Sorry, you need to enable JavaScript to visit this website.

Analysis of Quality-Related Parameters in Mature Kernels of Polygalacturonase Inhibiting Protein (PGIP) Transgenic Bread Wheat Infected with Fusarium graminearum

TitleAnalysis of Quality-Related Parameters in Mature Kernels of Polygalacturonase Inhibiting Protein (PGIP) Transgenic Bread Wheat Infected with Fusarium graminearum
Publication TypeArticolo su Rivista peer-reviewed
Year of Publication2015
AuthorsMasci, S., Laino P., Janni M., Botticella E., Di Carli Mariasole, Benvenuto Eugenio, Danieli P.P., Lilley K.S., Lafiandra D., and D’Ovidio R.
JournalJournal of Agricultural and Food Chemistry
Volume63
Pagination3962 - 3969
Date Published2015
ISBN Number00218561 (ISSN)
KeywordsDeoxynivalenol, flour qualitative properties, Food products, Fungi, Fusarium, fusarium head blight, Fusarium head blights, Gibberella zeae, Gluten protein, gluten proteins, metabolic proteins, metabolism, PGIP, Plants (botany), Proteins, Qualitative properties, Quality control, starch, transgenic plants, Triticum aestivum, wheat
Abstract

Fusarium head blight, caused by the fungus Fusarium graminearum, has a detrimental effect on both productivity and qualitative properties of wheat. To evaluate its impact on wheat flour, we compared its effect on quality-related parameters between a transgenic bread wheat line expressing a bean polygalacturonase inhibiting protein (PGIP) and its control line. We have compared metabolic proteins, the amounts of gluten proteins and their relative ratios, starch content, yield, extent of pathogen contamination, and deoxynivalenol (DON) accumulation. These comparisons showed that Fusarium significantly decreases the amount of starch in infected control plants, but not in infected PGIP plants. The flour of PGIP plants contained also a lower amount of pathogen biomass and DON accumulation. Conversely, both gluten and metabolic proteins were not significantly influenced either by the transgene or by fungal infection. These results indicate that the transgenic PGIP expression reduces the level of infection, without changing significantly the wheat seed proteome and other quality-related parameters. © 2015 American Chemical Society.

