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Registros recuperados : 36 | |
1. | | MORGANTE, C. V.; ARRAES, F. B. M.; MOREIRA-PINTO, C. E; MELO, B. P.; SA, M. F. G. de. Modulation of gene expression in plants via CRISPR/dCas9 technology. 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. CAP. 4, 119-167 il., color. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia; Embrapa Semiárido. |
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2. | | MORGANTE, C. V.; ARRAES, F. B. M.; PINTO, C. E. M.; MELO, B. P. de; GROSSI-DE-SA, M. F. Modulação da expressão gênica em plantas via tecnologia CRISPR/dCas9. 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. 4, p. 125-177. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia; Embrapa Semiárido. |
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4. | | NORIEGA, D. D.; ARRAES, F. B. M.; ANTONINO, J. D.; MACEDO, L. L. P.; FONSECA, F. C. A.; TOGAWA, R. C.; GRYNBERG, P.; SILVA, M. C. M.; NEGRISOLI JUNIOR, A. S.; MORGANTE, C. V.; GROSSI-DE-SA, M. F. Comparative gut transcriptome analysis of Diatraea saccharalis in response to the dietary source. PLoS ONE, v. 15, n. 8, e0235575, 2020. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia; Embrapa Semiárido; Embrapa Tabuleiros Costeiros. |
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5. | | PEREIRA, B. M.; ARRAES, F.; MARTINS, A. C. Q.; ALVES, N. S. F.; MELO, B. P.; MORGANTE, C. V.; SARAIVA, M. A. P.; SA, M. F. G. de; GUIMARAES, P. M.; BRASILEIRO, A. C. M. A novel soybean hairy root system for gene functional validation. Plos One, v. 18, n. 5, e0285504, 2023. Na publicação: Maria Fátima Grossi-de-Sa; Patricia Messenberg Guimaraes. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia; Embrapa Semiárido. |
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6. | | SILVA, M. S.; ARRAES, F. B. M.; CAMPOS, M. de A.; GROSSI-DE-SA, M.; FERNANDEZ, D.; CÂNDIDO, E. de S.; CARDOSO, M. H.; FRANCO, O. L.; GROSSI-DE-SA, M. F. Review: potential biotechnological assets related to plant immunity modulation applicable in engineering disease-resistant crops. Plant Science, v. 270, p. 72-84, 2018. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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7. | | BEZERRA L. P. de A. F.; MELO, B. P. de; ARRAES, F. B. M.; MORGANTE, C. V.; LOURENCO, I. T.; DOMICIANO, G. P.; ANDRADE, R. V.; FONTES, E. P. B.; SÁ, M. F. G. de. Engenharia genética de precisão para tolerância à seca em soja e seu efeito na via de morte celular programada do retículo endoplasmático. In: SIMPÓSIO BRASILEIRO DE GENÉTICA MOLECULAR DE PLANTAS, 8, 2023, Florianópolis, SC. Anais... Florianópolis: SBG, 2023. p. 85. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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8. | | BEZERRA L. P. de A. F.; MELO, B. P. de; ARRAES, F. B. M.; MORGANTE, C. V.; LOURENCO, I. T.; DOMICIANO, G. P.; ANDRADE, R. V.; FONTES, E. P. B.; SÁ, M. F. G. de. Engenharia genética de precisão para tolerância à seca em soja e seu efeito na via de morte celular programada do retículo endoplasmático. In: SIMPÓSIO BRASILEIRO DE GENÉTICA MOLECULAR DE PLANTAS, 8, 2023, Florianópolis, SC. Anais... Florianópolis: SBG, 2023. p. 85. Biblioteca(s): Embrapa Semiárido. |
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9. | | ARRAES, F. B. M.; BENEVENTI, M. A.; SA, M. E. L. de; PAIXAO, J. F. R.; ALBUQUERQUE, E. V. S.; MARIN, S. R. R.; PURGATTO, E.; NEPOMUCENO, A. L.; GROSSI-DE-SA, M. F. Implications of ethylene biosynthesis and signaling in soybean drought stress tolerance. BMC Plant Biology, v. 15:213, 2015. (Open access). Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia; Embrapa Soja. |
