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Registros recuperados : 54 | |
21. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | GERHARDT, I. R.; LEITE, A.; PAES, N.; ROMANO, E.; AZEVEDO, M.; BLOCH JUNIOR, C.; GROSSI de SA, M. F. Isolation and partial characterization of a genomic clone of arcelin-5 protein. In: ENCUENTRO LATINO AMERICANO DE BIOTECNOLOGIA VEGETAL, 2., 1995, Puerto Iguazu, Argentina. REDBIO95. [S.l.: s.n.], 1995. n.D-11. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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22. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | SANTOS, P. E. T. dos; PALUDZYSZYN FILHO, E.; SCHUHLI, G. S. e; GERHARDT, I. R.; OLIVEIRA, V. R. de. Genetic improvement of eucalyptes for the development of cultivars intended for multiple wood uses and populations with the potential to overcome possible adversities caused by climate change. In: SOTTA, E. D.; SAMPAIO, F. G.; MARZALL, K.; SILVA, W . G. da (ed). Adapting to climate change: strategies for Brazilian agricultural and livestock systems. Brasília, DF: MAPA, 2021. p. 48-49. Biblioteca(s): Embrapa Agricultura Digital; Embrapa Florestas. |
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23. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | SANTOS, P. E. T. dos; PALUDZYSZYN FILHO, E.; SCHUHLI, G. S. e; GERHARDT, I. R.; OLIVEIRA, V. R. de. Melhoramento genético de eucaliptos para desenvolvimento de cultivares destinadas a múltiplos usos da madeira e de populações com potencial para superar possíveis adversidades ocasionadas por mudanças climáticas. In: SOTTA, E. D.; SAMPAIO, F. G.; MARZALL, K.; SILVA, W. G. da (org.). Estratégias de adaptação às mudanças do clima dos sistemas agropecuários brasileiros. Brasília, DF: MAPA, 2021. p. 48-49. Biblioteca(s): Embrapa Agricultura Digital; Embrapa Florestas; Embrapa Semiárido. |
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25. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | PEREIRA, H. D.; RODRIGUES, T. de S.; DANTE, R. A.; GERHARDT, I. R.; YASSITEPE, J. E. de C. T. Searching natural variation for water stress response in maize. In: CONGRESSO BRASILEIRO DE MELHORAMENTO DE PLANTAS, 12., 2023, Caxambu, MG. Anais [...]. Piracicaba: Sociedade Brasileira de Melhoramento de Plantas, 2023. Na publicação: Juliana Erika Yassitepe. Biblioteca(s): Embrapa Agricultura Digital. |
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27. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | GERHARDT, I. R.; DANTE, R. A.; RIAÑO PACHÓN, D. M.; CANESIN, L. E. C.; OLIVEIRA, R. S.; ARRUDA, P. Sequencing of Vellozia Spp. genomes to understand drought tolerance and phosphorus acquisition in angiosperms. In: PLANT AND ANIMAL GENOME CONFERENCE, 27., 2019, San Diego. Abstracts... [S.l.: s.n.], 2019. PE1164. PAG 2019. Biblioteca(s): Embrapa Agricultura Digital. |
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28. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | FERREIRA, P.; PAES, N. S.; SOUZA, C. R. B.; GERHARDT, I. R.; COUTINHO, M. V.; MELLO, L. V.; SOUSA, M. V.; GROSSI DE SA, M. F. Arcelin 5 protein: purification, analysis, developing seeds study and imunocytolocalization. In: REUNIAO ANUAL DA SOCIEDADE BRASILEIRA DE BIOQUIMICA E BIOLOGIA MOLECULAR, 23., 1994, Caxambu, MG. Programa e resumos. Caxambu: Sociedade Brasileira de Bioquimica e Biologia Molecular, 1994. p.49. E-39. p.49 Resumo. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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29. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | BETTENCOURT, G. M. de F.; SOCCOL, C. R.; GIOVANELLA, T. S.; FRANCISCON, L.; KESTRING, D. R.; GERHARDT, I. R.; DEGENHARDT-GOLDBACH, J. Agrobacterium tumefaciens-mediated transformation of Eucalyptus urophylla clone BRS07-01. Journal of Forestry Research, v. 31, n. 2, p. 507-519, Apr. 2020. Biblioteca(s): Embrapa Agricultura Digital; Embrapa Florestas. |
