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Registros recuperados : 50 | |
3. | | ROSADO, T. B.; LEAO, A. P.; SANTOS, R. F. dos; LAVIOLA, B. G.; GRATTAPAGLIA, D. Taxa de cruzamento em pinhão manso estimada por meio de marcadores RAPD. In: CONGRESSO DA REDE BRASILEIRA DE TECNOLOGIA DE BIODIESEL, 4.; CONGRESSO BRASILEIRO DE PLANTAS OLEAGINOSAS, ÓLEOS, GORDURAS E BIODIESEL, 7., 2010, Belo Horizonte. Biodiesel: inovação tecnológica e qualidade: anais. Lavras: UFLA, 2010. v. 1 p. 127-128. Biblioteca(s): Embrapa Agroenergia. |
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5. | | MARQUES, H. P.; SIQUEIRA, F. G. de; LEAO, A. P.; SOUZA JUNIOR, M. T. Otimização de métodos de extração de DNA genômico dos basidiomicetos Panus lecomtei CC40 e Pleurotus pulmonarius EF88. In: ENCONTRO DE PESQUISA E INOVAÇÃO DA EMBRAPA AGROENERGIA, 4.,2017, Brasília, DF. Anais... Brasília, DF: Embrapa, 2017. p. 33-38. Biblioteca(s): Embrapa Agroenergia. |
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7. | | MORAIS, P. B.; CAPDEVILLE, G. de; FARIAS, M. P.; SOUZA JUNIOR, M. T.; FALCÃO, R.; LEAO, A. P. Estudo do desenvolvimento meiótico de cromossomos em microsporócitos coletados de inflorencências de Elaeis oleifera subamostra coari. In: ENCONTRO DE PESQUISA E INOVAÇÃO DA EMBRAPA AGROENERGIA, 2., 2015, Brasília, DF. Anais ... Brasília, DF: Embrapa Agroenergia, 2015. p. 118-120 Biblioteca(s): Embrapa Agroenergia. |
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8. | | ALVES, A. A.; PEREIRA, V. M.; LEAO, A. P.; FORMIGHIERI, E. F.; CAPDEVILLE, G. de; SOUZA JUNIOR, M. T. Advancing palm genomics by developing a high-density battery of molecular markers for Elaeis oleifera for future downstream applications. In: CONGRESS OF THE BRAZILIAN OF BIOTECHNOLOGY, 5., 2013, Florianópolis, SC. Abstracts... Brasília, DF: Sociedade Brasileira de Biotecnologia, 2013. Biblioteca(s): Embrapa Agroenergia. |
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9. | | NASCIMENTO, M. S.; SOUZA, R. A. V.; CAMILLO, J.; LEAO, A. P.; LAVIOLA, B. G.; SOUZA JUNIOR, M. T. Enraizamento e aclimatização de plantas de pinhão-manso oriundas da organogenese a partir de discos cotiledonares. In: CONGRESSO BRASILEIRO DE PESQUISA EM PINHÃO-MANSO, 2., 2011, Brasília, DF. Pinhão-manso: focando em soluções sustentáveis para produção de biocombustíveis: anais. Brasília, DF: Embrapa Agroenergia: ABPPM, 2011. 1 CD-ROM. (Embrapa Agroenergia. Documentos, 005). Não paginado. Biblioteca(s): Embrapa Agroenergia. |
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11. | | ALVES, A. A.; FORMIGHIERI, E. F.; CAMILLO. J.; LEAO, A. P.; CAPDEVILLE, G. de; SOUZA JUNIOR, M. T. Revisiting an Unfinished Business: the Genome Content of Elaeis guineensis, E. oleifera and its Inter-specific Hybrid. In: INTERNATIONAL PLANT AND ANIMAL GENOME, 20., 2012, San Diego, USA. Anais... Wuerselen: Lemna Tec GmbH, 2012. Não paginado. Biblioteca(s): Embrapa Agroenergia. |
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12. | | NASCIMENTO, M. S.; SOUZA, R. A. V.; CAMILLO, J.; LEAO, A. P.; LAVIOLA, B. G.; SOUZA JUNIOR, M. T. Multiplicação de plantas de pinhão manso via organogênese a partir de discos cotiledonares. In: CONGRESSO BRASILEIRO DE PESQUISA EM PINHÃO-MANSO, 2., 2011, Brasília, DF. Pinhão-manso: focando em soluções sustentáveis para produção de biocombustíveis: anais. Brasília, DF: Embrapa Agroenergia: ABPPM, 2011. 1 CD-ROM. (Embrapa Agroenergia. Documentos, 005). Não paginado. Biblioteca(s): Embrapa Agroenergia. |
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14. | | FERREIRA, T. M. M.; FERREIRA FILHO, J. A.; LEAO, A. P.; SOUSA, C. A. F. de; SOUZA JUNIOR, M. T. Structural and functional analysis of stress-resonsive genes and their selected promoters from young oil palm (ELAEIS GUINEENSIS) under two abiotic stresses. In: BRAZILIAN CONGRESS OF GENETICS, 67., 2022, Natal, RN. Porto Alegre: Sociedade Brasileira de Genética, 2022. p. 320 Biblioteca(s): Embrapa Agroenergia. |
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16. | | SOUZA JUNIOR, M. T.; CAPDEVILLE, G. de; FORMIGHIERI, E. F.; CAMILLO, J.; ALVES, A. A.; LEAO, A. P. Whole Genome Sequencing of the E. oleifera South-American Wild Oil Palm. In: INTERNATIONAL PLANT AND ANIMAL GENOME, 20., 2012, San Diego, USA. Anais... Wuerselen: Lemna Tec GmbH, 2012. Biblioteca(s): Embrapa Agroenergia. |