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10. | | ARRAES, F. B. M.; ROCHA, S.; SÁ, D. M. de; FAHEEM, M.; MELO, B. P.; MORGANTE, C. V.; SOUZA JUNIOR, D.; NORIEGA, D.; SA, M. F. G. de; DANCHIN, E. G. In silico analysis reveal high variability in RNAi machinery of five different insect orders. In: BRAZILIAN BIOTECHNOLOGY CONGRESS, 7.; BIOTECHNOLOGY IBERO-AMERICAN CONGRESS, 2., 2018, Brasília, DF. Proceedings... Brasília, DF: SBBiotec, 2018. Biblioteca(s): Embrapa Semiárido. |
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11. | | NORIEGA, D. D.; ARRAES, F. B. M.; ANTONINO, J. D.; MACEDO, L. L. P.; FONSECA, F. C. A.; TOGAWA, R. C.; GRYNBERG, P.; SILVA, M. C. M.; NEGRISOLI JUNIOR, A. S.; GROSSI-DE-SA, M. F. Transcriptome analysis and knockdown of the juvenile hormone esterase gene reveal abnormal feeding behavior in the sugarcane giant borer. Frontiers in Physiology, v. 11, article 588450, 2020. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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12. | | NORIEGA, D. D.; ARRAES, F. B. M.; ANTONINO, J. D.; MACEDO, L. L. P. de; FONSECA, F. C. A.; TOGAWA, R. C.; GRYNBERG, P.; SILVA, M. C. M. da; NEGRISOLI JUNIOR, A. S.; SA, M. F. G. de. Transcriptome Analysis and Knockdown of the Juvenile Hormone Esterase Gene Reveal Abnormal Feeding Behavior in the Sugarcane Giant Borer. Frontiers in Physiology, v. 11, 588450, jul. 2020. Biblioteca(s): Embrapa Tabuleiros Costeiros. |
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13. | | LISEI-DE-SÁ, M. E.; ARRAES, F. B. N.; BRITO, G. G.; BENEVENTI, M. A.; LOURENCO-TESSUTTI, I.; BASSO, A. M. M.; AMORIM, R. M. S.; SILVA, M. C. M.; FAHEEM, M.; OLIVEIRA, N. G.; MIZOI, J.; YAMAGUCHI-SHINOZAKI, K.; GROSSI-DE-SA, M. F. AtDREB2A-CA influences root architecture and increases drought tolerance in transgenic cotton. Agricultural Sciences, v. 8, p. 1195-1225, 2017. Biblioteca(s): Embrapa Clima Temperado; Embrapa Recursos Genéticos e Biotecnologia. |
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14. | | RIBEIRO, D. G.; MOTA, A. P. Z.; SANTOS, I. R.; ARRAES. F. B. M.; GRYNBERG, P.; FONTES, W.; CASTRO, M. de S.; SOUSA, M. V. de; LISEI-DE-SÁ, M. E.; SA, M. F. G. de; FRANCO, O. L.; REIS, A. M. dos. NBS-LRR-WRKY genes and protease inhibitors (PIs) seem essential for cowpea resistance to root-knot nematode. Journal of Proteomics, v. 261, 2022. 104575. Na publicação: Maria Fatima Grossi-de-Sá; Angela Mehta. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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15. | | MOREIRA, V. J. V.; LOURENCO, I. T.; BASSO, M. F.; LISEI-DE-SA, M. E.; MORGANTE, C. V.; PAES-DE-MELO, B.; ARRAES, F. B. M.; MARTINS-DE-SA, D.; SILVA, M. C. M. da; ENGLER, J. de A.; SA, M. F. G. de. Minc03328 effector gene downregulation severely affects Meloidogyne incognita parasitism in transgenic Arabidopsis thaliana. Planta, v. 255,44, 2022. Na publicação: Isabela Tristan Lourenço-Tessutti; Maria Cristina Mattar Silva; Maria Fatima Grossi-de-Sa. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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16. | | MOREIRA, V. J. V; LOURENCO, I. T.; BASSO, M. F.; SÁ. M. E. L. de; MORGANTE, C. V.; MELO, B. P.; ARRAES, F. B. M.; SÁ, D. M. de; SILVA, M. C. M. da; ENGLER, J. de A.; SA, M. F. G. de. Minc03328 effector gene down regulation severely affects Meloidogyne incognita parasitism in transgenic Arabidopsis thaliana. Planta, v. 255, n. 2, 2022. Biblioteca(s): Embrapa Semiárido. |
