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Registro Completo |
Biblioteca(s): |
Embrapa Recursos Genéticos e Biotecnologia. |
Data corrente: |
13/02/2014 |
Data da última atualização: |
29/04/2024 |
Tipo da produção científica: |
Artigo em Periódico Indexado |
Autoria: |
SILVA, M. C. M. da; SARTO, R. P. del; LUCENA, W. A.; RIGDEN, D. J.; TEIXEIRA, F. R.; BEZERRA, C. de A.; ALBUQUERQUE, E. V. S.; GROSSI DE SA, M. F. |
Afiliação: |
MARIA CRISTINA MATTAR DA SILVA, CENARGEN; RAFAEL PERSEGHINI DEL SARTO, UNB; WAGNER ALEXANDRE LUCENA, CNPA; DANIEL JOHN RIGDEN, UNIVERSITY OF LIVERPOOL; FABÍOLA RODRIGUES TEIXEIRA; CAROLINE DE ANDRADE BEZERRA, UNIVERSIDADE CATÓLICA DE BRASÍLIA; ERIKA VALERIA SALIBA ALBUQUERQUE FR, CENARGEN; MARIA FATIMA GROSSI DE SA, CENARGEN. |
Título: |
Employing in vitro directed molecular evolution for the selection of α-amylase variant inhibitors with activity toward cotton boll weevil enzyme. |
Ano de publicação: |
2013 |
Fonte/Imprenta: |
Journal of Biotechnology, v. 167, p. 377-385, 2013. |
Idioma: |
Inglês |
Conteúdo: |
Numerous species of insect pests attack cotton plants, out of which the cotton boll weevil (Anthonomus grandis) is the main insect in Brazil and must be controlled to avert large economic losses. Like other insect pests, A. grandis secretes a high level of -amylases in the midgut lumen, which are required for digestion of carbohydrates. Thus, -amylase inhibitors (-AIs) represent a powerful tool to apply in the control of insect pests. Here, we applied DNA shuffling and phage display techniques and obtained a combinatorial library containing 108 ˛-AI variant forms. From this library, variants were selected exhibiting in vitro affinity for cotton boll weevil -amylases. Twenty-six variant sequences were cloned into plant expression vectors and expressed in Arabidopsis thaliana. Transformed plant extracts were assayed in vitro to select specific and potent -amylase inhibitors against boll weevil amylases. While the wild type inhibitors, used to create the shuffled library, did not inhibit the A. grandis -amylases, three -AI mutants, named -AIC3, -AIA11 and -AIG4 revealed high inhibitory activities against A. grandis -amylases in an in vitro assay. In summary, data reported here shown the potential biotechnology of new ˛-AI variant genes for cotton boll weevil control. |
Palavras-Chave: |
Alfa-amylase inhibitors; In vitro molecular evolution. |
Thesagro: |
Anthonomus Grandis. |
Thesaurus Nal: |
DNA shuffling; insect control. |
Categoria do assunto: |
-- |
URL: |
https://ainfo.cnptia.embrapa.br/digital/bitstream/item/157998/1/1-s2.0-S016816561300312X-main.pdf
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Marc: |
LEADER 02157naa a2200265 a 4500 001 1979826 005 2024-04-29 008 2013 bl uuuu u00u1 u #d 100 1 $aSILVA, M. C. M. da 245 $aEmploying in vitro directed molecular evolution for the selection of α-amylase variant inhibitors with activity toward cotton boll weevil enzyme.$h[electronic resource] 260 $c2013 520 $aNumerous species of insect pests attack cotton plants, out of which the cotton boll weevil (Anthonomus grandis) is the main insect in Brazil and must be controlled to avert large economic losses. Like other insect pests, A. grandis secretes a high level of -amylases in the midgut lumen, which are required for digestion of carbohydrates. Thus, -amylase inhibitors (-AIs) represent a powerful tool to apply in the control of insect pests. Here, we applied DNA shuffling and phage display techniques and obtained a combinatorial library containing 108 ˛-AI variant forms. From this library, variants were selected exhibiting in vitro affinity for cotton boll weevil -amylases. Twenty-six variant sequences were cloned into plant expression vectors and expressed in Arabidopsis thaliana. Transformed plant extracts were assayed in vitro to select specific and potent -amylase inhibitors against boll weevil amylases. While the wild type inhibitors, used to create the shuffled library, did not inhibit the A. grandis -amylases, three -AI mutants, named -AIC3, -AIA11 and -AIG4 revealed high inhibitory activities against A. grandis -amylases in an in vitro assay. In summary, data reported here shown the potential biotechnology of new ˛-AI variant genes for cotton boll weevil control. 650 $aDNA shuffling 650 $ainsect control 650 $aAnthonomus Grandis 653 $aAlfa-amylase inhibitors 653 $aIn vitro molecular evolution 700 1 $aSARTO, R. P. del 700 1 $aLUCENA, W. A. 700 1 $aRIGDEN, D. J. 700 1 $aTEIXEIRA, F. R. 700 1 $aBEZERRA, C. de A. 700 1 $aALBUQUERQUE, E. V. S. 700 1 $aGROSSI DE SA, M. F. 773 $tJournal of Biotechnology$gv. 167, p. 377-385, 2013.
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Embrapa Recursos Genéticos e Biotecnologia (CENARGEN) |
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| Acesso ao texto completo restrito à biblioteca da Embrapa Agroindústria Tropical. Para informações adicionais entre em contato com cnpat.biblioteca@embrapa.br. |
Registro Completo
Biblioteca(s): |
Embrapa Agroindústria Tropical. |
Data corrente: |
12/02/2009 |
Data da última atualização: |
30/09/2011 |
Tipo da produção científica: |
Resumo em Anais de Congresso |
Autoria: |
ROSA, M. F.; CHIOU, B.; MEDEIROS, E. S.; WOOD, D. F.; MATTOSO, L. H. C.; ORTS, W. J.; IMAM, S. |
Afiliação: |
Morsyleide de Freitas Rosa, CNPAT; Bor-Sen Chiou, WRRC/ARS- USDA; Elton S. Medeiros, WRRC/ARS- USDA-CNPDIA; Delilah F. Wood, WRRC/ARS- USDA; Luiz H. C. Mattoso, CNPDIA; William J Orts, WRRC/ARS- USDA; Syed H. Imam, WRRC/ARS- USDA. |
Título: |
Biodegradable composites based on starch/EVA blends and coir. |
Ano de publicação: |
2008 |
Fonte/Imprenta: |
In: CLEAN TECHNOLOGY AND SUSTENTAINABLE INDUSTRIES CONFERENCE, 11., 2008, Boston. Abstract... Boston: Nano Science and Technology Institute, 2008. |
Idioma: |
Inglês |
Palavras-Chave: |
Biodegradable; Blends and coir. |
Categoria do assunto: |
-- |
Marc: |
LEADER 00647naa a2200205 a 4500 001 1423864 005 2011-09-30 008 2008 bl uuuu u00u1 u #d 100 1 $aROSA, M. F. 245 $aBiodegradable composites based on starch/EVA blends and coir. 260 $c2008 653 $aBiodegradable 653 $aBlends and coir 700 1 $aCHIOU, B. 700 1 $aMEDEIROS, E. S. 700 1 $aWOOD, D. F. 700 1 $aMATTOSO, L. H. C. 700 1 $aORTS, W. J. 700 1 $aIMAM, S. 773 $tIn: CLEAN TECHNOLOGY AND SUSTENTAINABLE INDUSTRIES CONFERENCE, 11., 2008, Boston. Abstract... Boston: Nano Science and Technology Institute, 2008.
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