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Registros recuperados : 110 | |
81. | | BITTENCOURT, C. B.; SILVA, T. L. C. da; RODRIGUES NETO, J. C.; VIEIRA, L. R.; LEAO, A. P.; RIBEIRO, J. A. de A.; ABDELNUR, P. V.; SOUSA, C. A. F. de; SOUZA JUNIOR, M. T. Insights from a Multi-Omics Integration (MOI) Study in Oil Palm (Elaeis gineensis Jacq.) Response to Abiotic Stresses: Part One?Salinity. Plants, 11, n. 1755, 2022. Biblioteca(s): Embrapa Agroenergia; Embrapa Meio-Norte. |
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82. | | LEAO, A. P.; BITTENCOURT, C. B.; SILVA, T. L. C. da; RODRIGUES NETO, J. C.; BRAGA, I. de O.; VIEIRA, L. R.; RIBEIRO, J. A. de A.; SOUSA, C. A. F. de; ABDELNUR, P. V.; SOUZA JUNIOR, M. T. Insights from a Multi-Omics Integration (MOI) Study in Oil Palm (Elaeis gineensis Jacq.) Response to Abiotic Stresses: Part Two - Drought. Plants, 11, n. 2786, 2022. Biblioteca(s): Embrapa Agroenergia. |
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83. | | LEAO, A. P.; BITTENCOURT, C. B.; SILVA, T. L. C. da; RODRIGUES NETO, J. C.; BRAGA, Í. de O.; VIEIRA, L. R.; RIBEIRO, J. A. de A.; ABDELNUR, P. V.; SOUSA, C. A. F. de; SOUZA JUNIOR, M. T. Insights from a Multi-Omics Integration (MOI) study in Oil Palm (Elaeis guineensis Jacq.) response to abiotic stresses: Part Two-Drought. Plants, v. 11, n. 20, 2786, Oct. 2022. Biblioteca(s): Embrapa Meio-Norte. |
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84. | | BITTENCOURT, C. B.; SILVA, T. L. C. da; RODRIGUES NETO, J. C.; VIEIRA, L. R.; LEAO, A. P.; RIBEIRO, J. A. de A.; ABDELNUR, P. V.; SOUSA, C. A. F. de; SOUZA JUNIOR, M. T. Insights from a Multi-Omics Integration (MOI) study in oil palm (ELAEIS GUINEENSIS JACQ.) response to salinity and drought stresses. In: BRAZILIAN CONGRESS OF GENETICS, 67., 2022, Natal, RN. Porto Alegre: Sociedade Brasileira de Genética, 2022. p. 394 Biblioteca(s): Embrapa Agroenergia. |
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85. | | BITTENCOURT, C. B.; SILVA, T. L. C. da; RODRIGUES NETO, J. C.; VIEIRA, L. R.; LEAO, A. P.; RIBEIRO, J. A. de A.; ABDELNUR, P. V.; SOUSA, C. A. F. de; SOUZA JUNIOR, M. T. Insights from a Multi-Omics Integration (MOI) study in oil palm (ELAEIS GUINEENSIS JACQ.) response to salinity and drought stresses. In: BRAZILIAN CONGRESS OF GENETICS, 67., 2022, Natal, RN. p. 394 Biblioteca(s): Embrapa Meio-Norte. |
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86. | | SILVA, T. L. C. da; SILVA, V. N. B.; BRAGA, I. de O.; RODRIGUES NETO, J. C.; LEAO, A. P.; RIBEIRO, J. A. de A.; VALADARES, L. F.; ABDELNUR, P. V.; SOUSA, C. A. F. de; SOUZA JUNIOR, M. T. Integration of metabolomics and transcriptomics data to further characterize Gliricidia sepium (Jacq.) Kunth under high salinity stress. Plant Genome, e20182, 2021. Biblioteca(s): Embrapa Agroenergia; Embrapa Meio-Norte. |
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87. | | RODRIGUES NETO, J. C.; VARGAS, L. H. G.; RIBEIRO, J. A. de A.; SILVA, M. E. R. da; SOUZA JUNIOR, M. T.; RODRIGUES, C. M.; OLIVEIRA, A. E. de; ABDELNUR, P. V. Impressão digital metabólica de folhas de Elaeis guineensis em diferentes condições de preparo de amostra utilizando UHPLC-MS. In: ENCONTRO DE PESQUISA E INOVAÇÃO DA EMBRAPA AGROENERGIA, 3., 2016, Brasília, DF. Anais ... Brasília, DF: Embrapa, 2016. p. 237-245. Biblioteca(s): Embrapa Agroenergia. |
