained agricultural degradation legacies. In conclusion, active restoration of the Atlantic Forest is a superior approach compared to pasture reform for GHG mitigation. Nonetheless, the development of restoration techniques to facilitate labile C input into deeper soil layers (>10 cm) is needed to further improve soil multifunctionality and long-term C storage. 653 $aEcosystem restoration 653 $aGreenhouse gas 653 $aSoil health 653 $aSOM humification index 700 1 $aASSELTA, F. O. 700 1 $aNAVROSKI, D. 700 1 $aGONTIJO, J. B. 700 1 $aVENTURINI, A. M. 700 1 $aMENDES, L. W. 700 1 $aSIMON, C. P. 700 1 $aCAMARGO, P. B. de 700 1 $aTADINI, A. M. 700 1 $aMARTIN NETO, L. 700 1 $aBENDASSOLLI, J. A. 700 1 $aRODRIGUES, R. R. 700 1 $avan der PUTTEN, H. W. 700 1 $aTSAI, S. M. 773 $tJournal of Environmental Management$gv. 344, 118573, 2023.
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