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Original Article

Consumer preference of Chinese traditional fermented fava pastes

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Pages 2469-2490 | Received 07 Jul 2018, Accepted 21 Sep 2018, Published online: 10 Oct 2018

References

  • Li, Z.-H.; Rui, J.-P.; Li, X.-Z.; Lin, J.-B.; Dong, L.; Huang, Q.-L.; Huang, C.; Wang, Z.-P.; Li, L.; Xuan, P.; Tang, Y.-M.; Chen, F.-S., Bacterial Community Succession and Metabolite Changes during Doubanjiang-Meju Fermentation, a Chinese Traditional Fermented Broad Bean (Vicia Faba L.) Paste. Food Chemistry. 2017, 218, 534–542. DOI: 10.1016/j.foodchem.2016.09.104.
  • Li, X.; Zhao, C.; Zheng, C.; Liu, J.; Vu, V.-H.; Wang, X.; Sun, Q., Characteristics of Microbial Community and Aroma Compounds in Traditional Fermentation of Pixian Broad Bean Paste as Compared to Industrial Fermentation. International Journal of Food Properties. 2018, 20, 1–12. DOI: 10.1080/10942912.2017.1373358.
  • Zhu, L.-J.; Fan, Z.-H.; Kuai, H.; Li, Q., Batch-Batch Stable Microbial Community in the Traditional Fermentation Process of Huyumei Broad Bean Pastes. Letters in Applied Microbiology. 2017, 65, 226–232. DOI: 10.1111/lam.12765.
  • Niu, C.-T.; Fan, Z.-H.; Zheng, F.-Y.; Li, Y.-X.; Liu, C.-F.; Wang, -J.-J.; Li, Q., Isolation and Identification of Gas-Producing Spoilage Microbes in Fermented Broad Bean Paste. Food Control. 2017, 84, 8–16. DOI: 10.1016/j.foodcont.2017.07.004.
  • Zhu, X.-L.; Watanabe, K.; Shiraishi, K.; Ueki, T.; Noda, Y.; Matsui, T.; Matsumoto, K., Identification of ACE-Inhibitory Peptides in Salt-Free Soy Sauce That Are Transportable across Caco-2 Cell Monolayers. Peptides. 2008, 29, 338–344. DOI: 10.1016/j.peptides.2007.11.006.
  • Lee, S.-J.; Ahn, B., Comparison of Volatile Components in Fermented Soybean Pastes Using Simultaneous Distillation and Extraction (SDE) with Sensory Characterisation. Food Chemistry. 2009, 114, 600–609. DOI: 10.1016/j.foodchem.2008.09.091.
  • Kobayashi, K.; Horii, Y.; Watanabe, S.; Kubo, Y.; Koguchi, K.; Hoshi, Y.; Matsumoto, K.-I.; Soda, K., Comparison of Soybean Cultivars for Enhancement of the Polyamine Contents in the Fermented Soybean Natto Using Bacillus subtilis (Natto). Bioscience, Biotechnology, and Biochemistry. 2017, 81, 587–594. DOI: 10.1080/09168451.2016.1270738.
  • Giri, A.; Osako, K.; Okamoto, A., Antioxidative Properties of Aqueous and Aroma Extracts of Squid Miso Prepared with Aspergillus oryzae-Inoculated Koji. Food Research International. 2011, 44, 317–325. DOI: 10.1016/j.foodres.2010.10.013.
  • Smriga, M.; Mizukoshi, T.; Iwahata, D.; Eto, S.; Miyano, H.; Kimura, T.; Curtis, R.-I., Amino Acids and Minerals in Ancient Remnants of Fish Sauce (Garum) Sampled in the “Garum Shop” of Pompeii, Italy. Journal of Food Composition and Analysis. 2010, 23, 442–446. DOI: 10.1016/j.jfca.2010.03.005.
  • He, G.; Huang, J.; Liang, R.; Wu, C.; Zhou, R., Comparing the Differences of Characteristic Flavour between Natural Maturation and Starter Culture for Mucor‐Type Douchi. International Journal of Food Science and Technology. 2016, 51, 1252–1259. DOI: 10.1111/ijfs.13077.
  • Chou, -C.-C.; Hwan, C.-H., Effect of Ethanol on the Hydrolysis of Protein and Lipid during the Ageing of a Chinese Fermented Soya Bean Curd–Sufu. Journal of the Science of Food and Agriculture. 2010, 66, 393–398. DOI: 10.1002/jsfa.2740660318.