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88. | | FONTES, P. R.; RIBEIRO, J. A. de A.; COSTA, P. P. K. G.; DAMASO, M. C. T.; GONZALEZ, W. de A.; SANTOS, C. M. C. dos; ABDELNUR, P. V.; RODRIGUES, C. M. Development and validation of a HILIC-UPLC-ELSD method based on optimized chromatographic and detection parameters for the quantification of polyols from bioconversion processes. Analytical Methods, v. 8, p. 2048-2057, 2016. Biblioteca(s): Embrapa Agroenergia. |
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89. | | NETO, J. C. R.; RICCI-SILVA, M. E.; SANTOS, C. F. dos; COSTA, P. P. K. G.; RIBEIRO, J. A. de A.; SIQUEIRA, F. G. de; ABDELNUR, P. V. Desenvolvimento de protocolo analítico para identificação de proteínas em frutos de dendê utilizando MALDI(+)-TOF-MS In: CONGRESSO BRASILEIRO DE QUÍMICA, 55., 2015, Goiânia. Recursos renováveis: inovação e tecnologia. Rio de Janeiro: ABQ, 2015. Biblioteca(s): Embrapa Agroenergia. |
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90. | | GOMES, T. G.; MACHADO, A. E. V.; ARAÚJO, A. P.; LAVIOLA, B. G.; RIBEIRO, J. A. de A.; CAMPANHA, R. B.; HELM, C. V.; MENDONCA, S.; SIQUEIRA, F. G. de. Degradação de ésteres de forbol da torta de pinhão-manso por macrofungos e potencial como substrato para produção de cogumelos comestíveis. In: ENCONTRO DE PESQUISA E INOVAÇÃO DA EMBRAPA AGROENERGIA, 2., 2015, Brasília, DF. Anais ... Brasília, DF: Embrapa Agroenergia, 2015. p. 95-97. Biblioteca(s): Embrapa Florestas. |
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91. | | GOMES, T. G.; MACHADO, A. E. V.; ARAÚJO, A. P.; LAVIOLA, B. G.; RIBEIRO, J. A. de A.; CAMPANHA, R. B.; HELM, C. V.; MENDONCA, S.; SIQUEIRA, F. G. de. Degradação de ésteres de forbol da torta de pinhão-manso por macrofungos e potencial como substrato para produção de cogumelos comestíveis. In: ENCONTRO DE PESQUISA E INOVAÇÃO DA EMBRAPA AGROENERGIA, 2., 2015, Brasília, DF. Anais ... Brasília, DF: Embrapa Agroenergia, 2015. 95 - 97 Biblioteca(s): Embrapa Agroenergia. |
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92. | | BRAGA, Í. de O.; SILVA, T. L. C. da; SILVA, V. N. B.; RODRIGUES NETO, J. C.; RIBEIRO, J. A. de A.; ABDELNUR, P. V.; SOUSA, C. A. F. de; SOUZA JUNIOR, M. T. Deep untargeted metabolomics analysis to further characterize the adaptation response of Gliricidia sepium (Jacq.) Walp. to very high salinity stress. Frontiers in Plant Science, v. 13, Art. 869105, May, 2022. Biblioteca(s): Embrapa Agroenergia; Embrapa Meio-Norte. |
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93. | | BARROS, T. de F. S.; MEDEIROS, E. P. de; ALMEIDA, P. B. A. de; SOUSA, G. R. M. de; ARRIEL, N. H. C.; QUEIROZ, M. F. de; MENDONCA, S.; RIBEIRO, J. A. de A.; FERNANDES, P. D. Determinação do perfil lipídico das espécies: pinhão manso, pinhão bravo e pinhão roxo. CONGRESSO BRASILEIRO DE MAMONA, 5.; SIMPÓSIO INTERNACIONAL DE OLEAGINOSAS ENERGÉTICAS, 2.; FÓRUM CAPIXABA DE PINHÃO-MANSO, 1., 2012, Guarapari. Desafios e Oportunidades: anais. Campina Grande: Embrapa Algodão, 2012. p. 401 Biblioteca(s): Embrapa Agroenergia; Embrapa Algodão. |
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94. | | BITTENCOURT, C. B.; SILVA, T. L. C. da; RODRIGUES NETO, J. C.; LEAO, A. P.; RIBEIRO, J. A. de A.; MAIA, A. de H. N.; SOUSA, C. A. F. de; QUIRINO, B. F.; SOUZA JÚNIOR, M. T. Molecular interplay between non-host resistance, pathogens and basal immunity as a background for fatal yellowing in oil palm (Elaeis guineensis Jacq.) plants. International Journal of Molecular Sciences, v. 24, n. 16, article 12918, 2023. Biblioteca(s): Embrapa Agroenergia; Embrapa Meio Ambiente; Embrapa Meio-Norte. |