Notes

Export Date: 16 July 2015CODEN: JAFCACorrespondence Address: Masci, S.; Dipartimento di Scienze e Tecnologie per l’Agricoltura, Le Foreste, la Natura e l’Energia, University of TusciaItalyReferences: Bai, G.-H., Plattner, R., Desjardins, A., Kolb, F., Resistance to fusarium head blight and deoxynivalenol accumulation in wheat (2001) Plant Breed., 120, pp. 1-6;Buerstmayr, H., Ban, T., Anderson, J.A., QTL mapping and marker-assisted selection for fusarium head blight resistance in wheat: A review (2009) Plant Breed., 128, pp. 1-26; Juge, N., Plant protein inhibitors of cell wall degrading enzymes (2006) Trends Plant Sci., 11, pp. 359-367; Kikot, G.E., Hours, R.A., Alconada, T.M., Contribution of cell wall degrading enzymes to pathogenesis of Fusarium graminearum: A review (2009) J. Basic Microbiol., 49, pp. 231-241; Tomassini, A., Sella, L., Raiola, A., D’Ovidio, R., Favaron, F., Characterization and expression of Fusarium graminearum endo-polygalacturonases in vitro and during wheat infection (2009) Plant Pathol., 58 (3), pp. 556-564; De Lorenzo, G., D’Ovidio, R., Cervone, F., The role of polygalacturonase-inhibiting proteins (PGIPS) in defense against pathogenic fungi (2001) Annu. Rev. Phytopathol., 39, pp. 313-335; D’Ovidio, R., Mattei, B., Roberti, S., Bellincampi, D., Polygalacturonases, polygalacturonase-inhibiting proteins and pectic oligomers in plant-pathogen interactions (2004) Biochim. Biophys. Acta, Proteins Proteomics, 1696, pp. 237-244; Protsenko, M.A., Buza, N.L., Krinitsyna, A.A., Bulantseva, E.A., Korableva, N.P., Polygalacturonase inhibiting protein is a structural component of plant cell wall (2008) Biochemistry, 73, pp. 1053-1062; Ferrari, S., Sella, L., Janni, M., De Lorenzo, G., Favaron, F., D’Ovidio, R., Transgenic expression of polygalacturonase-inhibiting proteins in Arabidopsis and wheat increases resistance to the flower pathogen Fusarium graminearum (2012) Plant Biol., 14, pp. 31-38; Tatham, A.S., Shewry, P.R., Allergy to wheat and related cereals (2008) Clin. Exp. Allergy, 38, pp. 1712-1726; Janni, M., Sella, L., Favaron, F., Blechl, A.E., De Lorenzo, G., D’Ovidio, R., The expression of a bean polygalacturonase-inhibiting protein in transgenic wheat confers increased resistance to the fungal pathogen Bipolaris sorokiniana (2008) Mol. Plant-Microbe Interact., 21, pp. 171-177; Moscetti, I., Tundo, S., Janni, M., Sella, L., Gazzetti, K., Tauzin, A., Giardina, T., D’Ovidio, R., Constitutive expression of the xylanase inhibitor TAXI-III delays fusarium head blight symptoms in durum wheat transgenic plants (2013) Mol. Plant-Microbe Interact., 26 (12), pp. 1464-1472; Horevaj, P., Milus, E.A., Bluhm, B.H., A real-time q PCR assay to quantify Fusarium graminearum biomass in wheat kernels (2011) J. Appl. Microbiol., 111, pp. 396-406; Deutsches Institut für Normung (DIN), (1994) 32645 Norma-Chemical analysis: Decision limit, detection limit and determination limit under repeatability conditions; Terms, methods, evaluation; Khan, K., Hamada, A.S., Patek, J., Polyacrylamide gel electrophoresis for wheat variety identification: Effect of variables on gel properties (1985) Cereal Chem., 62, pp. 310-313; Hurkman, W.J., Tanaka, C.K., Extraction of wheat endosperm proteins for proteome analysis (2007) J. Chromatogr., B: Anal. Technol. Biomed. Life Sci., 849, pp. 344-350; Neuhoff, V., Arold, N., Taube, D., Ehrhardt, W., Improved staining of proteins in polyacrylamide gels including isoelectric focusing gels with clear background at nanogram sensitivity using Coomassie Brilliant Blue G-250 and R-250 (1988) Electrophoresis, 9, pp. 255-262; Laino, P., (2010) Effects of the Abiotic and Biotic Stresses on the Wheat Proteome, , http://dspace.unitus.it/handle/2067/1007, Ph.D. thesis, Tuscia University; Di Carli, M., Villani, M.E., Renzone, G., Nardi, L., Pasquo, A., Franconi, R., Scaloni, A., Desiderio, A., Leaf proteome analysis of transgenic plants expressing antiviral antibodies (2009) J. Proteome Res., 8 (2), pp. 838-848; Karp, N.A., Lilley, K.S., Maximising sensitivity for detecting changes in protein expression: Experimental design using minimal CyDyes (2005) Proteomics, 5, pp. 3105-3115; Storey, J.D., Tibshirani, R., Statistical significance for genome-wide studies (2003) Proc. Natl. Acad. Sci. U.S.A., 100 (16), pp. 9440-9445; Coulthurst, S.J., Lilley, K.S., Hedley, P.E., Liu, H., Toth, I.K., Salmond, G.P., DsbA plays a critical and multi-faceted role in the production of secreted virulence factors by the phytopathogen, Erwinia carotovora subsp. atroseptica (2008) J. Biol. Chem., 283, pp. 23739-23753; Matthaus, K., Danicke, S., Vahjen, W., Simon, O., Wang, J., Valenta, H., Meyer, K., Flachowsky, G., Progression of mycotoxin and nutrient concentrations in wheat after inoculation with Fusarium culmorum (2004) Arch. Anim. Nutr., 58, pp. 19-35; Siuda, R., Grabowski, A., Lenc, L., Ralcewicz, M., Spychaj-Fabisiak, E., Influence of the degree of Fusariosis on technological traits of wheat grain (2010) Int. J. Food Sci. Technol., 45, pp. 2596-2604; Dexter, J.E., Clear, R.M., Preston, K.R., Fusarium head blight: Effect on the milling and baking of some Canadian wheats (1996) Cereal Chem., 73, pp. 695-701; Jackowiak, H., Packa, D., Wiwart, M., Perkowski, J., Scanning electron microscopy of Fusarium damaged kernels of spring wheat (2005) Int. J. Food Microbiol., 98, pp. 113-123; Wang, J.H., Pawelzik, E., Weinert, J., Wolf, G.A., Impact of Fusarium culmorum on the polysaccharides of wheat flour (2005) J. Agric. Food Chem., 53, pp. 5818-5823; Hoffmann-Sommergruber, K., Plant allergens and pathogenesis-related proteins: What do they have in common? (2000) Int. Arch. Allergy Immunol., 122, pp. 155-166; Chetouhi, C., Bonhomme, L., Lecomte, P., Cambon, F., Merlino, M., Biron, D.G., Langin, T., A proteomics survey on wheat susceptibility to Fusarium head blight during grain development (2015) Eur. J. Plant Pathol., 141, pp. 407-418; Eggert, K.A., Zörb, C.B., Mühling, K.H.B., Pawelzik, E.A., Proteome analysis of Fusarium infection in emmer grains (Triticum dicoccum) (2011) Plant Pathol., 60, pp. 918-928

URLhttp://www.scopus.com/inward/record.url?eid=2-s2.0-84928152425&partnerID=40&md5=3a13fac95464846c61606b12aea6ad77
Citation Key5322