Transglutaminase Shows Better Functionality on High Digestible, High Lysine Sorghum-Wheat Composite Dough and Bread, Compared to Normal Sorghum- Wheat Composites

Highly digestible high-lysine (HDHL) sorghum-wheat composites have previously been shown to produce better composite dough and bread compared to normal sorghum-wheat composites. This study aimed to test whether improved HDHL lines can provide further enhanced functionality through the effects of transglutaminase (TG) enzyme to improve dough rheological properties. Sorghum-wheat composite doughs were made using HDHL and normal sorghum flours at substitution levels of 10, 20, and 30%, with and without 0.15% TG. Rheological properties of dough were tested using a mechanical spectrometer at 0.05% strain amplitude (within the linear viscoelastic region) over a 0.01- 50 rad/sec frequency range. A more elastic system was observed in HDHL sorghum-wheat composites above 10% substitution levels compared to normal sorghum-wheat composite dough. Addition of TG to HDHL sorghum-wheat composites resulted in a decrease in phase angle values at all substitution level, indicating that TG increased the dough elasticity. However, TG did not change viscoelastic properties of normal sorghum-wheat composites. Bread from HDHL sorghum-wheat composites had significantly higher (P

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AACCI. 2000. Approved methods of the American Association of Analysis, 11th edn. AACC International: St. Paul, MN, USA.

Awika JM, Rooney LW. 2004. Sorghum phytochemicals and their potential impact on human health. Phytochemistry, 65: 1199-1221.

Axtell JD, Kirleis AW, Hassen MM, Mason ND, Mertz ET, Munck L. 1981. Digestibility of sorghum proteins. Proceedings of the National Academy of Sciences of the United States of America, 78: 1333-1335.

Basman A, Koksel H, Ng PKW. 2003. Utilization of transglutaminase to increase the level of barley and soy flour incorporation in wheat flour breads. Journal of Food Science, 68: 2453-2460.

Bugusu BA. Campanella O, Hamaker BR. 2001. Improvement of sorghum-wheat composite dough rheological properties and bread making quality through zein addition. Cereal Chemistry, 78: 31-35.

Cauvain, SP. 1998. Other cereals in bread making. In: Cauvain SP, Young LS, editors. Technology of Breadmaking. London, UK: Blackie Academic & Professional, pp. 330-346.

Dendy DAV. 1970. Composite flours. In: Composite Flour Program, vol. I. Food and Agricultural Organization (FAO), pp. 92-93.

Dykes L, Rooney LW, Waniska RD, Rooney WL. 2005. Phenolic compounds and antioxidant activity of sorghum grains of varying genotypes. Journal of Agricultural and Food Chemistry, 53: 6813-6818.

Dykes L, Rooney LW. 2006. Sorghum and millet phenols and antioxidants. Journal of Cereal Science, 44: 236-251.

Dykes L, Rooney LW. 2007. Phenolic compounds in cereal grains and their health benefits. Cereal Foods World, 52: 105- 111.

Ejeta G, Hassan MM, Mertz ET. 1987. In vitro digestibility and amino acid composition of pearl millet (Pennisetum typhoides) and other cereals. Proceedings of the National Academy of Sciences of the United States of America, 84: 6016-6019.

Elkhalifa AO, Chandrashekar A, Mohamed BE, El Tinay AH. 1999. Effect of reducing agents on the in vitro protein and starch digestibilities of cooked sorghum. Food Chemistry, 66: 323-326.

Fevzioglu M, Hamaker BR, Campanella OH. 2012. Gliadin and zein show similar and improved rheological behavior when mixed with high molecular weight glutenin. Journal of Cereal Science, 55: 265-271. Goodall MA, Campanella OH, Ejeta G, Hamaker BR. 2012. Grain of high digestible, high lysine (HDHL) sorghum contains kafirins which enhance the protein network of composite dough and bread. Journal of Cereal Science, 56: 352-357.

Hamaker BR, Kirleis AW, Butler LG, Axtell JD, Mertz ET. 1987. Improving the in vitro protein digestibility of sorghum with reducing agents. Proceedings of the National Academy of Sciences of the United States of America, 84: 626-628.

Keregero MM, Mtebe K. 1994. Acceptability of wheat sorghum composite flour products - An assessment. Plant Foods for Human Nutrition, 46: 305-312.

Kim JC, Deruiter D. 1968. Bread from non-wheat flours. Food Technology, 22: 867-878.

Lawton JW. 1992. Viscoelasticity of zein-starch doughs. Cereal Chemistry, 69: 351-355.

Meerts M, Van Ammel H, Meeus Y, Van Engeland S, Cardinaels R, Oosterlinck F, Courtin CM, Moldenaers P. 2017. Enhancing the rheological performance of wheat flour dough with glucose oxidase, transglutaminase or supplementary gluten. Food Bioprocess Technology, 10: 2188-2198.

Oom A, Pettersson A, Taylor JRN, Stading M. 2008. Rheological properties of kafirin and zein prolamins. Journal of Cereal Science, 47: 109-116.

Oria MP, Hamaker BR, Shull JM. 1995. Resistance of sorghum alpha-kafirins, beta-kafirins, and gamma-kafirins to pepsin digestion. Journal of Agricultural and Food Chemistry, 43: 2148-2153.

Oria MP, Hamaker BR, Axtell JD, Huang CP. 2000. A highly digestible sorghum mutant cultivar exhibits a unique folded structure of endosperm protein bodies. Proceedings of the National Academy of Sciences of the United States of America, 97: 5065-5070.

Rauha JP, Remes S, Heinonen M, Hopia A, Kahkonen M, Kujala T. 2000. Antimicrobial effects of Finnish plant extracts containing flavonoids and other phenolic compounds. International Journal of Food Microbiology, 56: 3-12.

Rooney LW, Awika JM. 2005. Overview of products and health benefits of speciality sorghums. Cereal Foods World, 50: 109-115.

Schober TJ, Messerschmidt M, Bean SR, Park SH, Arendt EK. 2005. Gluten-free bread from sorghum: Quality differences among hybrids. Cereal Chemistry, 82: 394-404.

Schober TJ, Bean SR, Boyle DL, Park SH. 2008. Improved viscoelastic zein-starch doughs for leavened gluten-free breads: Their rheology and microstructure. Journal of Cereal Science, 48: 755-767.

Steffe JF. 1996. Introduction to rheology. In: Steffe JF, editor. Rheological Methods in Food Engineering, 2nd edition. East Lansing, MI, USA: Freeman Press, pp. 1 - 91.

Taylor JRN, Schober TJ, Bean SR. 2006. Novel food and non- food uses for sorghum and millets. Journal of Cereal Science, 44: 252-271.

Tuncil YE, Jondiko T, Castell-Perez ME, Puerta-Gomez AF, Awika JM. 2016.. Small deformation rheological properties of dough are useful tool to predict the effects of modest sodium reduction on flour tortilla quality. LWT-Food Science and Technology, 68: 329-333.

Weaver CA, Hamaker BR, Axtell JD. 1998. Discovery of grain sorghum germ plasm with high uncooked and cooked in vitro protein digestibilities. Cereal Chemistry, 75: 665-670
Türk Tarım - Gıda Bilim ve Teknoloji dergisi-Cover
  • ISSN: 2148-127X
  • Yayın Aralığı: Aylık
  • Başlangıç: 2013
  • Yayıncı: Turkish Science and Technology Publishing (TURSTEP)
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