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95. | | VARGAS, L. H. G.; RODRIGUES NETO, J. C.; RIBEIRO, J. A. de A.; RICCI-SILVA, M. E.; SOUZA JUNIOR, M. T.; RODRIGUES, C. M.; OLIVEIRA, A. E. DE; ABDELNUR, P. V. Metabolomics analysis of oil palm (Elaeis guineensis) leaf: evaluation of sample preparation steps using UHPLC?MS/MS. Metabolomics, v. 12, n. 10, artigo número 153, 2016. Biblioteca(s): Embrapa Agroenergia. |
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96. | | SILVA, M. R. da; BRAGAGNOLO, F. S.; CARNEIRO. R. L.; PEREIRA, I. de O. C.; RIBEIRO, J. A. de A.; RODRIGUES, C. M.; JELLEY, R. E.; FEDRIZZI, B.; FUNARI, C. S. Metabolite characterization of fifteen by-products of the coffee production chain: From farm to factory. Food Chemistry, v. 369, 130753, Feb. 2022. 17 p. Biblioteca(s): Embrapa Agroenergia. |
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97. | | CAMPOS, C. G.; VERAS, H. C. T.; RIBEIRO, J. A. de A.; COSTA, P. P. K. G.; ARAÚJO, K. P.; RODRIGUES, C. M.; ALMEIDA, J. R. M. de; ABDELNUR, P. V. New protocol based on UHPLC-MS/MS for quantitation of metabolites in xylose-fermenting yeasts. Journal of the American Society for Mass Spectrometry, v. 28, n. 12, p. 2646-2657, 2017. p. 2646-2657 Biblioteca(s): Embrapa Agroenergia. |
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98. | | SILVA, V. N. B.; SILVA, T. L. C. da; FERREIRA, T. M. M.; RODRIGUES NETO, J. C.; LEAO, A. P.; RIBEIRO, J. A. de A.; ABDELNUR, P. V.; VALADARES, L. F.; SOUSA, C. A. F. de; SOUZA JUNIOR, M. T. Multi-omics analysis of young Portulaca Oleracea L. plants' responses to High NaCl doses reveals insights into pathways and genes responsive to salinity stress in this halophyte species. Phenomics, 2022. Published online: 15 June 2022. Biblioteca(s): Embrapa Agroenergia; Embrapa Meio-Norte. |
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99. | | GOMES, T. G.; HADI, S. I. I. A.; RIBEIRO, J. A. de A.; SEGATTO, R.; MENDES, T. D.; HELM, C. V.; CHAGAS JÚNIOR, A. F.; MILLER, R. N. G.; MENDONCA, S.; SIQUEIRA, F. G. de. Phorbol ester biodegradation in Jatropha curcas cake and potential as a substrate for enzyme and Pleurotus pulmonarius edible mushroom production. Biocatalysis and Agricultural Biotechnology, v. 45, 102498, Oct., 2022. 13 p. Biblioteca(s): Embrapa Agroenergia; Embrapa Florestas. |
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100. | | PEREIRA, C. B.; SILVA, R. M. C. da; POLETTO, C. M.; CAMPOS, C. G.; RIBEIRO, J. A. de A.; RODRIGUES, C. M.; ABDELNUR, P. V.; ALMEIDA, J. R. M. de; DAMASO, M. C. T. Screening of microorganisms for production of aggregated-value chemicals from glycerin bioconversion. In: SYMPOSIUM ON BIOTECHNOLOGY FOR FUELS AND CHEMICALS, 37., 2015, San Diego, California. [Resumos ...] Fairfax: Society for Industrial Microbiology and Biotechnology, 2015. Biblioteca(s): Embrapa Agroenergia. |
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Registros recuperados : 110 | |
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Registro Completo
Biblioteca(s): |
Embrapa Arroz e Feijão. |
Data corrente: |
26/03/2019 |
Data da última atualização: |
20/04/2020 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