  • Yin, L.-J.; Li, L.-T.; Li, Z.-G.; Tatsumi, E.; Saito, M., Changes in Isoflavone Contents and Composition of Sufu (Fermented Tofu) during Manufacturing. Food Chemistry. 2004, 87, 587–592. DOI: 10.1016/j.foodchem.2004.01.011.
  • Chung, H.-Y.; Fung, P.-K.; Kim, J.-S. Aroma Impact Components in Commercial Plain Sufu. Journal of Agricultural and Food Chemistry. 1684–1691, 2005(53). DOI: 10.1021/jf048617d.
  • Ma, Y.; Cheng, Y.; Yin, L.; Wang, J.; Li, L. Effects of Processing and NaCl on Angiotensin I-Converting Enzyme Inhibitory Activity and γ-Aminobutyric Acid Content during Sufu Manufacturing. Food and Bioprocess Technology. 1782–1789, 2013(6). DOI: 10.1007/s11947-012-0852-3.
  • Chen, Y.-P.; Chung, H.-Y., Development of A Lexicon for Commercial Plain Sufu (Fermented Soybean Curd). Journal of Sensory Studies. 2016, 31, 22–33. DOI: 10.1111/joss.12187.
  • Jo, Y.-J.; Cho, I.-H.; Song, C.-K.; Shin, H.-W.; Kim, Y.-S., Comparison of Fermented Soybean Paste (Doenjang) Prepared by Different Methods Based on Profiling of Volatile Compounds. Journal of Food Science. 2011, 76, C368–C379. DOI: 10.1111/j.1750-3841.2011.02068.x.
  • Ding, X.-L.; Qin, L. Evolution of Proteolytic Tasty Components during Preparation of Douchiba, a Traditional Chinese Soy-Fermented Appetizer. Food Technology & Biotechnology. 2007, 45, 85–90.
  • Yokotsuka, T.; Asao, Y.; Sakasai, T., Studies of the Flavorous Substances in Shoyu Part XXVII:The Production of 4-Ethylguaiacol during Shoyu Fermentation, and Its Role for Shoyu Flavor. Nippon Nōgeikagaku Kaishi. 1967, 41, 442–447. DOI: 10.1271/nogeikagaku1924.41.9_442.
  • Hayashida, Y.;, Flavor-Active Furanones, HEMF and HDMF. The Formation Mechanism by Micro-Organisms and Enhancement Techniques in Brewing Industry. Journal of the Society of Brewing Japan. 2003, 98, 89–95. DOI: 10.6013/jbrewsocjapan1988.98.89.
  • Sugawara, E.; Hashimoto, S.; Sakurai, Y.; Kobayashi, A., Formation by Yeast of the HEMF (4-Hydroxy-2(Or 5)-Ethyl-5(Or 2)-Methyl-3(2h)-Furanone) Aroma Component in Miso with Aging. Bioscience Biotechnology and Biochemistry. 2008, 58, 1134–1135. DOI: 10.1271/bbb.58.1134.
  • Lin, C.-H.; Wei, Y.-T.; Chou, -C.-C., Enhanced Antioxidative Activity of Soybean Koji Prepared with Various Filamentous Fungi. Food Microbiology. 2006, 23, 628–633. DOI: 10.1016/j.fm.2005.12.004.
  • Rho, S.-J.; Lee, J.-S.; Yong, I.-C.; Kim, Y.-W.; Lee, H.-G., Purification and Identification of an Angiotensin I-Converting Enzyme Inhibitory Peptide from Fermented Soybean Extract. Process Biochemistry. 2009, 44, 490–493. DOI: 10.1016/j.procbio.2008.12.017.
  • Raksakulthai, N.; Haard, N.-F. Correlation between the Concentration of Peptides and Amino Acids and the Flavour of Fish Sauce. Asean Food Journal. 1992.
  • Ogasawara, M.; Katsumata, T.; Egi, M., Taste Properties of Maillard-Reaction Products Prepared from 1000 to 5000 Da Peptide. Food Chemistry. 2006, 99, 600–604. DOI: 10.1016/j.foodchem.2005.08.040.
  • Rhyu, M.-R.; Kim, E.-Y., Umami Taste Characteristics of Water Extract of Doenjang, a Korean Soybean Paste: Low-Molecular Acidic Peptides May Be a Possible Clue to the Taste. Food Chemistry. 2011, 127, 1210–1215. DOI: 10.1016/j.foodchem.2011.01.128.
  • Hong, J.-H.; Lee, K.-W.; Chung, S.; Chung, L.; Kim, H.-R.; Kim, K.-O.; Characteristics, S., Cross-Cultural Comparisons of Consumer Acceptability for Gochujang Dressing. Food Science and Biotechnology. 2012, 21, 829–837. DOI: 10.1007/s10068-012-0107-0.