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17. | | SALGADO, F. F.; LEAO, A. P.; GRYNBERG, P.; COSTA, M. M. do C.; TOGAWA, R. C.; SOUSA, C. A. F. de; SOUZA JUNIOR, M. T. Prediction and annotation of miRNAs and the preponderant role of transcription factors in the response of Elaeis guineensis Jacq to abiotic stresses of drought and salinity. In: BRAZILIAN SYMPOSIUM ON BIOINFOMATICS (BSB 2023), 16., 2023, Curitiba, PR. [Proceedings...]. Porto Alegre, RS: Sociedade Brasileira de Computação, 2023. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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18. | | ALVES, A. A.; FORMIGHIERI, E. F.; LEAO, A. P.; LOBO, F. P.; RIOS, S. A.; CAPDEVILLE, G. de; SOUZA JUNIOR, M. T. Exploring American Oil Palm (Elaeis oleifera) genetic resources in Brazil through a combination of genetic and genomic approaches. In: PLANT & ANIMAL GENOME CONFERENCE, 22., 2014, San Diego, CA. [Abstracts]. San Diego: [s.n.], 2014. Não paginado. Pôster W551. Biblioteca(s): Embrapa Agricultura Digital; Embrapa Agroenergia. |
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19. | | FARIAS, M. P.; VARGAS, L. H. G.; LEAO, A. P.; FORMIGHIERI, E. F.; ALVES, A. A.; CAPDEVILLE, G. de; SOUZA JUNIOR, M. T. Determinação de estádios meióticos em elaeis oleifera (kunth) cortés. In: WORKSHOP AGROENERGIA, 6., 2012, Ribeirão Preto, SP. Anais... Ribeirão Preto: APTA; Campinas: IAC, 2012. Não paginado Biblioteca(s): Embrapa Agroenergia. |
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Registros recuperados : 50 | |
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Registro Completo
Biblioteca(s): |
Embrapa Agroenergia. |
Data corrente: |
03/11/2022 |
Data da última atualização: |
03/11/2022 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 4 |
Autoria: |
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. |
Afiliação: |
ANDRE PEREIRA LEAO, CNPAE; CLEITON BARROSO BITTENCOURT, Universidade Federal de Lavras; THALLITON LUIZ CARVALHO DA SILVA, Universidade Federal de Lavras; JORGE CÂNDIDO RODRIGUES NETO; ÍTALO DE OLIVEIRA BRAGA, Universidade Federal de Lavras; LETÍCIA RIOS VIEIRA, Universidade Federal de Lavras; JOSE ANTONIO DE AQUINO RIBEIRO, CNPAE; CARLOS ANTONIO FERREIRA DE SOUSA, CPAMN; PATRICIA VERARDI ABDELNUR, CNPAE; MANOEL TEIXEIRA SOUZA JUNIOR, CNPAE. |
Título: |
Insights from a Multi-Omics Integration (MOI) Study in Oil Palm (Elaeis gineensis Jacq.) Response to Abiotic Stresses: Part Two - Drought. |
Ano de publicação: |
2022 |
Fonte/Imprenta: |
Plants, 11, n. 2786, 2022. |
DOI: |
https:// doi.org/10.3390/plants11202786 |
Idioma: |
Inglês |
Conteúdo: |
Drought and salinity are two of the most severe abiotic stresses affecting agriculture worldwide and bear some similarities regarding the responses of plants to them. The first is also known as osmotic stress and shows similarities mainly with the osmotic effect, the first phase of salinity stress. Multi-Omics Integration (MOI) offers a new opportunity for the non-trivial challenge of unraveling the mechanisms behind multigenic traits, such as drought and salinity resistance. The current study carried out a comprehensive, large-scale, single-omics analysis (SOA) and MOI studies on the leaves of young oil palm plants submitted to water deprivation. After performing SOA, 1955 DE enzymes from transcriptomics analysis, 131 DE enzymes from proteomics analysis, and 269 DE metabolites underwent MOI analysis, revealing several pathways affected by this stress, with at least one DE molecule in all three omics platforms used. Moreover, the similarities and dissimilarities in the molecular response of those plants to those two abiotic stresses underwent mapping. Cysteine and methionine metabolism (map00270) was the most affected pathway in all scenarios evaluated. The correlation analysis revealed that 91.55% of those enzymes expressed under both stresses had similar qualitative profiles, corroborating the already known fact that plant responses to drought and salinity show several similarities. At last, the results shed light