RUMPEL, C.; AMIRASLANI, F.; CHENU, C.; GARCIA CARDENAS, M.; KAONGA, M.; KOUTIKA, L-S.; LADHA, J.; MADARI, B.; SHIRATO, Y.; SMITH, P.; SOUDI, B.; SOUSSANA, J-F.; WHITEHEAD, D.; WOLLENBERG, E. |
Afiliação: |
CORNELIA RUMPEL; FARSHAD AMIRASLANI; CLAIRE CHENU; MAGALI GARCIA CARDENAS; MARTIN KAONGA; LYDIE-STELLA KOUTIKA; JAGDISH LADHA; BEATA EMOKE MADARI, CNPAF; YASUHITO SHIRATO; PETE SMITH; BRAHIM SOUDI; JEAN-FRANÇOIS SOUSSANA; DAVID WHITEHEAD; EVA WOLLENBERG. |
Título: |
The 4p1000 initiative: opportunities, limitations and challenges for implementing soil organic carbon sequestration as a sustainable development strategy. |
Ano de publicação: |
2020 |
Fonte/Imprenta: |
Ambio, v. 49, n. 1, p. 350-360, Jan. 2020. |
ISSN: |
1654-7209 |
DOI: |
10.1007/s13280-019-01165-2 |
Idioma: |
Inglês |
Conteúdo: |
Climate change adaptation, mitigation and foodsecurity may be addressed at the same time by enhancing soil organic carbon (SOC) sequestration through environmentally sound land management practices. This is promoted by the "4 per 1000" Initiative, a multi-stakeholder platform aiming at increasing SOC storage through sustainable practices. The scientific and technical committee of the Initiative is working to identifyindicators, research priorities and region-specific practices needed for their implementation. The Initiative received its name due to the global importance of soils for climate change, which can be illustrated by a thought experiment showing that an annual growth rate of only 0.4% of the standing global SOC stocks would have the potential to counter balance the current increase in atmospheric CO2. However, there are numerous barriers to the rise in SOC stocks and while SOC sequestration can contribute to partly offsetting greenhouse gas emissions, its main benefits are related to increased soil quality and climate change adaptation. The Initiative provides a collaborative platform for policy makers, practitioners, scientists and stakeholders to engage in finding solutions. Criticism of the Initiative has been related to the poor definition of its numerical target, which was not understood as an aspirational goal. The objective of this paper is to present the aims of the initiative, to discuss critical issues and to present challenges for its implementation. We identify barriers, risks and trade-offs and advocate for collaboration between multiple parties in order to stimulate innovationand to initiate the transition of agricultural systems toward sustainability. MenosClimate change adaptation, mitigation and foodsecurity may be addressed at the same time by enhancing soil organic carbon (SOC) sequestration through environmentally sound land management practices. This is promoted by the "4 per 1000" Initiative, a multi-stakeholder platform aiming at increasing SOC storage through sustainable practices. The scientific and technical committee of the Initiative is working to identifyindicators, research priorities and region-specific practices needed for their implementation. The Initiative received its name due to the global importance of soils for climate change, which can be illustrated by a thought experiment showing that an annual growth rate of only 0.4% of the standing global SOC stocks would have the potential to counter balance the current increase in atmospheric CO2. However, there are numerous barriers to the rise in SOC stocks and while SOC sequestration can contribute to partly offsetting greenhouse gas