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Evaluation of the rheological properties of the dough and the characteristics of the bread with the addition of purple potato


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[1]. V. Bártová, J. Bárta, A. Brabcová, K. Zdráhal, V. Horáčková, Amino acid composition and nutritional value of four cultivated South American potato species, Journal of Food Composition and Analysis 40 (2015) 78–85.10.1016/j.jfca.2014.12.006 Search in Google Scholar

[2]. Q.A. Curayag, E.I. Dizon, W.A Hurtada, F. Yildiz, Antioxidant activity, chemical and nutritional properties of raw and processed purple-fleshed sweet potato (Ipomoea batatas Lam.), Cogent Food & Agriculture 5 (2019) 1-13.10.1080/23311932.2019.1662930 Search in Google Scholar

[3]. H.W. Kim, J.B. Kim, S.M. Mi, N.C. Lee, Y.M. Chu, S.M. Che, J.H. Kim, S.N. Kim, S.Y. Cho, Y.S. Anthocyanin changes in the Korean purple-fleshed sweet potato, Food Chemistry 130 (2012) 966–97210.1016/j.foodchem.2011.08.031 Search in Google Scholar

[4]. I. Aoran, X. Ruoshi, H. Sijia, A. Xiaoyu, H. Yi, W. Chengtao, Y. Sheng, B. Wang, S. Xuewei, H. Jingren, Research advances of purple sweet potato anthocyanins: extraction, identification, stability, bioactivity, application, and biotransformation, Molecules 24 (2019) 24-29. Search in Google Scholar

[5]. X.L. Liu, T.H Mu, H.N. Sun, M. Zhang, J.W. Chen, Influence of potato flour on dough rheological properties and quality of steamed bread, Journal of Integrative Agriculture 15 (2016) 2666–2676.10.1016/S2095-3119(16)61388-6 Search in Google Scholar

[6]. A. Castañeda-Ovando, M.L. de Pacheco-Hernández, M.E Páez-Hernández, J.A. Rodríguez, C. Galán-Vidal, Chemical studies of anthocyanins: A review, Food Chemistry 113 (2009) 859-871.10.1016/j.foodchem.2008.09.001 Search in Google Scholar

[7]. Z. Long, Z. Linglong, B. K. Xiaofeng, G. Lu, Z. Cunxu, Characterization and comparative study of starches from seven purple sweet potatoes, Food Hydrocolloids 80 (2018) 168-176.10.1016/j.foodhyd.2018.02.006 Search in Google Scholar

[8]. I. Suda, F. Ishikawa, M. Hatakeyama, M. Miyawaki, T. Kudo, K. Hirano, A. Ito, O. Yamakawa, S. Horiuchi, Intake of purple sweet potato beverage effects on serum hepatic biomarker levels of healthy adult men with borderline hepatitis, European Journal of Clinical Nutrition 62 (2008) 60–67.10.1038/sj.ejcn.160267417299464 Search in Google Scholar

[9]. Z.F. Zhang, S.H. Fan, Y.L. Zheng, J. Lu, D.M. Wu, Q. Shan, B. Hu, Purple sweet potato color attenuates oxidative stress and inflammatory response induced by D-galactose in mouse liver, Food and Chemical Toxicology 47 (2009) 496–501.10.1016/j.fct.2008.12.00519114082 Search in Google Scholar

[10]. S. Lim, J. Xu, J. Kim, T.Y. Chen, X. Su, J. Standard, E. Carey, J. Griffin, B. Herndon, B. Katz, Role of anthocyanin-enriched purple-fleshed sweet potato P40 in colorectal cancer prevention, Molecular Nutrition & Food Research 57 (2013) 1908–1917.10.1002/mnfr.201300040398056523784800 Search in Google Scholar

[11]. D. M. Santiago, K. Matsushita, T. Noda, K. Tsuboi, D. Yamada, D. Murayama, H. Koaze, H. Yamauchi, Effect of purple sweet potato powder substitution and enzymatic treatments on bread making, Journal of Food Science and Technology 3 (2015)159–65. Search in Google Scholar

[12]. E. Rodriguez-Sandoval, G. Sandoval, M. Cortes-Rodríguez, Effect of quinoa and potato flours on the thermomechanical and bread making properties of wheat flour, Brazilian Journal of Chemical Engineering 29 (2012) 503 – 510.10.1590/S0104-66322012000300007 Search in Google Scholar

[13]. A.R. Yadav, M. Guha, R.N. Tharanathan, R.S. Ramteke, Influence of drying conditions on functional properties of potato flour, European Food Research and Technology 22 (2006) 553-560.10.1007/s00217-005-0237-1 Search in Google Scholar

[14]. G.G. Codina, Influence of flour quality with different extraction ratio on the rheological properties of uniaxial extension induced by the mixolab, Journal of Agroalimentary Processes and Technologie 14 (2008) 119-122. Search in Google Scholar

[15]. SR ISO 5530-4- Wheat flour (Triticum aestivum L.) — Physical characteristics of doughs — Part 4: Determination of rheological properties using an Alveograph, (2002). Search in Google Scholar

[16]. A. Misra, K. Kulshrestha, Potato flour incorporation in biscuit manufacture, Plant Foods for Human Nutrition 58 (2003) 1-9. Search in Google Scholar

[17]. P.Ł. Kowalczewski, K. Walkowiak, Ł. Masewicz, O. Bartczak, J. Lewandowicz, P. Kubiak, H.M. Baranowska, Gluten-Free Bread with Cricket Powder—Mechanical Properties and Molecular Water Dynamics in Dough and Ready Product, Foods 8 (2019) 240-252.10.3390/foods8070240667856731277294 Search in Google Scholar

