Rheological Changes of Dough and Breadmaking Qualities of Wheat Flour with Additions of Soy Flour

대두혼합식빵 제조시 대두첨가량에 따른 반죽과 식빵의 물성 변화

  • 김인호 (경북대학교 농화학과) ;
  • 하상철 (대구미래대학 제과데코레이션과) ;
  • 이인구 (경북대학교 농화학과)
  • Published : 2002.12.01

Abstract

This study was undertaken to develop the optimum baking formular and process in making the improved soy-wheat composite breads furtified with soy flour, which has been known for a source of biologically active phytochemicals and for more vegetable proteins as well. The effects of the addition of soy flour on a rheological properties of dough, on the sensory characteristics of breads, and on the possibilities of commercialization of these functional breads were investigated. As the added amount of soy flour increased, water absorption, development time and the weakness value of dough were increased, but dough stability were decreased in the farinograph. In the extensograph, the more soy flour was added, the less the extensibility and the resistance to extention were shown. As the amount of soy flour increased, gelatinazation point was increased in the amylograph, but the maxium viscosity was decreased. As the added amount of soy flour was increased, b value(yellowness) was obviously increased, L value(lightness) was slightly decreased. However, a value(redness) was not nearly changed in the color of cut loaves. In sensory evaluation, the more soy flour was added, the less the external, the internal characteristics and the eating qualities were shown. Accorting to the addition of soy flour, the toughness and the brittleness tended to be increased proportionally. The dough of 10% soy-wheat composite flour(SF10) was the most favorable on the baking performance.

식물성 단백질의 주요 급원이며 isoflavone계의 우수한 생리 활성 물질을 함유하고 있는 대두를 첨가해서 소비자의 기호성 및 기능성을 갖춘 대두 혼합 식빵의 개발을 시도하였다. 대두는 증자하여 열풍 건조하고 분쇄한 후 분말로 만들어서 소맥분에 0, 5, 10, 20, 30% 되게 각각 첨가하여 반죽을 제조하여 제빵 특성을 조사하였다. 제빵 실험 결과에서 대두분을 10% 까지 첨가해도 좋을 것으로 판단되었다. 파리노그래프의 결과에서 보면 대두분의 첨가량의 증가에 따라 수분 흡수율이 증가하고 반죽 형성 시간이 길어졌으며 안정도가 낮아지고 약화도가 커졌다. 익스텐소그래프의 결과에서 보면 대두분의 첨가량이 증가함에 따라 신장 저항도 및 신장도가 감소하고 소맥분만 사용한 대조구에 비해서 가스 보유력과 발효 내구력이 저하되는 반죽 물성을 보였다. 아밀로그래프의 결과에서 보면 대두분의 첨가량이 증가함에 따라 호화 개시 온도가 높아졌으며 최고 점도와 최고 점도온도는 감소하였다. 빵 단면의 색도에 있어서는 대두분의 첨가량이 증가함에 따라서 b(yellowness)값이 뚜렷하게 증가 했고 L(lightness)값은 감소하여 어두워지는 경향을 보였으며 a(redness)값은 유의적 차이를 보이지 않았다. 빵의 관능 검사에서는 대두분의 함량이 증가할수록 외관, 내관 및 식감 특성이 전체적으로 점차 열등하였다.

