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Registros recuperados: 32 | |
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OLIVEIRA NETO, O. B.; BATISTA, J. A. N.; RIGDEN, D. J.; FRAGOSO, R. R.; SILVA, R. O.; GOMES, E. A.; FRANCO, O. L.; DIAS, S. C.; CORDEIRO, C. M. T.; MONNERAT, R. G.; GROSSI-DE-SÁ, M. F.. |
Tipo: Artigo de periódico |
Palavras-chave: Clonagem de cDNA; Família multigene; Anthonomus Grandis; Serine proteinases. |
Ano: 2004 |
URL: http://www.alice.cnptia.embrapa.br/alice/handle/doc/186278 |
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VIANA, J. F. C.; CARRIJO, J.; FREITAS, C. G.; PAUL, A.; ALCARAZ, J.; LACORTE, C. C.; MIGLIOLO, L.; ANDRADE, C. A.; FALCAO, R.; SANTOS, N. C.; GONÇALVES, S.; OTERO-GONZÁLES, A. J.; KHADEMHOSSEINI, A.; DIAS, S. C.; FRANCO, O. L.. |
Candida albicans is a common human-pathogenic fungal species with the ability to cause several diseases including surface infections. Despite the clear difficulties of Candida control, antimicrobial peptides (AMPs) have emerged as an alternative strategy for fungal control. In this report, different concentrations of antifungal Cm-p1 (Cencritchis muricatus peptide 1) were electrospun into nanofibers for drug delivery. The nanofibers were characterized by mass spectrometry confirming the presence of the peptide on the scaffold. Atomic force microscopy and scanning electronic microscopy were used to measure the diameters, showing that Cm-p1 affects fiber morphology as well as the diameter and scaffold thickness. The Cm-p1 release behavior from the nanofibers... |
Tipo: Separatas |
Palavras-chave: Fungos; Controle de fungos; Nanofibras; Cândida Albicans. |
Ano: 2015 |
URL: http://www.alice.cnptia.embrapa.br/alice/handle/doc/1026638 |
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FONTES, E. M. G.; PIRES, C. S. S.; SUJII, E. R.; MACEDO, T. R.; AYRES, K. F.; SILVA-SANTOS, P. V.; TOGNI, P. H. B.; GROSSI-DE-SÁ, M. F.; NAKASU, E. Y. T.; DIAS, S. C.. |
Palestra |
Tipo: Anais e Proceedings de eventos |
Palavras-chave: Organismos Geneticamente Modificados; Vegetal improvement; Riscos.; Controle Biológico; Melhoramento Vegetal.; Biological control.. |
Ano: 2007 |
URL: http://www.alice.cnptia.embrapa.br/alice/handle/doc/188995 |
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NAKASU, E. Y. T.; DIAS, S. C.; PIRES, C. S. S.; ANDOW, D. A.; PAULA, D. P.; TOGNI, P. H. B.; MACEDO, T. R.; SUJII, E. R.; SÁ, M. F. G. de; FONTES, E. M. G.. |
Tipo: Separatas |
Palavras-chave: Bt cotton; Non-target organisms; Transgenic crops; Natural enemie; Coccinellidae; Coleoptera; Risk assessment. |
Ano: 2013 |
URL: http://www.alice.cnptia.embrapa.br/alice/handle/doc/979882 |
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SAÚDE, A. C. M.; OMBREDANE, A. S.; SILVA, O. N.; BARBOSA, J. A. R. G.; MORENO, S. E.; ARAUJO, A. C. G.; FALCAO, R.; SILVA, L. P.; DIAS, S. C.; FRANCO, O. L.. |
Tipo: Separatas |
Palavras-chave: Antimicrobial; Nanobiotechnology; Peptide.; Nanoparticles.. |
Ano: 2014 |
URL: http://www.alice.cnptia.embrapa.br/alice/handle/doc/1005987 |
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MEHRKHOU, F.; TALEBI, A. A.; KOCHAMESHGI, M. G.; HOSSEININAVEH, V.; CÂNDIDO, E. de S.; PETRIZ, B.; DIAS, S. C.; CASTRO, M. E. B. de; REIS, A. M. dos; FRANCO, O. L.. |
Tipo: Separatas |
Palavras-chave: Mass spectrometry (MS); Anticarsia Gemmatalis; Spodoptera Frugiperda; Proteomics. |
Ano: 2012 |