  • Chung, L.; Chung, S.-J., Cross-Cultural Comparisons among the Sensory Characteristics of Fermented Soybean Using Korean and Japanese Descriptive Analysis Panels. Journal of Food Science. 2007, 72, S676–S688. DOI: 10.1111/j.1750-3841.2007.00542.x.
  • Kim, H.-G.; Hong, J.-H.; Song, C.-K.; Shin, H.-W.; Kim, K.O.; Characteristics, S., Consumer Acceptability of Fermented Soybean Paste (Doenjang). Journal of Food Science. 2010, 75, S375–S383. DOI: 10.1111/j.1750-3841.2010.01771.x.
  • Kim, M.-K.; Han, S.K.; Mi, J.K.; Sang, S.K., Identification of Sensory Characteristics that Drive Consumer Preferences of Commercially Mass‐Produced Doenjang in Korea. Journal of Sensory Studies. 2018, 33, e12323. DOI: 10.1111/joss.12323.
  • Breternitz, N.-R.; Bolini, H.-M.-A.; Hubinger, M.-D., Sensory Acceptance Evaluation of a New Food Flavoring Produced by Microencapsulation of a Mussel (Perna Perna) Protein Hydrolysate. LWT- Food Science and Technology. 2017, 83, 141–149. DOI: 10.1016/j.lwt.2017.05.016.
  • Meilgaard, M.-C.; Carr, B.-T.; Civille, G.-V. Sensory Evaluation Techniques, Fourth ed.; CRC Press: Boca Raton, Florida, USA, 2006.
  • Fung, P.-K.; Principal Component Analysis of the Volatile Flavor Components and the Lexicons of the Commercial Plain Fermented Soybean Curds. The Chinese University of Hong Kong,Hong Kong SAR, China, Thesis, Chapter 4, 2004; pp 70–108.
  • Barden, L.-M.; Drake, M.-A.; Foegeding, E.-A., Impact of Sample Thickness on Descriptive Texture Analysis of Cheddar Cheese. Journal of Sensory Studies. 2012, 27, 286–293. DOI: 10.1111/j.1745-459X.2012.00392.x.
  • Półtorak, A.; Wyrwisz, J.; Moczkowska, M.; Marcinkowska-Lesiak, M.; Stelmasiak, A.; Ulanicka, U.; Zalewska, M.; Wierzbicka, A.; Sun, D.-W., Correlation between Instrumental Texture and Colour Quality Attributes with Sensory Analysis of Selected Cheeses as Affected by Fat Contents. International Journal of Food Science and Technology. 2015, 50, 999–1008. DOI: 10.1111/ijfs.12707.
  • Cherdchu, P.-E.; Chambers, I.-V.; Suwonsichon, T., Sensory Lexicon Development Using Trained Panelists in Thailand and the U.S.A.: Soy Sauce. Journal of Sensory Studies. 2013, 28, 248–255. DOI: 10.1111/joss.12041.
  • Roh, S.-H.; Lee, S.-M.; Sang, S.-K.; Kim, K.-O., Importance of Applying Condiments in A Commonly Consumed Food System for Understanding the Association between Familiarity and Sensory Drivers of Liking: A Study Focused on Doenjang. Journal of Food Science. 2018, 83, 464–467. DOI: 10.1111/1750-3841.14040.
  • Shim, J.-M.; Lee, K.-W.; Yao, Z.; Kim, H.-J.; Kim, J.-H., Properties of Doenjang (Soybean Paste) Prepared with Different Types of Salts. Journal of Microbiology and Biotechnology. 2016, 26, 1533–1541. DOI: 10.4014/jmb.1605.05019.
  • Bongkuk, K.; Kimyong, K.; Hong, Y.-S.; Cherlho, L., Metabolomic Assessment of Fermentative Capability of Soybean Starter Treated with High Pressure. Journal of Agricultural and Food Chemistry. 2010, 58, 8738–8747. DOI: 10.1021/jf101994u.
  • Null, A.O.A.C.;. Official Method of Analysis; AOAC International: Rockville, Maryland, USA, 2000.
  • Liu, P.; Huang, M.-G.; Song, S.-Q.; Hayat, K.; Zhang, X.-M.; Jia, C.-S. Sensory Characteristics and Antioxidant Activities of Maillard Reaction Products from Soy Protein Hydrolysates with Different Molecular Weight Distribution. Food and Bioprocess Technology. 1775–1789, 2012(5). DOI: 10.1007/s11947-010-0440-3.