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17. | | MOURA, S. M. de; FREITAS, E. O.; RIBEIRO, T. P.; PAES-DE-MELO, B.; ARRAES, F. B. M.; MACEDO, L. L. P. de; PAIXÃO, J. F. R.; LOURENCO, I. T.; ARTICO, S.; VALENÇA, D. da C.; SILVA, M. C. M. da; OLIVEIRA, A. C. de; MARCIO ALVES-FERREIRA, M.; SA, M. F. G. de. Discovery and functional characterization of novel cotton promoters with potential application to pest control. Plant Cell Reports, v. 41, p. 1589-1601, 2022. Na publicação: Leonardo Lima Pepino Macedo; Isabela T. Lourenço-Tessutti; Maria Cristina Mattar Silva; Maria Fatima Grossi-de-Sa. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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18. | | ARRAES, F. B. M.; MARTINS-DE-SA, D; VASQUEZ, D. D. N.; MELO, B. P.; FAHEEM, M.; MACEDO, L. L. P. de; MORGANTE, C. V.; BARBOSA, J. A. R. G.; TOGAWA, R. C.; MOREIRA, V. J. V.; DANCHIN, E. G. J.; SA, M. F. G. de. Dissecting protein domain variability in the core rna interference machinery of five insect orders. RNA Biology, v. 18, n. 11, p. 1653-1681, 2021. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia; Embrapa Semiárido. |
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19. | | FIRMINO, A. A. P.; PINHEIRO, D. H.; MOREIRA-PINTO, C. E.; ANTONINO, J. D.; MACEDO, L. L. P.; MARTINS-DE-SA, D.; ARRAES, F. B. M.; COELHO, R. R.; FONSECA, F. C. de A.; SILVA, M. C. M.; ENGLER, J. de A.; SILVA, M. S.; LOURENÇO-TESSUTTI, I. T.; TERRA, W. R.; GROSSI-DE-SA, M. F. RNAi-mediated suppression of Laccase2 impairs cuticle tanning and molting in the cotton boll weevil (Anthonomus grandis). Frontiers in Physiology, v. 11, article 591569, 2020. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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20. | | COSTA, L. S. de L.; ALVES, N. S. de F.; PINTO, C. E. M.; FLORENTINO, L. H.; MELO, B. P. de; MOREIRA, V. J. V.; SÁ, M. E. L. de; ARRAES, F. B. M.; RECH FILHO, E. L.; MORGANTE, C. V.; SA, M. F. G. de. Depleção do quadro de leitura upstream como nova estratégia para manipular a tradução de gmpr10 usando crispr/cas9 para aumentar a tolerância da soja a fitonematoides. In: SIMPÓSIO BRASILEIRO DE GENÉTICA MOLECULAR DE PLANTAS, 8, 2023, Florianópolis, SC. Anais... Florianópolis: SBG, 2023. p. 131. Biblioteca(s): Embrapa Recursos Genéticos e Biotecnologia. |
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Registros recuperados : 36 | |
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Registro Completo
Biblioteca(s): |
Embrapa Recursos Genéticos e Biotecnologia; Embrapa Semiárido; Embrapa Tabuleiros Costeiros. |
Data corrente: |
04/09/2020 |
Data da última atualização: |
27/12/2020 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Circulação/Nível: |
A - 1 |
Autoria: |
NORIEGA, D. D.; ARRAES, F. B. M.; ANTONINO, J. D.; MACEDO, L. L. P.; FONSECA, F. C. A.; TOGAWA, R. C.; GRYNBERG, P.; SILVA, M. C. M.; NEGRISOLI JUNIOR, A. S.; MORGANTE, C. V.; GROSSI-DE-SA, M. F. |
Afiliação: |
DANIEL D. NORIEGA, UNB; FABRICIO B. M. ARRAES, UFRGS; JOSÉ DIJAIR ANTONINO, UFRPE; LEONARDO LIMA PEPINO DE MACEDO, Cenargen; FERNANDO C. A. FONSECA, UNB; ROBERTO COITI TOGAWA, Cenargen; PRISCILA GRYNBERG, Cenargen; MARIA CRISTINA MATTAR DA SILVA, Cenargen; ALDOMARIO SANTO NEGRISOLI JUNIOR, CPATC; CAROLINA VIANNA MORGANTE, CPATSA; MARIA FATIMA GROSSI DE SA, Cenargen. |
Título: |
Comparative gut transcriptome analysis of Diatraea saccharalis in response to the dietary source. |
Ano de publicação: |
2020 |
Fonte/Imprenta: |
PLoS ONE, v. 15, n. 8, e0235575, 2020. |
