






Journal of Tea Science ›› 2006, Vol. 26 ›› Issue (2): 79-86.doi: 10.13305/j.cnki.jts.2006.02.001
TONG Hua-rong, JIN Xiao-fang, GONG Xue-lian
Received:2005-09-16
Revised:2006-03-06
Online:2006-06-25
Published:2019-09-10
CLC Number:
TONG Hua-rong, JIN Xiao-fang, GONG Xue-lian. Sensory Characteristics of Tea Polyphenols and It’s Effects on Astringency of Tea[J]. Journal of Tea Science, 2006, 26(2): 79-86.
| [1] 宛晓春. 茶叶生物化学[M]. 北京: 中国农业出版社, 2003. [2] Scharbert S, Hofmann T.Molecular definition of black tea taste by means of quantitative studies, taste reconstitution, and omission experiments[J]. J Agri Food Chem, 2005, 53(13): 5377~5384. [3] Lea AGH, Arnold GM.The phenoolics of cider: bitterrness and astringency[J]. J Sci Food Agri, 1978(29): 478~483. [4] Kallithraka S, Bakker J. Clifford MN.Evaluation of bitterness and astringency of(+)-catechin and, 1997(12): 25~37. [5] ASTM. Standard definition of terms relating to sensory evaluation of materials and products, In Annual Books of ASTM Standards[M]. American Society for Testing & Materials, Philadephia, 1995: 2~12. [6] Lee CB, Lawless HT.Time-course of astringent materials[J]. Chem. Senses, 1991(16): 225~238. [7] Thorngate JH, Noble AC.Sensory evaluation of bitterness and astringency of 3 R(-)-epicatechin and 3 S, 1995(67): 531~535. [8] Green BG.Oral astringency:a tactile component of flavor. Acta Psychol[J]. 1993(84): 119~125. [9] McManus JP, Davis KG, Lilley T. [10] Kallithraka S, Bakker J, Clifford MN, [11] Robichaud JL, Noble AC.Astringency and Bitterness of selected phenoolic in wine[J]. J Sci Food Agric, 1990(53): 343~353. [12] Kallithraka S, Bakker J, Clifford MN.Evaluation of bitterness and astringency of(+)-catechin and, 1997(12): 25~37. [13] Peleg H, Gacon K, Schlich P.Bitterness and astringency of flavan-3-ol monomers, dimers and trimers[J]. J Sci Food Agri., 1999, 79(8): 1123~1128. [14] Yokotsuka K, Singleton VL.Interactive Precipitation between Graded Peptides from Gelatin and Specific Grape Tannin Fractions in Wine-like Model Solutions[J]. Am J Enol Vitic, 1987, 38(3): 199~206. [15] Jobstl E, O Connell J, Patrick J, [16] Rubico SM, McDaniel MR. Sensory evaluation of acids by free-choice profiling[J]. Chem Senses, 1992(17): 273~289. [17] Lawless HT, Horne J, Giasi P.Astringency of organic acids is related to pH[J]. Chem Senses, 1996, 21(4): 397~403. [18] Valentova H, Skrovankova S, Panovska Z, [19] Sanderson GW, Ranadive AS, Eisenberg LS, [20] Scharbert S, Jezussek M, Hofmann T.Evaluation of the taste contribution of theaflavins in black tea infusions using the taste activity concept[J]. European Food Res Tech A, 2004, 218(5): 442~447. [21] Scharbert S, Holzmann N, Hofmann T.Identification of the Astringent Taste Compounds in Black Tea Infusions by Combining Instrumental Analysis and Human Bioresponse[J]. J Agri Food Chem, 2 004, 52(11): 3498~3508. [22] Andrew GH, Lea G, Arnold M.The phenolics of ciders:Bitterness and astringency[J]. J sci Food Agric, 1978(29): 478~483. [23] Vidal S, Francis L, Guyot S, [24] Brannan GD, Setser CS, Kemp KE.Interaction of astringency and taste characteristics[J]. J Sen Studies, 2001, 16(2): 179~197. [25] Lawless HT, Corrigan CL, Lee CB.Interactions of astringent substances[J]. Chem Senses, 1994(19): 141~154. [26] Noble AC.Astringency and bitterness of flavonoid phenols. In Chemistry of taste mechanisms, behaviors and mimics[C]. Given P, Paredes D, eds. ACS symposium