Francisco P. Macedo
Federal University of Rio Grande do Norte
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Journal of Agricultural and Food Chemistry | 2008
Ticiana M. L. Amorim; Leonardo L.P. Macedo; Adriana Ferreira Uchôa; Adeliana S. Oliveira; Joelma C.M. Pitanga; Francisco P. Macedo; Elizeu A. Santos; Maurício P. Sales
The digestive system of P. interpunctella was characterized during its larval development to determine possible targets for the action of proteinaceous enzyme inhibitors and chitin-binding proteins. High proteolytic activities using azocasein at pH 9.5 as substrate were found. These specific enzymatic activities (AU/mg protein) showed an increase in the homogenate of third instar larvae, and when analyzed by individual larvae (AU/gut), the increase was in sixth instar larvae. Zymograms showed two bands corresponding to those enzymatic activities, which were inhibited by TLCK and SBTI, indicating that the larvae mainly used serine proteinases at pH 9.5 in their digestive process. The presence of a peritrophic membrane in the larvae was confirmed by chemical testing and light microscopy. In a bioassay, P. interpunctella was not susceptible to the soybean trypsin inhibitor, which did not affect larval mass and mortality, likely due to the weak association with its target digestive enzyme. EvV (Erythrina velutina vicilin), when added to the diet, affected mortality (LD50 0.23%) and larval mass (ED50 0.27%). This effect was associated with EvV-binding to the peritrophic membrane, as seen by immunolocalization. EvV was susceptible to gut enzymes and after the digestion process, released an immunoreactive fragment that was bound to the peritrophic matrix, which probably was responsible for the action of EvV.
Journal of Agricultural and Food Chemistry | 2008
Leonardo L.P. Macedo; Ticiana M. L. Amorim; Adriana Ferreira Uchôa; Adeliana S. Oliveira; Jannison K.C. Ribeiro; Francisco P. Macedo; Elizeu A. Santos; Maurício P. Sales
Chitin-binding vicilin from Erythrina velutina seeds was purified by ammonium sulfate followed by affinity chromatography on a chitin column and gel filtration on Superose-6-10-300-GL. The Erythrina velutina vicilin, called EvV, is a tetrameric glycoprotein composed of 1.85% carbohydrates and M r of 216.6 kDa, consisting of two subunits of M r of 54.8 and two subunits of M r of 50.8 kDa. The EvV homogeneity was confirmed in native PAGE where it was observed to be a unique acid-protein band with slow mobility in this gel. Effect of EvV on C. capitata larvae was examined by bioassay and its mechanism of action was determined by immunodetection techniques and fluorescence localization in chitin structures that are present in C. capitata digestory system. EvV when added to diet caused strong effect on mortality (ED50 of 0.14%) and larval mass (WD50 of 0.12%). These deleterious effects were associated to the binding to chitin structures present in peritrophic membrane and to gut epithelial cells, and its low digestibility in C. capitata digestive tract. These results are the first demonstration of a proteinaceous bioinsecticide from plant origin effective against C. capitata larvae. EvV may be part of the pest management programs or an alternative in plant improvement program.
Protein and Peptide Letters | 2008
M. P. de Sales; Alonso Alcazar; Liziane M. Lima; Ticiana M. L. Amorim; Joelma C.M. Pitanga; Railene A. Pereira; L. L.P. Macedo; Francisco P. Macedo; Adeliana S. Oliveira; Adriana Ferreira Uchôa
The digestive system of P. interpunctella was characterized during its larval development to determination of carbohydrases using disaccharides (sucrose and maltose) and polysaccharides (starch and inulin) as substrate. At 6(th) instar larval, Invertase>alpha-amylase> maltase activities peaks were observed. Invertase was fractionated with acetone and isolated. The Invertase was 485.5 fold purified by Sephacryl S-200 and DEAE-Sephadex. Its kinetic parameters were K(m) of 6.6 mM, V(max) of 0.48, pH optimum of 5.5 and temperature optimum of 30 degrees C. This enzyme was activated by CaCl(2) and inhibited by EDTA. When analyzed by SDS-PAGE it showed one band of M(r) 34 kDa. The understanding of the digestive system of P. interpunctella could be a key step in the design of bioinsecticides.
Plant Physiology and Biochemistry | 2005
Carlos E. M. Gomes; Aulus Estevão Barbosa; Leonardo L.P. Macedo; Joelma C.M. Pitanga; Fabiano T. Moura; Adeliana S. Oliveira; Raniere M. Moura; Alexandre F.S. Queiroz; Francisco P. Macedo; Lúcia B.S. Andrade; Marcia Soares Vidal; Maurício P. Sales
Journal of Agricultural and Food Chemistry | 2005
Carina L. Araujo; Ingrid Wilza Leal Bezerra; Adeliana S. Oliveira; Fabiano T. Moura; Leonardo L.P. Macedo; Carlos E. M. Gomes; Aulus E. A. D. Barbosa; Francisco P. Macedo; Tania M. S. Souza; Octavio L. Franco; Carlos Bloch-J; Maurício P. Sales
Plant Physiology and Biochemistry | 2013
Ana C.B. Cruz; Fábio S. Massena; Ludovico Migliolo; L. L.P. Macedo; Norberto K.V. Monteiro; Adeliana S. Oliveira; Francisco P. Macedo; Adriana Ferreira Uchôa; Maria F. Grossi de Sá; Ilka M. Vasconcelos; André M. Murad; Octavio L. Franco; Elizeu A. Santos
Insect Biochemistry and Molecular Biology | 2006
Fátima C.B.L. Silva; Alonso Alcazar; Leonardo L.P. Macedo; Adeliana S. Oliveira; Francisco P. Macedo; Luiz R.D. de Abreu; Elizeu A. Santos; Maurício P. Sales
The Scientific World Journal | 2015
João Maria Gomes Alencar de Souza; Paulo Augusto de Lima-Filho; Wagner Franco Molina; Lúcia Maria de Almeida; Milson Gouveia; Francisco P. Macedo; Raúl A. Laumann; Beatriz Aguiar Jordão Paranhos
Archive | 2014
Inês de Araújo Moura; Wagner Franco Molina; Francisco P. Macedo
Biota Amazônia (Biote Amazonie, Biota Amazonia, Amazonian Biota) | 2014
Inês Regina de Araújo Moura Cunha; Wagner Franco Molina; Francisco P. Macedo