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30. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | LOPES FILHO, J. H.; SILVA, V. C. H. da; SANTOS, J. C. dos; DANTE, R. A.; GERHARDT, I. R.; YASSITEPE, J. E. de C. T.; FERNANDES, F. R. Introdução à edição genômica em plantas: desafios da agricultura moderna para o presente e o futuro. In: MOLINARI, H. B. C.; VIEIRA, L. R.; SILVA, N. V. e; PRADO, G. S.; LOPES FILHO, J. H. (Ed.). Tecnologia CRISPR na edição genômica de plantas: biotecnologia aplicada à agricultura. Brasília, DF: Embrapa, 2020. cap. 1, p. 11-48. Biblioteca(s): Embrapa Agricultura Digital. |
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31. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | LOPES FILHO, J. H.; SILVA, V. C. H. da; SANTOS, J. C. dos; DANTE, R. A.; GERHARDT, I. R.; YASSITEPE, J. E. de C. T.; FERNANDES, F. R. Introduction to genome editing in plants. In: MOLINARI, H. B. C.; VIEIRA, L. R.; SILVA, N. V. e; PRADO, G. S.; LOPES FILHO, J. F. (Ed.). CRISPR technology in plant genome editing: biotechnology applied to agriculture. Brasília, DF : Embrapa, 2021. chap. 1, p. 11-46. Biblioteca(s): Embrapa Agricultura Digital. |
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32. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | HERNANDES-LOPES, J.; YASSITEPE, J. E. de C. T.; KOLTUN, A.; PAUWELS, L.; SILVA, V. C. H. da; DANTE, R. A.; GERHARDT, I. R.; ARRUDA, P. Genome editing in maize: toward improving complex traits in a global crop. Genetics and Molecular Biology, v. 46, n. 1, e20220217, 2023. Suplemento 1. Biblioteca(s): Embrapa Agricultura Digital. |
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34. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | GERHARDT, I. R.; PAES, N. S.; BLOCH JUNIOR, C.; MENDES, P. A.; LEITE, A.; CHRISPEE, LS, M. J.; SA, M. F. G. de. Molecular characterization of a new arcelin-5 gene. In: REUNIAO ANUAL DA SOCIEDADE BRASILEIRA DE BIOQUIMICA E BIOLOGIA MOLECULAR, 28., 1999, Caxambu, MG. Programa e resumos. Caxambu: Sociedade Brasileira de Bioquimica e Biologia Molecular, 1999. p.39-E-87. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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35. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | NEPOMUCENO, A. L.; GERHARDT, I. R.; CAMARGO, L. S. A.; DANTE, R. A.; RECH, E. R.; MOLINARI, H. B. C.; BRASILEIRO, A. C. M.; ANDRADE, E. C. Novas tecnologias de melhoramento genético. Informativo ABRATES, Londrina, v. 27, n.2, ago. 2017. Número especial. Edição dos Resumos do XX Congresso Brasileiro de Sementes, Foz do Iguaçu, 2017. p. 27. Biblioteca(s): Embrapa Soja. |
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36. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | GERHARDT, I. R.; GIACHETTO, P. F.; YAMAGISHI, M. E. B.; LOBO, F.; PENCHEL, R. M.; MISSIAGGIA, A. A.; ZERLOTINI, A.; SILVA, F. R. da. RNA-seq analysis of Eucalyptus genotypes that differ in carbon allocation. In: ANNUAL INTERNATIONAL CONFERENCE ON INTELLIGENT SYSTEMS FOR MOLECULAR BIOLOGY; STRUCTURAL BIOINFORMATICS AND COMPUTATIONAL BIOPHYSICS CONFERENCE MEETING, 8., 2012, Long Beach, California. Abstracts... [S.l.: s.n.], 2012. Não paginado. 1 Poster. ISMB 2012. Poster G19. Também publicado em: ANNUAL INTERNATIONAL CONFERENCE ON INTELLIGENT SYSTEMS FOR MOLECULAR BIOLOGY, 21.; EUROPEAN CONFERENCE ON COMPUTATIONAL BIOLOGY, 12., 2013, Berlin. Posters... Berlin: ISCB, 2013. Não paginado.... Biblioteca(s): Embrapa Agricultura Digital. |