Keywords

References

  1. 월간 제과제빵 (1992) 빵과자 백과사전. 민문사, 서울, pp. 423-424
  2. Bushuk, W., Briggs, K.G. and Shebeski, L.H. (1969) Protein quantity and quality as factors in the evaluation of bread wheats. Can J. Plant Sci., 49, 113-122 https://doi.org/10.4141/cjps69-022
  3. He, H. and Hoseney, R.C. (1992) Effect of the quantity of wheat flour protein on the bread loaf volumn. Cereal Chem., 69, 17-19
  4. Pomeranz, Y. (1980) Molecular approach to breadmaking An update and new perspectives. Baker's Dig., 54, 20-27
  5. Huebner, F.R. and Wall, J.S. (1976) Fractionation and quantative differences of glutenin from wheat varieties varying in baking quality. Cereal Chem., 53, 258-269
  6. Macritchie, F.M. (1973) Conversion of a weak flour to a strong one by increasing the proportion of its high molecular weight gluten protein. J. Sci. Food Agric., 24, 1325-1329 https://doi.org/10.1002/jsfa.2740241103
  7. Tanaka, K. and Bushuk, W. (1973) Change in flour proteins during dough-mixing. Ⅱ. Gelfiltration and electrophoresis results. Cereal Chem., 50, 597-605
  8. Hamada, A.S., McDonald, C.E and Sibbitt, L.D. (1982) Relationship of protein fraction of spring wheat flour to baking quality. Cereal Chem., 59, 296-301
  9. Sathe, S.K., Ponte, J.G., Rangnekar, P.D. and Salunkhe, D.K. (1981) Effects of addition of great Northern bean flour and protein concentrates properties of dough and baking quality of bread. Cereal Chem., 58, 97-100
  10. Campos, J.E. and EI-Dash, A.A. (1978) Effects of addition of full fat sweet lupine flour on rheological properties of dough and baking quality of bread. Cereal Chem., 55, 619-627
  11. Dappolonia, B.L. (1977) Rheological and baking studies of legume-wheat flour blends. Cereal Chem., 54, 53-63
  12. Rhee, C. (1998) Effect of Soy protein isolate on the Baking Qualities of Bread. Korean J. Food Sci. Technol., 30, 1295-1300
  13. Finney, K.F. and Shogren, M.D. (1972) A ten-gram mixograph for determining and predicting functional properties of wheat flour. Baker's Dig., 46, 32
  14. Tsen, C.C. and Tang, R.T., (1971) K-State process for making high protein breads. Ⅰ. Soy flour bread. Baker's Dig., 45, 26-32
  15. Marnett, L.F., Tenney, R.J. and Barry, V.D. (1973) Methods of producing soy fortified breads. Cereal Sci. Today., 18, 38-50
  16. Tsen, C.C. Hoover, W.J. (1973) High protein breads from wheat flour fortified with full-fat soy flour. Cereal Chem., 50, 7-16
  17. Kim, S.K. (1976) On bread staling with emphasis on the role of starch. Korean J. Food Sci. Technol., 8, 185-190
  18. Kim, Y. H., Choi, K.S., Son, D.H. and Kim, J.H. (1969) Rheological properties of dough with whole wheat flour. J. Korean Soc. Food Sci. Nutr., 25, 817-823
  19. Ryu, I.S. and Oh, N.W. (1980) Bread baking characteristics of Korean wheat varieties seen from their amino acid composition. Korean J. Food Sci. Technol., 12, 205-208
  20. 장재선, 한판주, 김규식 (1964) 농사시험 연구보고, 농촌진흥청, 7 241-245
  21. Chung, O.K. (1981) A three way contribution of wheat flour lipids, shortening and surfactants to bread-making. Korean J. Food Sci Technol., 13, 74-89
  22. Caragay, A. B. (1992) Cancer-preventive foods and ingredients. Food Technol., 46, 65
  23. 손동화 (1997) 두유와 우유의 영양 및 생리활성성분(총설). 한국콩연구회지, 14, 66-69
  24. American Association of Cereal Chemists (1983) Approved Method of the A.A.C.C., 8th ed. Method 10-10A, The Association, St. Paul, Minn.
  25. American Association of Cereal Chemists (1983) Approved Method of the A.A.C.C., 8th ed. Method 54-21, The Association, St. Paul, Minn.
  26. American Association of Cereal Chemists (1983) Approved Method of the A.A.C.C., 8th ed. Method 54-10, The Association, St. Paul, Minn.
  27. American Association of Cereal Chemists (1983) Approved Method of the A.A.C.C., 8th ed. Method 22-10, The Association, St. Paul, Minn
  28. Sych, J., Castaigne, F. and Lacroix, C. (1987) Effects of initial moisture and storage relative humidity on textural changes of layer cakes during strage. J. Food Sci., 52, 1604-1610 https://doi.org/10.1111/j.1365-2621.1987.tb05888.x
  29. Boycioglu, M.H. and D'Appolonea, B.L. (1994) Characterization and utilization of durum wheat for breadmaking. Comparison of chemical, rheological and baking properties between bread wheat flours and durum flours. Cereal Chem., 71, 21-28
  30. El-Adawy, T.A. (1997) Effects of sesame seed protein supplementation on the nutritional, physical, chemical and sensory properties of wheat flour bread. Food Chem., 59, 7-14 https://doi.org/10.1016/0308-8146(95)00197-2
  31. Pyler, E.J. (1988) Baking Science and Technology. 3rd ed., vol.Ⅰ, pp. 308-329 Sosland Pub. Co., Merriam, Kansas, U.S.A.
  32. Hosenney, R.C., Hsu, K.H. and Junge, R.C. (1979) A simple spread test to measure the rheological properties of fermentation dough. Cereal Chem., 56, 141-148
  33. Kwon, H.R. and Ahn, M.S. (1995) A study on rheological and general baking properties of breads and their rusks prepared of various flours(1). Korean J. Food Sci. 11, 479-486
  34. Schropp, P. and Wieser, H. (1996) Effect of high molecular weight subunit of glutenin on the rheological properties of wheat gluten. Cereal Chem., 73, 410-413