  • Vandendool, H.; Kratz, P.-D.A., Generalization of the Retention Index Syetem Including Linear Temperature Programmed Gas-Liquid Partition Chromatography. Journal of Chromatography A. 1963, 11, 463–471. DOI: 10.1016/S0021-9673(01)80947-X.
  • Xie, J.-C.; Sun, B.-G.; Zheng, F.-P.; Wang, S.-B., Volatile Flavor Constituents in Roasted Pork of Mini-Pig. Food Chemistry. 2008, 109, 506–514. DOI: 10.1016/j.foodchem.2007.12.074.
  • Gao, L.; Liu, T.; An, X.; Zhang, J.; Ma, X.; Cui, J., Analysis of Volatile Flavor Compounds Influencing Chinese-Type Soy Sauces Using GC-MS Combined with HS-SPME and Discrimination with Electronic Nose. Journal of Food Science and Technology. 2017, 54, 130–143. DOI: 10.1007/s13197-016-2444-0.
  • Noguchi, M.; Arai, S.; Yamashita, M.; Kato, H.; Fujimaki, M., Isolation and Identification of Acidic Oligopeptides Occurring in a Flavor Potentiating Fraction from a Fish Protein Hydrolysate. Journal of Agricultural and Food Chemistry. 1975, 23, 49–53. DOI: 10.1021/jf60197a003.
  • Maehashi, K.; Matsuzaki, M.; Yamamoto, Y.; Udaka, S., Isolation of Peptides from an Enzymatic Hydrolysate of Food Proteins and Characterization of Their Taste Properties. Bioscience Biotechnology and Biochemistry. 1999, 63, 555–559. DOI: 10.1271/bbb.63.555.
  • Fujimaki, M.; Arai, S.; Yamashita, M.; Kato, H.; Noguchi, M., Taste Peptide Fractionation from a Fish Protein Hydrolysate. Agricultural and Biological Chemistry. 1973, 37, 2891–2898. DOI: 10.1271/bbb1961.37.2891.
  • Kato, H.; Rhue, M.R.; Nishimura, T., Role of Free Amino Acids and Peptides in Food Taste. Acssymp. 1989, 388, 158–173. DOI: 10.1021/bk-1989-0388.ch013.
  • Kirimura, J.; Shimizu, A.; Kimizuka, A.; Ninomiya, T.; Katsuya, N., Contribution of Peptides and Amino Acids to the Taste of Foods. Journal of Agricultural and Food Chemistry. 1969, 17, 689–695. DOI: 10.1021/jf60164a031.
  • Solms, J.;, The Taste of Amino Acids, Peptides and Proteins. Internationale Zeitschrift Fur Vitaminforschung. International Journal of Vitamin Research. Journal International De Vitaminologie. 1969, 39, 320–322. DOI: 10.1021/jf60164a016.
  • Nakamura, M.;, Isolation of Mutants of Miso Yeast, Zygosaccharomyces Rouxii with High Productivity of C3 to C5 Alcohols. Journal of the Japanese Society for Food Science and Technology. 1990, 37, 981–983. DOI: 10.3136/nskkk1962.37.12_981.
  • Ogasawara, M.; Yamada, Y.; Egi, M., Taste Enhancer from the Long-Term Ripening of Miso (Soybean Paste). Food Chemistry. 2006, 99, 736–741. DOI: 10.1016/j.foodchem.2005.08.051.
  • Mcl, N.; Lubachevsky, G.; Rankin, S.-A.-A., Study of the Volatile Composition of Minas Cheese. LWT - Food Science and Technology. 2005, 38, 555–563. DOI: 10.1016/j.lwt.2004.07.019.
  • Shaw, P.-E.; Tatum, J.-H.; Berry, R.-E. Acid-Catalyzed Degradation of D-Fructose. Carbohydrate Research. 1967, 5, 266–273. DOI: 10.1016/S0008-6215(00)80500-5.
  • Chung, H.-Y.;. Volatile Flavor Components in Red Fermented Soybean (Glycine Max) Curds. Journal of Agricultural & Food Chemistry. 1803–1809, 2000(48). DOI: 10.1021/jf991272s.
  • Fernández-Garcı́A, E.; Carbonell, M.-A.; Gaya, P.; Nuñez, M., Evolution of the Volatile Components of Ewes Raw Milk Zamorano Cheese. Seasonal Variation. International Dairy Journal. 2004, 14, 701–711. DOI: 10.1016/j.idairyj.2003.12.011.