[18]. SR:91- Paine si Produse de Patiserie, Metode de Analiza; ASRO Publisher House: Bucharest, (2007). Search in Google Scholar

[19]. J. Korus, L. Juszczak, R. Ziobro, M. Witczak, K. Grzelak, M. Sójka, Defatted strawberry and blackcurrant seeds as functional ingredients of gluten-free bread, Journal Texture Studies 43 (2012) 29–39.10.1111/j.1745-4603.2011.00314.x Search in Google Scholar

[20]. A. Mondal, A.K. Datta, Bread baking - A review, Journal of Food Engineering, 86 (2008) 465–474. Search in Google Scholar

[21]. S.K. Maktouf, B. Jeddou, C. Moulis, H. Hajji, M. Remaud-Simeon, R. Ellouz-Ghorbel, Evaluation of dough rheological properties and bread texture of pearl millet-wheat flour mix, Journal of Food Science and Technology 53 (2016) 2061–2066.10.1007/s13197-015-2065-z492689027413235 Search in Google Scholar

[22]. A. Romano, G. Toraldo, S. Cavella, P. Masi, Description of leavening of bread dough with mathematical modelling, Journal of Food Engineering 83 (2007) 142–148.10.1016/j.jfoodeng.2007.02.014 Search in Google Scholar

[23]. D. Kumar, M. Taihua, M. Mengmei, Effects of potato flour on dough properties and quality of potato-wheat-yogurt pie bread, Nutrition & Food Science 50 (2019) 885-901.10.1108/NFS-05-2019-0158 Search in Google Scholar

[24]. S. Hongrui, L. Xiangying, T. Zhigang, F. Jieying, M. Yue, N. Xiping, Y. Zhiqiang, Z. Xianpeng, K. Lining, Influence of Potato Flour on Dough and Steamed Bread Quality and Correlation Analysis, International Journal of Food Engineering 16 (2020) 464–470. Search in Google Scholar

[25]. N. Asad, X. Zhouyi, L. Qing, X. Hanguo, L. Jing, C. Lei, W. Pengkai, W. Noman, I. Sana, J.M. Regenstein, Effect of wheat flour replacement with potato powder on dough rheology. physiochemical and microstructural properties of instant noodles, Journal of Food Processing and Preservation 43 (2019) 127-138. Search in Google Scholar

[26]. T. Chunsheng, W. Kejian, L. Xuejun, G. Ertong, Effects of potato starch on the properties of wheat dough and the quality of fresh noodles, CyTA - Journal of Food 18 (2020) 427-434.10.1080/19476337.2020.1768152 Search in Google Scholar

[27]. J. Li, G. G. Hou, Z. X. Chen, A. L. Chung, K. Gehring, Studying the effects of whole-wheat flour on the rheological properties and the quality attributes of whole-wheat saltine cracker using SRC, alveograph, rheometer, and NMR technique, Food Science and Technology LWT 55 (2014) 43–50.10.1016/j.lwt.2013.07.022 Search in Google Scholar

[28]. X. L. Cao, S. M. Zhou, C. P. Yi, W. Li, H. F. Qian, H Zhang, X.G. Qi, Effect of whole flour on the quality, texture profile and oxidation stability of instant fried noodles, Journal of Texture Studies 48 (2017) 607–615.10.1111/jtxs.1227428472852 Search in Google Scholar

[29]. X. Fen, H. Honghai, L. Qiannan, D. Xiaofeng, Z. Hong, Rheological and microstructural properties of wheat flour dough systems added with potato granules, International Journal of Food Properties 20 (2017) S1145–S1157.10.1080/10942912.2017.1337791 Search in Google Scholar

[30]. W. Kun-Lun, S. Wen-Chieh, Y. Chuan-Hua, Characteristics of dough and bread as affected by the incorporation of sweet potato paste in the formulation, Journal of Marine Science and Technology 17 (2009) 13-22. Search in Google Scholar

[31]. CIE. Colorimetry, 2nd Edition ed; Publication CIE No 15.2; Central Bureau of the Commission Internationale de L’Eclairage: Vienna, Austria, 1986. Search in Google Scholar

[32]. V. Jovanka, J. Popov-Raljić, S. Mastilović, G. Jovanka, P. Laličić, S. P. Vladimir, Investigations of bread production with postponed staling applying instrumental measurements of bread crumb color, Sensors 9 (2009) 8613-8623.10.3390/s91108613326060422291527 Search in Google Scholar

[33]. M. Gómez, F. Ronda, C. A. Blanco, P. A. Caballero, A. Apesteguía, Effect of dietary fiber on dough rheology and bread quality, European Food Research Technology 216 (2003) 51-56.10.1007/s00217-002-0632-9 Search in Google Scholar

[34]. W. Kun-Lun, S. Wen-Chieh, Y. Chuan-Hua, Characteristics of dough and bread as affected by the incorporation of sweet potato paste in the formulation, Journal of Marine Science and Technology 17 (2009) 13-22. Search in Google Scholar

[35]. K. Matsushita, J. Iwata, D. Goshima, D. M. Santiago, T. Nakamura, H. Yamauchi, Bread making improvement of mashed potato-supplemented dough by treating with optimal bakery enzymes, Food Science and Technology Research 25 (2019) 245-255.10.3136/fstr.25.245 Search in Google Scholar

eISSN:
2286-038X
Language:
English
Publication timeframe:
2 times per year
Journal Subjects:
Chemistry, other