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37. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | GERHARDT, I. R.; GIACHETTO, P. F.; YAMAGISHI, M. E. B.; LOBO, F. P.; PENCHEL, R. M.; MISSIAGGIA, A. A.; ZERLOTINI, A.; SILVA, F. R. da. RNA-seq analysis of Eucalyptus genotypes that differ in carbon allocation. In: ANNUAL INTERNATIONAL CONFERENCE ON INTELLIGENT SYSTEMS FOR MOLECULAR BIOLOGY; STRUCTURAL BIOINFORMATICS AND COMPUTATIONAL BIOPHYSICS CONFERENCE MEETING, 8., 2012, Long Beach, California. Abstracts. 1 Pôster. Poster G19. Biblioteca(s): Embrapa Agricultura Digital; Embrapa Florestas. |
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38. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | GERHARDT, I. R.; GIACHETTO, P. F.; YAMAGISHI, M. E. B.; LOBO, F. P.; PENCHEL, R. M.; MISSIAGGIA, A. A.; ZERTOLINI, A.; SILVA, F. R. da. RNA-Seq Analysis of Eucalyptus Genotypes that Differ in Carbon Allocation. In: INTERNATIONAL CONFERENCE OF THE BRAZILIAN ASSOCIATION FOR BIOINFORMATICS AND COMPUTATIONAL BIOLOGY, 8., 2012, Campinas. Abstract book. [S.l.: s.n.], 2012. Biblioteca(s): Embrapa Florestas. |
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39. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | CAMARGO, A. P.; SOUZA, R. S. C. de; JOSE, J.; GERHARDT, I. R.; DANTE, R. A.; MUKHERJEE, S.; HUNTEMANN, M.; KYRPIDES, N. C.; CARAZZOLLE, M. F.; ARRUDA, P. Plant microbiomes harbor potential to promote nutrient turnover in impoverished substrates of a Brazilian biodiversity hotspot. The ISME Journal, v. 17, n. 3, p. 354-370, Mar. 2023. Biblioteca(s): Embrapa Agricultura Digital. |
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40. | ![Imagem marcado/desmarcado](/consulta/web/img/desmarcado.png) | PAES, N. S.; FERREIRA, P.; SOUZA, C. R. B.; GERHARDT, I. R.; VENTURA, M.; MELLO, L. V.; SOUSA, M. V.; SA, M. F. G. de. Purification and analysis of arcelin 5 protein from wild bean. In: ENCONTRO BRASILEIRO DE BIOTECNOLOGIA VEGETAL, l.,1993, Brasilia. Programas e resumos. Brasilia: EMBRAPA-CENARGEN, 1993. Poster 032. Resumo Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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Registros recuperados : 54 | |
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Registro Completo
Biblioteca(s): |
Embrapa Agricultura Digital. |
Data corrente: |
24/01/2023 |
Data da última atualização: |
14/03/2023 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
CAMARGO, A. P.; SOUZA, R. S. C. de; JOSE, J.; GERHARDT, I. R.; DANTE, R. A.; MUKHERJEE, S.; HUNTEMANN, M.; KYRPIDES, N. C.; CARAZZOLLE, M. F.; ARRUDA, P. |
Afiliação: |
ANTONIO P. CAMARGO, UNIVERSIDADE ESTADUAL DE CAMPINAS; RAFAEL S. C. DE SOUZA, UNIVERSIDADE ESTADUAL DE CAMPINAS, SYMBIOMICS MICROBIOME SOLUTIONS; JULIANA JOSE, UNIVERSIDADE ESTADUAL DE CAMPINAS; ISABEL RODRIGUES GERHARDT, CNPTIA; RICARDO AUGUSTO DANTE, CNPTIA; SUPRATIM MUKHERJEE, DEPARTMENT OF ENERGY JOINT GENOME INSTITUTE; MARCEL HUNTEMANN, DEPARTMENT OF ENERGY JOINT GENOME INSTITUTE; NIKOS C. KYRPIDES, DEPARTMENT OF ENERGY JOINT GENOME INSTITUTE; MARCELO F. CARAZZOLLE, UNIVERSIDADE ESTADUAL DE CAMPINAS; PAULO ARRUDA, UNIVERSIDADE ESTADUAL DE CAMPINAS. |