URL: http://www.alice.cnptia.embrapa.br/alice/handle/doc/950085 |
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MIRANDA, V. de J.; PORTO, W. F.; FERNANDES, G. da R.; POGUE, R.; NOLASCO, D. O.; ARAUJO, A. C. G.; COTA, L. V.; FREITAS, C. G. de; DIAS, S. C.; FRANCO, O. L.. |
Tipo: Separatas |
Palavras-chave: Maize; Colletotrichum Graminicola. |
Ano: 2017 |
URL: http://www.alice.cnptia.embrapa.br/alice/handle/doc/1070911 |
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MIRANDA, V. de J.; PORTO, W. F.; FERNANDES, G. da R.; POGUE, R.; NOLASCO, D. O.; ARAUJO, A. C. G.; COTA, L. V.; FREITAS, C. G. de; DIAS, S. C.; FRANCO, O. L.. |
The hemibiotrophic fungus Colletotrichum graminicola may cause severe damage to maize, affecting normal development of the plant and decreasing grain yield. In this context, understanding plant defense pathways at the inoculation site and systemically in uninoculated tissues can help in the development of genetic engineering of resistance against this pathogen. Previous work has discussed the molecular basis of maize - C. graminicola interaction. However, many genes involved in defense have not yet been exploited for lack of annotation in public databases. Here, changes in global gene expression were studied in root, male and female inflorescences of maize under local and systemic fungal infection treatments, respectively. RNA-Seq with qPCR was used to... |
Tipo: Artigo de periódico |
Palavras-chave: Resistência a doença.; Doença de planta; Milho; Antracnose; Gene.. |
Ano: 2017 |
URL: http://www.alice.cnptia.embrapa.br/alice/handle/doc/1071838 |
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COSTA, T. G.; CRUZ, A. S. de P.; LOURENÇO, E. D. de O.; FERREIRA, P. D. S.; VIOL, L. C. S.; LIMA, L. A. de; MENDONCA, J. L. de; PINHEIRO, J. B.; POLEZ, V. L. P.; DIAS, S. C.; ENGLER, J. de A.; ROCHA, T. L.. |
Root-knot nematodes (Meloidogyne spp.) considerably affect their plant hosts, causing extensive damage in the world agriculture. The most widely used method to control these pathogens is through the intensive application of nematicides, despite being highly toxic to humans, animals, and the environment. The urgent search for alternative forms of control based on natural resources that are effective, provide a targeted strategy that is less toxic and less harmful to the environment. The species Solanum stramonifolium Jacq. (Solanaceae) have been described as resistant to root-knot nematode infection and other diseases, such as fungi and bacteria. Nematotoxic assays here presented demonstrated that aqueous crude seed extract from S. stramonifolium is very... |
Tipo: Artigo de periódico |
Palavras-chave: Nematodes; Plants; Rootknot; Nematicida; Agriculture; Nematicides; Solanaceae; Root-knot nematodes. |
Ano: 2022 |
URL: http://www.alice.cnptia.embrapa.br/alice/handle/doc/1144531 |
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NAKASU, E. Y. T.; TOGNI, P. H. B.; MACEDO, T. R.; AYRES, K. F.; SILVA, I. S.; DIAS, S. C.; SUJII, E. R.; PIRES, C. S. S.; GROSSI-DE-SÁ, M. F.; FONTES, E. M. G.. |
Tipo: Anais e Proceedings de eventos |
Palavras-chave: Toxina Cry1Ac.; Alimento; Aphis Gossypii; Controle Biológico; Cycloneda Sanguínea.. |
Ano: 2006 |
URL: http://www.alice.cnptia.embrapa.br/alice/handle/doc/188606 |
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Registros recuperados: 32 | |
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