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Biblioteca(s): |
Embrapa Recursos Genéticos e Biotecnologia. |
Data corrente: |
14/11/2024 |
Data da última atualização: |
11/12/2024 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Autoria: |
CRUZ, F. P.; LOH, R. K. T. M.; ARCURI, M. L. C.; DEZAR, C.; ARGE, L. W. P.; FALCÃO, T.; ROMANEL, E.; MORGANTE, C. V.; CERQUEIRA, J. V. A.; RIBEIRO, T. P.; MOURA, S. M.; ARONGAUS, A. B.; ARANTES, I. L. G.; MATTA, B. P.; CORREA, R. L.; PINTO, E. R. de C.; SA, M. F. G. de; BARTELS, D.; CHAN, R. L.; ALVES-FERREIRA, M. |
Afiliação: |
FERNANDA P. CRUZ, UNIVERSIDADE FEDERAL DO RIO DE JANEIRO; ROBERTA K. T. M. LOH, UNIVERSIDADE FEDERAL DO RIO DE JANEIRO; MARIANA L. C. ARCURI; CARLOS DEZAR; LUIS W. P. ARGE, UNIVERSIDADE FEDERAL DO RIO DE JANEIRO; THAIS FALCÃO, UNIVERSIDADE DE SÃO PAULO (USP); ELISSON ROMANEL, UNIVERSIDADE DE SÃO PAULO (USP); CAROLINA VIANNA MORGANTE, CENARGEN; JOÃO V. A. CERQUEIRA; THUANNE P. RIBEIRO; STEFANIE M. MOURA; ADRIANA B. ARONGAUS, UNIVERSIDADE FEDERAL DO RIO DE JANEIRO; IGHOR L. G. ARANTES, FIOCRUZ; BRUNA P. MATTA, UNIVERSIDADE FEDERAL DO RIO DE JANEIRO; REGIS L. CORREA, UNIVERSIDADE FEDERAL DO RIO DE JANEIRO; EDUARDO ROMANO DE CAMPOS PINTO, CENARGEN; MARIA FATIMA GROSSI DE SA, CENARGEN; DOROTHEA BARTELS, RHEINISCHE FRIEDRICH-WILHELMS UNIVERSITÄT BONN; RAQUEL L. CHAN, UNIVERSIDAD NACIONAL DEL LITORAL; MÁRCIO ALVES-FERREIRA, UNIVERSIDADE FEDERAL DO RIO DE JANEIRO. |
Título: |
Heterologous expression of coffee HB12 confers tolerance to water deficit in transgenic plants through an ABA-independent route. |
Ano de publicação: |
2024 |
Fonte/Imprenta: |
Environmental and Experimental Botany, v. 228, 105983, 2024. |
DOI: |
https://doi.org/10.1016/j.envexpbot.2024.105983 |
Idioma: |
Inglês |
Notas: |
Na publicação: Eduardo Romano; Maria F Grossi-de-Sa. |
Conteúdo: |
Drought is one of the major abiotic stresses affecting plant growth, with serious negative consequences for crop yields worldwide. Among these crops, coffee is severely injured by water deficiency. Despite its economic importance, very little is known about the molecular mechanisms governing coffee responses to water deficit. In the present work, a total of 288 members of the homeobox (HB) gene family were identified in the genome of the Coffea Arabica Brazilian Coffee Genome Project database. In silico analysis allowed to determine the expression pattern of 33 HD genes. Among them, three genes (CaZHD4, CaHB1-like2 and CaHB12) were found to be up-regulated by osmotic stress in the database. Expression analyses revealed that CaHB12 is highly up-regulated in the leaves and lateral roots of Coffea arabica plants under moderate and severe water deficit conditions even after 10 days of drought induction. Functional characterization of transgenic Arabidopsis plants constitutively expressing CaHB12 resulted in increased tolerance to water deficit at different developmental stages and increased tolerance to salt stress during seed germination. To gain further insights into genes modulated by the ectopic expression of CaHB12, a RNA-Seq was performed revealing that classical drought-responsive genes were mostly repressed, suggesting that other mechanisms likely contribute to the tolerant phenotype exhibited by CaHB12-expressing plants, such as the pathway signalled by heat shock proteins, reactive oxygen species and heat shock transcription factor signalling pathways. Moreover, to provide further support for the involvement of CaHB12 in drought stress tolerance, three independent soybean transgenic lines overexpressing CaHB12 were employed in this study. Accordingly, at a physiological level, the constitutive expression of CaHB12 promotes the regulation of stomatal conductance and antioxidant activity under drought conditions, suggesting that this gene plays a key role in plant responses to water deprivation and can confer tolerance to drought stress. Our data suggest that CaHB12 is a positive regulator of the stress response in coffee plants and indicate that this gene is a potential candidate for biotechnological approaches. MenosDrought is one of the major abiotic stresses affecting plant growth, with serious negative consequences for crop yields worldwide. Among these crops, coffee is severely injured by water deficiency. Despite its economic importance, very little is known about the molecular mechanisms governing coffee responses to water deficit. In the present work, a total of 288 members of the homeobox (HB) gene family were identified in the genome of the Coffea Arabica Brazilian Coffee Genome Project database. In silico analysis allowed to determine the expression pattern of 33 HD genes. Among them, three genes (CaZHD4, CaHB1-like2 and CaHB12) were found to be up-regulated by osmotic stress in the database. Expression analyses revealed that CaHB12 is highly up-regulated in the leaves and lateral roots of Coffea arabica plants under moderate and severe water deficit conditions even after 10 days of drought induction. Functional characterization of transgenic Arabidopsis plants constitutively expressing CaHB12 resulted in increased tolerance to water deficit at different developmental stages and increased tolerance to salt stress during seed germination. To gain further insights into genes modulated by the ectopic expression of CaHB12, a RNA-Seq was performed revealing that classical drought-responsive genes were mostly repressed, suggesting that other mechanisms likely contribute to the tolerant phenotype exhibited by CaHB12-expressing plants, such as the pathway signalled by heat shock prote... Mostrar Tudo |