on some candidate genes for engineering crop species resilient to both abiotic stresses. MenosDrought and salinity are two of the most severe abiotic stresses affecting agriculture worldwide and bear some similarities regarding the responses of plants to them. The first is also known as osmotic stress and shows similarities mainly with the osmotic effect, the first phase of salinity stress. Multi-Omics Integration (MOI) offers a new opportunity for the non-trivial challenge of unraveling the mechanisms behind multigenic traits, such as drought and salinity resistance. The current study carried out a comprehensive, large-scale, single-omics analysis (SOA) and MOI studies on the leaves of young oil palm plants submitted to water deprivation. After performing SOA, 1955 DE enzymes from transcriptomics analysis, 131 DE enzymes from proteomics analysis, and 269 DE metabolites underwent MOI analysis, revealing several pathways affected by this stress, with at least one DE molecule in all three omics platforms used. Moreover, the similarities and dissimilarities in the molecular response of those plants to those two abiotic stresses underwent mapping. Cysteine and methionine metabolism (map00270) was the most affected pathway in all scenarios evaluated. The correlation analysis revealed that 91.55% of those enzymes expressed under both stresses had similar qualitative profiles, corroborating the already known fact that plant responses to drought and salinity show several similarities. At last, the results shed light on some candidate genes for engineering crop species resili... Mostrar Tudo |
Palavras-Chave: |
African oil palm; Integratomics. |
Thesaurus NAL: |
Abiotic stress; Metabolomics; Proteomics; Transcriptomics. |
Categoria do assunto: |
-- |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/doc/1148001/1/Insights-from-a-multi-omics-integration-p.-2.pdf
|
Marc: |
LEADER 02490naa a2200313 a 4500 001 2148001 005 2022-11-03 008 2022 bl uuuu u00u1 u #d 024 7 $ahttps:// doi.org/10.3390/plants11202786$2DOI 100 1 $aLEAO, A. P. 245 $aInsights from a Multi-Omics Integration (MOI) Study in Oil Palm (Elaeis gineensis Jacq.) Response to Abiotic Stresses$bPart Two - Drought.$h[electronic resource] 260 $c2022 520 $aDrought and salinity are two of the most severe abiotic stresses affecting agriculture worldwide and bear some similarities regarding the responses of plants to them. The first is also known as osmotic stress and shows similarities mainly with the osmotic effect, the first phase of salinity stress. Multi-Omics Integration (MOI) offers a new opportunity for the non-trivial challenge of unraveling the mechanisms behind multigenic traits, such as drought and salinity resistance. The current study carried out a comprehensive, large-scale, single-omics analysis (SOA) and MOI studies on the leaves of young oil palm plants submitted to water deprivation. After performing SOA, 1955 DE enzymes from transcriptomics analysis, 131 DE enzymes from proteomics analysis, and 269 DE metabolites underwent MOI analysis, revealing several pathways affected by this stress, with at least one DE molecule in all three omics platforms used. Moreover, the similarities and dissimilarities in the molecular response of those plants to those two abiotic stresses underwent mapping. Cysteine and methionine metabolism (map00270) was the most affected pathway in all scenarios evaluated. The correlation analysis revealed that 91.55% of those enzymes expressed under both stresses had similar qualitative profiles, corroborating the already known fact that plant responses to drought and salinity show several similarities. At last, the results shed light on some candidate genes for engineering crop species resilient to both abiotic stresses. 650 $aAbiotic stress 650 $aMetabolomics 650 $aProteomics 650 $aTranscriptomics 653 $aAfrican oil palm 653 $aIntegratomics 700 1 $aBITTENCOURT, C. B. 700 1 $aSILVA, T. L. C. da 700 1 $aRODRIGUES NETO, J. C. 700 1 $aBRAGA, I. de O. 700 1 $aVIEIRA, L. R. 700 1 $aRIBEIRO, J. A. de A. 700 1 $aSOUSA, C. A. F. de 700 1 $aABDELNUR, P. V. 700 1 $aSOUZA JUNIOR, M. T. 773 $tPlants, 11$gn. 2786, 2022.
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