共 19 条
- [11] HIRASAWA R, YOKOIGAWA K, ISOBE Y, Et al., Improving the freeze tolerance of bakers' yeast by loading with trehalose, Bioscience, Biotechnology and Biochemistry, 65, 3, pp. 522-526, (2001)
- [12] WOLT M J, D'APPOLONIA B L., Factors involved in the stability of frozen dough.I.The influence of yeast reducing compounds on frozendough stability, Journal of Cereal Science, 61, 3, pp. 209-212, (1984)
- [13] SELOMULYO V O, ZHOU W B., Frozen bread dough: effects of freezing storage and dough improver, Journal of Cereal Science, 45, 1, pp. 1-17, (2007)
- [14] LU L, XING J J, YANG Z, Et al., Influence of ε-poly-L-lysine treated yeast on gluten polymerization and freeze-thaw tolerance of frozen dough, Food Chemistry, 343, 1, (2020)
- [15] LIU T, NIU M, HOU G G., Protein polymerization in dumpling wrappers influenced by folding patterns, Food Chemistry, 305, (2020)
- [16] YANG J J, ZHANG B, ZHANG Y Q, Et al., Effect of freezing rate and frozen storage on the rheological properties and protein structure of non-fermented doughs, Journal of Food Engineering, 293, (2021)
- [17] pp. 52-56, (2018)
- [18] DING S Y, YANG J., The influence of emulsifiers on the rheological properties of wheat flour dough and quality of fried instant noodles, LWT-Food Science and Technology, 53, 1, pp. 61-69, (2013)
- [19] YANG M, YUE Y, LIU L Y., Investigation of combined effects of xylanase and glucose oxidase in whole wheat buns making based on reconstituted model dough system, LWT-Food Science and Technology, 135, (2021)