series 825, American Chemical Society, Washington DC.2002, 192~201. [27] Fischer U, Boulton RB, Noble AC.Physiological factors contributing to the variability of sensory assessments: relationships between salivary flow rate and temporal perception of gustatory stimuli[J]. Food Qual Pref, 1994(5): 55~64. [28] Ishikawa T, Noble AC.Temporal perception of astringency and sweetness in red wine[J]. Food Qual Pref, 1995, 6(1): 27~33. [29] Ferguson DB, Botchway CA. Circadian variations in flow rate and composition of human stimulated submandibular saliva[J]. Arch Oral Biol1979(24): 433~437. [30] Peleg H, Noble AC, Bodine KK.The influence of acid on Astringency of alum and phenolic compounds[J]. Chem Senses, 1998, 23(3): 371~378. [31] Kallithraka S, Clifford MN, Bakker J.Effect of pH on astringency in model solution and wines[J]. J Agri Food Chem, 1997, 45(6): 2211~2216. [32] 童华荣, 唐多友, 许瑛. 沱茶风味描述感官分析[J]. 西南农业大学学报, 1993, 15(1): 34~37. [33] Drobna Z, Wismer WV, Goonewardene LA.Selection of an astringency reference standard for the sensory evaluation of black tea[J]. J Sens Stud, 2004, 19(2): 119~132. [34] Llaudy MC, Canals R, Canals JM, [35] 中川致之. 绿茶澀味計测[J]. 茶叶研究报告, 1975(43): 27~31. [36] Iiyama S, Toko K, Matsuno T. Yamafuji, K.Responses of lipid membranes of taste sensor to astringent and pungent substances[J]. Chemical Senses, 1994(19): 87~96. [37] Yoshikazu K, Taniguchi A, Ikezaki H, [38] Adachi T, Yahiro M, Nagasue H, [39] Kaneda H, Watari J, Takashio M, [40] Lvova L, Legin A, Vlasov Y, [41] 程启坤, 阮宇成, 王月根, 等.绿茶滋味化学鉴定法[J]. 茶叶科学, 1985, 5(1): 7~17. [42] 施兆鹏, 陈国本, 曾秋霞, 等. 夏茶苦涩味的形成与内质成分的关系[J]. 茶叶科学, 1984, 4(1): 61~62. [43] 施兆鹏, 刘仲华. 夏茶苦涩味化学实质的数学模型探讨[J]. 茶叶科学. 1986, 7(2): 7~12. [44] 杨亚军. 茶树育种品质早期化学鉴定. II.鲜叶的主要生化组分与绿茶品质的关系[J]. 茶叶科学, 1991, 11(2): 127~131. [45] Owuor PO, McDowell I. Changes in theaflavin composition and astringency during black tea fermentation[J]. Food Chem, 1994, 51(3): 251~254. [46] Owuor PO, Obanda M.Clonal variations in the individual theaflavin levels and their impact on astringency and sensory evaluations[J]. Food Chem, 1995, 54(3): 273~277. [47] Thanaraj SNS, Seshadri R.Influence of polyphenol oxidase activity and polyphenol content of tea shoot on quality of black tea[J]. J Sci Food Agric, 1990, 51(1): 57~69. [48] McDowell I, Taylor S, Gay C. The phenolic pigment composition of black tea liquors part I: predicting quality[J]. J Sci Food Agric, 1995, 69(4): 467~474. [49] Owuor P O, Obanda M, Nyirenda H E. [50] Ding Z, Kuhr S, Engelhardt UH.Influence of catechins and theaflavins on the astringent taste of black tea brews[J]. Z Lebensm. Unters Forsch, 1992, 195(2): 108~111. [51] Hofmann T, Ottinger H, Frank O.The Taste activity concept: A powerful tool to trace the key tastants in foods, In Challenges in taste chemistry and biology[C]. Hofmann T, Ho CT, Pickenhagen W, eds. ACS Symposium Series 867, American Chemical Society, Washington, D C 2003, 104~124. [52] Oszmianski J, Lee CY.Enzymatic oxidative reaction of catechin and chlorogenic acid in a model system[J]. J Agric Food Chem, 1990, 38(5): 1202~1204. [53] Engelhardt UH, Lakenbrink C, Pokorny O. Proanthocyanidins, Bisflavanols,Hydrolyzable Tannins in Green and Black Teas. In Nutraceutical Beverages. Chemistry, Nutrition, and Health Effects[C]. Shahidi F, Weerasinghe DK. eds, ACS Symposium Series 871, American Chemical Society, Washington DC, 2004, 254~264. |
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