DOI: |
https://doi.org/10.1371/journal.pone.0235575 |
Idioma: |
Inglês |
Conteúdo: |
The sugarcane borer (Diatraea saccharalis, Fabricius, 1794) is a devastating pest that causes millions of dollars of losses each year to sugarcane producers by reducing sugar and ethanol yields. The control of this pest is difficult due to its endophytic behavior and rapid development. Pest management through biotechnological approaches has emerged in recent years as an alternative to currently applied methods. Genetic information about the target pests is often required to perform biotechnology-based management. The genomic and transcriptomic data for D. saccharalis are very limited. Herein, we report a tissue-specific transcriptome of D. saccharalis larvae and a differential expression analysis highlighting the physiological characteristics of this pest in response to two different diets: sugarcane and an artificial diet. Sequencing was performed on the Illumina HiSeq 2000 platform, and a de novo assembly was generated. A total of 27,626 protein-coding unigenes were identified, among which 1,934 sequences were differentially expressed between treatments. Processes such as defence, igestion, detoxification, signaling, and transport were highly represented among the differentially expressed genes (DEGs). Furthermore, seven aminopeptidase genes were identified as candidates to encode receptors of Cry proteins, which are toxins of Bacillus thuringiensis used to control lepidopteran pests. Since plantinsect interactions have produced a considerable number of adaptive responses in hosts and herbivorous insects, the success of phytophagous insects relies on their ability to overcome challenges such as the response to plant defences and the intake of nutrients. In this study, we identified metabolic pathways and specific genes involved in these processes. Thus, our data strongly contribute to the knowledge advancement of insect transcripts, which can be a source of target genes for pest management MenosThe sugarcane borer (Diatraea saccharalis, Fabricius, 1794) is a devastating pest that causes millions of dollars of losses each year to sugarcane producers by reducing sugar and ethanol yields. The control of this pest is difficult due to its endophytic behavior and rapid development. Pest management through biotechnological approaches has emerged in recent years as an alternative to currently applied methods. Genetic information about the target pests is often required to perform biotechnology-based management. The genomic and transcriptomic data for D. saccharalis are very limited. Herein, we report a tissue-specific transcriptome of D. saccharalis larvae and a differential expression analysis highlighting the physiological characteristics of this pest in response to two different diets: sugarcane and an artificial diet. Sequencing was performed on the Illumina HiSeq 2000 platform, and a de novo assembly was generated. A total of 27,626 protein-coding unigenes were identified, among which 1,934 sequences were differentially expressed between treatments. Processes such as defence, igestion, detoxification, signaling, and transport were highly represented among the differentially expressed genes (DEGs). Furthermore, seven aminopeptidase genes were identified as candidates to encode receptors of Cry proteins, which are toxins of Bacillus thuringiensis used to control lepidopteran pests. Since plantinsect interactions have produced a considerable number of adaptive responses... Mostrar Tudo |
Palavras-Chave: |