Palavras-Chave: |
Ectopic expression; HD-Zip. |
Thesaurus Nal: |
Drought tolerance; Heat shock proteins; Osmotic stress; Stomatal conductance. |
Categoria do assunto: |
-- |
Marc: |
LEADER 03615naa a2200445 a 4500 001 2169151 005 2024-12-11 008 2024 bl uuuu u00u1 u #d 024 7 $ahttps://doi.org/10.1016/j.envexpbot.2024.105983$2DOI 100 1 $aCRUZ, F. P. 245 $aHeterologous expression of coffee HB12 confers tolerance to water deficit in transgenic plants through an ABA-independent route.$h[electronic resource] 260 $c2024 500 $aNa publicação: Eduardo Romano; Maria F Grossi-de-Sa. 520 $aDrought is one of the major abiotic stresses affecting plant growth, with serious negative consequences for crop yields worldwide. Among these crops, coffee is severely injured by water deficiency. Despite its economic importance, very little is known about the molecular mechanisms governing coffee responses to water deficit. In the present work, a total of 288 members of the homeobox (HB) gene family were identified in the genome of the Coffea Arabica Brazilian Coffee Genome Project database. In silico analysis allowed to determine the expression pattern of 33 HD genes. Among them, three genes (CaZHD4, CaHB1-like2 and CaHB12) were found to be up-regulated by osmotic stress in the database. Expression analyses revealed that CaHB12 is highly up-regulated in the leaves and lateral roots of Coffea arabica plants under moderate and severe water deficit conditions even after 10 days of drought induction. Functional characterization of transgenic Arabidopsis plants constitutively expressing CaHB12 resulted in increased tolerance to water deficit at different developmental stages and increased tolerance to salt stress during seed germination. To gain further insights into genes modulated by the ectopic expression of CaHB12, a RNA-Seq was performed revealing that classical drought-responsive genes were mostly repressed, suggesting that other mechanisms likely contribute to the tolerant phenotype exhibited by CaHB12-expressing plants, such as the pathway signalled by heat shock proteins, reactive oxygen species and heat shock transcription factor signalling pathways. Moreover, to provide further support for the involvement of CaHB12 in drought stress tolerance, three independent soybean transgenic lines overexpressing CaHB12 were employed in this study. Accordingly, at a physiological level, the constitutive expression of CaHB12 promotes the regulation of stomatal conductance and antioxidant activity under drought conditions, suggesting that this gene plays a key role in plant responses to water deprivation and can confer tolerance to drought stress. Our data suggest that CaHB12 is a positive regulator of the stress response in coffee plants and indicate that this gene is a potential candidate for biotechnological approaches. 650 $aDrought tolerance 650 $aHeat shock proteins 650 $aOsmotic stress 650 $aStomatal conductance 653 $aEctopic expression 653 $aHD-Zip 700 1 $aLOH, R. K. T. M. 700 1 $aARCURI, M. L. C. 700 1 $aDEZAR, C. 700 1 $aARGE, L. W. P. 700 1 $aFALCÃO, T. 700 1 $aROMANEL, E. 700 1 $aMORGANTE, C. V. 700 1 $aCERQUEIRA, J. V. A. 700 1 $aRIBEIRO, T. P. 700 1 $aMOURA, S. M. 700 1 $aARONGAUS, A. B. 700 1 $aARANTES, I. L. G. 700 1 $aMATTA, B. P. 700 1 $aCORREA, R. L. 700 1 $aPINTO, E. R. de C. 700 1 $aSA, M. F. G. de 700 1 $aBARTELS, D. 700 1 $aCHAN, R. L. 700 1 $aALVES-FERREIRA, M. 773 $tEnvironmental and Experimental Botany$gv. 228, 105983, 2024.
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1. |  | CRUZ, J. A. M.; AMARAL, A. da C.; VALANDRO, J. S. I.; TORATI, L. S.; KIRSCHNIK, L. N. G.; O'SULLIVAN, F. L. A. Confirmação da esterilidade do tambaqui Colossoma macropomum triploide e caracterização da sua linhagem germinativa. Revista Brasileira de Reprodução Animal, v. 48, n. 2, p. 312, 2024. Edição de Resumos do III Workshop Brasileiro sobre Reprodução de Peixes, Goiânia, GO, ago. 2024. Fish reproduction 2024.Tipo: Resumo em Anais de Congresso |
Biblioteca(s): Embrapa Pesca e Aquicultura. |
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2. |  | AMARAL, A. da C.; VALANDRO, J. S. I.; CRUZ, J. A. M.; KIRSCHNIK, L. N. G.; O'SULLIVAN, F. L. A.; TORATI, L. S. Uso de esfregaço sanguíneo para avaliação de triploidia em tambaqui Colossoma macropomum (Cuvier, 1818). Revista Brasileira de Reprodução Animal, v. 48, n. 2, p. 343, 2024. Edição de Resumos do III Workshop Brasileiro sobre Reprodução de Peixes, Goiânia, GO, ago. 2024.Tipo: Resumo em Anais de Congresso |
Biblioteca(s): Embrapa Pesca e Aquicultura. |
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Registros recuperados : 2 | |
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