Título: |
Plant microbiomes harbor potential to promote nutrient turnover in impoverished substrates of a Brazilian biodiversity hotspot. |
Ano de publicação: |
2023 |
Fonte/Imprenta: |
The ISME Journal, v. 17, n. 3, p. 354-370, Mar. 2023. |
DOI: |
https://doi.org/10.1038/s41396-022-01345-1 |
Idioma: |
Inglês |
Conteúdo: |
The substrates of the Brazilian campos rupestres, a grassland ecosystem, have extremely low concentrations of phosphorus and nitrogen, imposing restrictions to plant growth. Despite that, this ecosystem harbors almost 15% of the Brazilian plant diversity, raising the question of how plants acquire nutrients in such a harsh environment. Here, we set out to uncover the taxonomic profile, the compositional and functional differences and similarities, and the nutrient turnover potential of microbial communities associated with two plant species of the campos rupestres-dominant family Velloziaceae that grow over distinct substrates (soil and rock). Using amplicon sequencing data, we show that, despite the pronounced composition differentiation, the plant-associated soil and rock communities share a core of highly efficient colonizers that tend to be highly abundant and is enriched in 21 bacterial families. Functional investigation of metagenomes and 522 metagenome-assembled genomes revealed that the microorganisms found associated to plant roots are enriched in genes involved in organic compound intake, and phosphorus and nitrogen turnover. We show that potential for phosphorus transport, mineralization, and solubilization are mostly found within bacterial families of the shared microbiome, such as Xanthobacteraceae and Bryobacteraceae. We also detected the full repertoire of nitrogen cycle-related genes and discovered a lineage of Isosphaeraceae that acquired nitrogen-fixing potential via horizontal gene transfer and might be also involved in nitrification via a metabolic handoff association with Binataceae. We highlight that plant-associated microbial populations in the campos rupestres harbor a genetic repertoire with potential to increase nutrient availability and that the microbiomes of biodiversity hotspots can reveal novel mechanisms of nutrient turnover. MenosThe substrates of the Brazilian campos rupestres, a grassland ecosystem, have extremely low concentrations of phosphorus and nitrogen, imposing restrictions to plant growth. Despite that, this ecosystem harbors almost 15% of the Brazilian plant diversity, raising the question of how plants acquire nutrients in such a harsh environment. Here, we set out to uncover the taxonomic profile, the compositional and functional differences and similarities, and the nutrient turnover potential of microbial communities associated with two plant species of the campos rupestres-dominant family Velloziaceae that grow over distinct substrates (soil and rock). Using amplicon sequencing data, we show that, despite the pronounced composition differentiation, the plant-associated soil and rock communities share a core of highly efficient colonizers that tend to be highly abundant and is enriched in 21 bacterial families. Functional investigation of metagenomes and 522 metagenome-assembled genomes revealed that the microorganisms found associated to plant roots are enriched in genes involved in organic compound intake, and phosphorus and nitrogen turnover. We show that potential for phosphorus transport, mineralization, and solubilization are mostly found within bacterial families of the shared microbiome, such as Xanthobacteraceae and Bryobacteraceae. We also detected the full repertoire of nitrogen cycle-related genes and discovered a lineage of Isosphaeraceae that acquired nitrogen-fixing pot... Mostrar Tudo |