  • Xie, K.-L.; Feng, T.; Lin, W.-H.; Zhuang, H.-N.; Xu, Z.-M.; Bing, F.-L., Correlations between Aroma Profiles and Sensory Characteristics of Red Wines by Using Partial Least Squares Regression Method. Advance Journal of Food Science andTechnology. 2016, 12, 271–280. DOI: 10.19026/ajfst.12.2910.
  • Jo, M.-N.; Lee, Y.-M., Analyzing the Sensory Characteristics and Taste-Sensor Ions of MSG Substitutes. Journal of Food Science. 2010, 73, S191–S198. DOI: 10.1111/j.1750-3841.2008.00769.x.
  • Baryłko-Pikielna, N.; Kostyra, E., Sensory Interaction of Umami Substances with Model Food Matrices and Its Hedonic Effect. Food Quality and Preference. 2007, 18, 751–758. DOI: 10.1016/j.foodqual.2007.01.002.
  • Sinesio, F.; Comendador, F.-J.; Peparaio, M.; Moneta, E., Taste Perception of Umami-Rich Dishes in Italian Culinary Tradition. Journal of Sensory Studies. 2010, 24, 554–580. DOI: 10.1111/j.1745-459X.2009.00226.x.
  • Kawai, M.; Okiyama, A.; Ueda, Y. Taste Enhancements between Various Amino Acids and IMP. Chemical Senses. 2002, 27(8), 739–745. DOI: 10.1093/chemse/27.8.739.
  • Yamaguchi, S.; Ninomiya, K., What Is Umami?. Food Reviews International. 1998, 14, 123–138. DOI: 10.1080/87559129809541155.
  • Bellisle, F.;, Experimental Studies of Food Choices and Palatability Responses in European Subjects Exposed to the Umami Taste. Asia Pacific Journal of Clinical Nutrition. 2008, 17, 376–379. DOI: 10.6133/apjcn.2008.17.s1.94.
  • Taborda, G.; Gómezruiz, J.-A.; Martínezcastro, I.; Amigo, L.; Ramos, M.; Molina, E., Taste and Flavor of Artisan and Industrial Manchego Cheese as Influenced by the Water-Soluble Extract Compounds. European Food Research and Technology. 2008, 227, 323–330. DOI: 10.1007/s00217-007-0769-7.
  • Tian, T.; Wu, J.-R.; Yue, X.-Q., Analysis of Relationship between Sensory Quality and Physiochemical Indexes of Natural Fermented Soybean Paste. Applied Mechanics and Materials. 2014, 508, 75–78. DOI: 10.4028/www.scientific.net/AMM.508.75.
  • Kwak, C.-S.; Lee, M.-S.; Sang, C.-P., Higher Antioxidant Properties of Chungkookjang, a Fermented Soybean Paste, May Be Due to Increased Aglycone and Malonylglycoside Isoflavone during Fermentation. Nutrition Research. 2007, 27, 719–727. DOI: 10.1016/j.nutres.2007.09.004.
  • Ames, J.-M.; Glesni, M., Volatile Components of an Unflavored Textured Soy Protein. Journal of Food Science. 2010, 49, 1552–1565. DOI: 10.1111/j.1365-2621.1984.tb12842.x.
  • Moy, Y.-S.; Lu, T.-J.; Chou, -C.-C., Volatile Components of the Enzyme-Ripened Sufu, a Chinese Traditional Fermented Product of Soy Bean. Journal of Bioscience and Bioengineering. 2012, 113, 196–201. DOI: 10.1016/j.jbiosc.2011.09.021.
  • Hwan, C.-H.; Chou, -C.-C., Volatile Components of the Chinese Fermented Soya Bean Curd as Affected by the Addition of Ethanol in Ageing Solution. Journal of the Science of Food and Agriculture. 2010, 79, 243–248. DOI: 10.1002/(SICI)1097-0010(199902)79:2<243::AID-JSFA179>3.0.CO;2-I.
  • Kobayashi, A.; Sugawara, E. Flavor Components of Shoyu and Miso Japanese Fermented Soybean Seasonings. Flavor Chemistry of Ethnic Foods. 1999, 5–14.
  • Feng, Y.-Z.; Su, G.-W.; Zhao, H.-F.; Cai, Y.; Cui, C.; Sun-Waterhouse, D.-X.; Zhao, -M.-M., Characterisation of Aroma Profiles of Commercial Soy Sauce by Odour Activity Value and Omission Test. Food Chemistry. 2015, 167, 220–228. DOI: 10.1016/j.foodchem.2014.06.057.