emissions, its main benefits are related to increased soil quality and climate change adaptation. The Initiative provides a collaborative platform for policy makers, practitioners, scientists and stakeholders to engage in finding solutions. Criticism of the Initiative has been related to the poor definition of its numerical target, which was not understood as an aspirational goal. The objective of this paper is to present the aims of the initiative, to discuss critical issues and to present challenges for its implementation. We i... Mostrar Tudo |
Thesagro: |
Carbono; Mudança Climática; Segurança Alimentar; Solo. |
Thesaurus NAL: |
Carbon sequestration; Climate change; Food security; Soil; Soil organic carbon. |
Categoria do assunto: |
P Recursos Naturais, Ciências Ambientais e da Terra |
Marc: |
LEADER 02865naa a2200409 a 4500 001 2107473 005 2020-04-20 008 2020 bl uuuu u00u1 u #d 022 $a1654-7209 024 7 $a10.1007/s13280-019-01165-2$2DOI 100 1 $aRUMPEL, C. 245 $aThe 4p1000 initiative$bopportunities, limitations and challenges for implementing soil organic carbon sequestration as a sustainable development strategy.$h[electronic resource] 260 $c2020 520 $aClimate change adaptation, mitigation and foodsecurity may be addressed at the same time by enhancing soil organic carbon (SOC) sequestration through environmentally sound land management practices. This is promoted by the "4 per 1000" Initiative, a multi-stakeholder platform aiming at increasing SOC storage through sustainable practices. The scientific and technical committee of the Initiative is working to identifyindicators, research priorities and region-specific practices needed for their implementation. The Initiative received its name due to the global importance of soils for climate change, which can be illustrated by a thought experiment showing that an annual growth rate of only 0.4% of the standing global SOC stocks would have the potential to counter balance the current increase in atmospheric CO2. However, there are numerous barriers to the rise in SOC stocks and while SOC sequestration can contribute to partly offsetting greenhouse gas emissions, its main benefits are related to increased soil quality and climate change adaptation. The Initiative provides a collaborative platform for policy makers, practitioners, scientists and stakeholders to engage in finding solutions. Criticism of the Initiative has been related to the poor definition of its numerical target, which was not understood as an aspirational goal. The objective of this paper is to present the aims of the initiative, to discuss critical issues and to present challenges for its implementation. We identify barriers, risks and trade-offs and advocate for collaboration between multiple parties in order to stimulate innovationand to initiate the transition of agricultural systems toward sustainability. 650 $aCarbon sequestration 650 $aClimate change 650 $aFood security 650 $aSoil 650 $aSoil organic carbon 650 $aCarbono 650 $aMudança Climática 650 $aSegurança Alimentar 650 $aSolo 700 1 $aAMIRASLANI, F. 700 1 $aCHENU, C. 700 1 $aGARCIA CARDENAS, M. 700 1 $aKAONGA, M. 700 1 $aKOUTIKA, L-S. 700 1 $aLADHA, J. 700 1 $aMADARI, B. 700 1 $aSHIRATO, Y. 700 1 $aSMITH, P. 700 1 $aSOUDI, B. 700 1 $aSOUSSANA, J-F. 700 1 $aWHITEHEAD, D. 700 1 $aWOLLENBERG, E. 773 $tAmbio$gv. 49, n. 1, p. 350-360, Jan. 2020.
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