Controle biotecnológico; Controle de praga; D saccharalis; Genetic Aspects; Manejo da praga; Physiological Aspects. |
Thesagro: |
Biotecnologia; Cana de Açúcar; Diatraea Saccharalis; Dieta; Doença; Praga. |
Thesaurus NAL: |
Biotechnology; Genomics; Pest control; Pest management; Sugarcane; Transcription factors. |
Categoria do assunto: |
-- O Insetos e Entomologia |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/item/215768/1/journal.pone.0235575.pdf
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Marc: |
LEADER 03260naa a2200469 a 4500 001 2128710 005 2020-12-27 008 2020 bl uuuu u00u1 u #d 024 7 $ahttps://doi.org/10.1371/journal.pone.0235575$2DOI 100 1 $aNORIEGA, D. D. 245 $aComparative gut transcriptome analysis of Diatraea saccharalis in response to the dietary source.$h[electronic resource] 260 $c2020 520 $aThe sugarcane borer (Diatraea saccharalis, Fabricius, 1794) is a devastating pest that causes millions of dollars of losses each year to sugarcane producers by reducing sugar and ethanol yields. The control of this pest is difficult due to its endophytic behavior and rapid development. Pest management through biotechnological approaches has emerged in recent years as an alternative to currently applied methods. Genetic information about the target pests is often required to perform biotechnology-based management. The genomic and transcriptomic data for D. saccharalis are very limited. Herein, we report a tissue-specific transcriptome of D. saccharalis larvae and a differential expression analysis highlighting the physiological characteristics of this pest in response to two different diets: sugarcane and an artificial diet. Sequencing was performed on the Illumina HiSeq 2000 platform, and a de novo assembly was generated. A total of 27,626 protein-coding unigenes were identified, among which 1,934 sequences were differentially expressed between treatments. Processes such as defence, igestion, detoxification, signaling, and transport were highly represented among the differentially expressed genes (DEGs). Furthermore, seven aminopeptidase genes were identified as candidates to encode receptors of Cry proteins, which are toxins of Bacillus thuringiensis used to control lepidopteran pests. Since plantinsect interactions have produced a considerable number of adaptive responses in hosts and herbivorous insects, the success of phytophagous insects relies on their ability to overcome challenges such as the response to plant defences and the intake of nutrients. In this study, we identified metabolic pathways and specific genes involved in these processes. Thus, our data strongly contribute to the knowledge advancement of insect transcripts, which can be a source of target genes for pest management 650 $aBiotechnology 650 $aGenomics 650 $aPest control 650 $aPest management 650 $aSugarcane 650 $aTranscription factors 650 $aBiotecnologia 650 $aCana de Açúcar 650 $aDiatraea Saccharalis 650 $aDieta 650 $aDoença 650 $aPraga 653 $aControle biotecnológico 653 $aControle de praga 653 $aD saccharalis 653 $aGenetic Aspects 653 $aManejo da praga 653 $aPhysiological Aspects 700 1 $aARRAES, F. B. M. 700 1 $aANTONINO, J. D. 700 1 $aMACEDO, L. L. P. 700 1 $aFONSECA, F. C. A. 700 1 $aTOGAWA, R. C. 700 1 $aGRYNBERG, P. 700 1 $aSILVA, M. C. M. 700 1 $aNEGRISOLI JUNIOR, A. S. 700 1 $aMORGANTE, C. V. 700 1 $aGROSSI-DE-SA, M. F. 773 $tPLoS ONE$gv. 15, n. 8, e0235575, 2020.
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Embrapa Tabuleiros Costeiros (CPATC) |
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