Czech J. Food Sci., 2013, 31(3):292-305 | DOI: 10.17221/524/2011-CJFS
New model for flavour quality evaluation of soy sauceOriginal Paper
- Key Laboratory of Industrial Biotechnology of Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi, Jiangsu Province, P.R. China
The soy sauce samples established a model for its flavour quality evaluation. Initially, 39 types of flavour compounds, organic acids and free amino acids in six different types of soy sauce were identified and determined by HS-SPME GC/MS and HPLC. The model was developed based on the principal component analysis method for assessing and ranking of flavour quality of soy sauce. Using the principal component analysis which simplifies complex information, our correlative evaluation model was established, tested by comparing the traditional sensory evaluation method, providing a new methodology for objective evaluation of the flavour quality of soy sauce.
Keywords: headspace solid phase micro-extraction (HS-SPME); gas chromatography mass spectrum (GC, MS); high performance liquid chromatography (HPLC); principal component analysis; sensory evaluation; modelling
Published: June 30, 2013 Show citation
References
- Aceves-Lara C.A., Latrille E., Buffiere P. (2008): Experimental determination by principal component analysis of a reaction pathway of biohydrogen production by anaerobic fermentation. Chemical Engineering and Processing, 47: 1968-1975.
Go to original source...
- Aires F., Chedin A., Nadal J.P. (2000): Independent component analysis of multivariate time series: application to tropical SST variability. Journal of Geophysical Research: Atmospheres, 105: 437-455.
Go to original source...
- Baer I., De La Calle B., Taylor P. (2010): 3-MCPD in food other than soy sauce or hydrolysed vegetable protein (HVP). Analytical and Bioanalytical Chemistry, 396: 443-456.
Go to original source...
Go to PubMed...
- Barros M. M., Lim C., Klesius P.H. (2002): Effect of soybean meal replacement by cottonseed meal and iron supplementation on growth, immune response and resistance of Channel Catfish (Ictalurus puctatus) to Edwardsiella ictaluri challenge. Aquaculture Research, 207: 263-279.
Go to original source...
- Boutry C., Bos C., Tome D. (2008): Amino acid requirements. Nutrition Clinique et Metabolisme, 22: 151-160.
Go to original source...
- Erinc H., Tekin A., Ozcan M.M. (2009): Determination of fatty acid, tocopherol and phytosterol contents of the oils of various poppy (Papaver somniferum L.) seeds. Grasas Y Aceites, 60: 375-381.
Go to original source...
- Fonville J.M., Richards S.E., Barton R.H. (2010): The evolution of partial least squares models and related chemometric approaches in metabonomics and metabolic phenotyping. Journal of Chemometrics, 24: 636-649.
Go to original source...
- He N., Wang S.Q., Xie L. (2004): An improved adaptive multi-way principal component analysis for monitoring streptomycin fermentation process. Chinese Journal of Chemical Engineering, 12: 96-101. (In Chinese)
- Kataoka S. (2005): Functional effects of Japanese style fermented soy sauce (shoyu) and its components. Journal of Bioscience and Bioengineering, 100: 227-234.
Go to original source...
Go to PubMed...
- Keiko I., Tetsuo A. (1999): Differentiation of soy sauce by pattern recognition analysis of mid- and near-IR spectra. Journal of Food Composition and Analysis, 12: 197-209.
Go to original source...
- Lee D.S., Noh B.S., Bae S.Y. (1998): Characterization of fatty acid composition in vegetable oils by gas chromatography and chemometrics. Analytica Chimica Acta, 358: 163-175.
Go to original source...
- Li S.Y., Zong W., Zhang P.Q. (2010a): Application in the sensory assess of condiment with fuzzy mathematics general judgement. China Condiment, 7: 27-29. (In Chinese)
- Li Y., Zhao H.F., Zhao M.M. (2010n): Relationships between antioxidant activity and quality indices of soy sauce: an application of multivariate analysis. International Journal of Food Science and Technology, 45: 133-139.
Go to original source...
- Liu R.Q. (2004): Sensory tasting of soy sauce. China Condiment, 3: 39-40. (In Chinese)
- Park M.K., Cho I.H., Lee S. (2010): Metabolite profiling of cheonggukjang, a fermented soybean paste, during fermentation by gas chromatography-mass spectrometry and principal component analysis. Food Chemistry, 122: 1313-1319.
Go to original source...
- Rhee J.I., Kang T.H., Lee K.I. (2006): Application of principal component analysis and self-organizing map to the analysis of 2D fluorescence spectra and the monitoring of fermentation processes. Biotechnology and Bioprocess Engineering, 11: 432-441.
Go to original source...
- Setuer B., Sehulz H., Lager E. (2001): Classification and analysis of citrus oils by NIR spectroscopy. Food Chemistry, 72: 113-137.
Go to original source...
- Wanakhachornkrai P., Lertsiri S. (2003): Comparison of determination method for volatile compounds in Thai soy sauce. Food Chemistry, 83: 619-629.
Go to original source...
- Worden K., Staszewski W.J., Hensman J.J. (2011): Natural computing for mechanical systems research: a tutorial overview. Mechanical Systems and Signal Processing, 25: 4-111.
Go to original source...
- Yang S.O., Kim S.H., Cho S. (2009): Classification of fermented soymilk during fermentation by H-1 NMR coupled with principal component analysis and elucidation of free-radical scavenging activities. Bioscience, Biotechnology, and Biochemistry, 73: 1184-1188.
Go to original source...
Go to PubMed...
- Zhang Y.F., Tao W.Y. (2009): Flavor and taste compounds analysis in Chinese solid fermented soy sauce. African Journal of Biotechnology, 8: 673-681. (In Chinese)
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