Palavras-Chave: |
Campos rupestres; Data sequencing; Ecossistema de pastagens; Microbioma vegetal; Plant microbiomes; Sequenciamento de dados; Soil microbes. |
Thesagro: |
Bactéria; Genoma; Nitrogênio. |
Thesaurus NAL: |
Genome; Nitrogen; Velloziaceae. |
Categoria do assunto: |
-- |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/doc/1151181/1/AP-Plant-microbiomes-2022.pdf
|
Marc: |
LEADER 03054naa a2200397 a 4500 001 2151181 005 2023-03-14 008 2023 bl uuuu u00u1 u #d 024 7 $ahttps://doi.org/10.1038/s41396-022-01345-1$2DOI 100 1 $aCAMARGO, A. P. 245 $aPlant microbiomes harbor potential to promote nutrient turnover in impoverished substrates of a Brazilian biodiversity hotspot.$h[electronic resource] 260 $c2023 520 $aThe substrates of the Brazilian campos rupestres, a grassland ecosystem, have extremely low concentrations of phosphorus and nitrogen, imposing restrictions to plant growth. Despite that, this ecosystem harbors almost 15% of the Brazilian plant diversity, raising the question of how plants acquire nutrients in such a harsh environment. Here, we set out to uncover the taxonomic profile, the compositional and functional differences and similarities, and the nutrient turnover potential of microbial communities associated with two plant species of the campos rupestres-dominant family Velloziaceae that grow over distinct substrates (soil and rock). Using amplicon sequencing data, we show that, despite the pronounced composition differentiation, the plant-associated soil and rock communities share a core of highly efficient colonizers that tend to be highly abundant and is enriched in 21 bacterial families. Functional investigation of metagenomes and 522 metagenome-assembled genomes revealed that the microorganisms found associated to plant roots are enriched in genes involved in organic compound intake, and phosphorus and nitrogen turnover. We show that potential for phosphorus transport, mineralization, and solubilization are mostly found within bacterial families of the shared microbiome, such as Xanthobacteraceae and Bryobacteraceae. We also detected the full repertoire of nitrogen cycle-related genes and discovered a lineage of Isosphaeraceae that acquired nitrogen-fixing potential via horizontal gene transfer and might be also involved in nitrification via a metabolic handoff association with Binataceae. We highlight that plant-associated microbial populations in the campos rupestres harbor a genetic repertoire with potential to increase nutrient availability and that the microbiomes of biodiversity hotspots can reveal novel mechanisms of nutrient turnover. 650 $aGenome 650 $aNitrogen 650 $aVelloziaceae 650 $aBactéria 650 $aGenoma 650 $aNitrogênio 653 $aCampos rupestres 653 $aData sequencing 653 $aEcossistema de pastagens 653 $aMicrobioma vegetal 653 $aPlant microbiomes 653 $aSequenciamento de dados 653 $aSoil microbes 700 1 $aSOUZA, R. S. C. de 700 1 $aJOSE, J. 700 1 $aGERHARDT, I. R. 700 1 $aDANTE, R. A. 700 1 $aMUKHERJEE, S. 700 1 $aHUNTEMANN, M. 700 1 $aKYRPIDES, N. C. 700 1 $aCARAZZOLLE, M. F. 700 1 $aARRUDA, P. 773 $tThe ISME Journal$gv. 17, n. 3, p. 354-370, Mar. 2023.
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