Scientia Agricultura Sinica ›› 2021, Vol. 54 ›› Issue (4): 804-819.doi: 10.3864/j.issn.0578-1752.2021.04.012
• HORTICULTURE • Previous Articles Next Articles
ZHU Yin(),ZHANG Yue,YAN Han,LÜ HaiPeng,LIN Zhi(
)
[1] | 林智, 尹军峰, 吕海鹏. 茶叶深加工技术. 北京:科学出版社, 2020: 7. |
LIN Z, YIN J F, LÜ H P. Tea Deep-Processing Technology. Beijing: Science Press, 2020: 7. (in Chinese) | |
[2] | 宛晓春. 茶叶生物化学 . 北京:中国农业出版社, 2003: 32-35. |
WANG X C. Tea Biochemistry. Beijing:China Agriculture Press, 2003: 32-35. (in Chinese) | |
[3] | SOLMS J. Taste of amino acids, peptides, and proteins. Journal of Agricultural and Food Chemistry, 1969,17(4):686-688. |
[4] | WIESER H, JUGEL H, BELITZ H-D. Relationships between structure and sweet taste of amino acid. Z Lebensm Unters Forsch, 1977,164:277-282. |
[5] | KATO H, RHUE M R, NISHIMURA T. Role of free amino acids and peptides in food taste//Flavor Chemistry: Trends and Developments. TERANISHI R, BUTTERY R G, SHAHID F, American Chemical Society: Washington,DC, 1989: 158-174. |
[6] | ZHAO Y S, LI P, GE L, WANG Y, MO T, ZENG X P, WANG X D. Effect of electrolyzed reduced water on chiral theanine and polyphenols in tea. Food Chemistry, 2012,134(4):1761-1766. |
[7] | FIORI J, PASQUINI B, CAPRINI C, ORLANDINI S, FURLANETTO S, GOTTI R. Chiral analysis of theanine and catechin in characterization of green tea by cyclodextrin-modified micellar electrokinetic chromatography and high performance liquid chromatography. Journal of Chromatography A, 2018,1562:115-122. |
[8] | EKBORG-OTT K H, TAYLOR A., ARMSTRONG D W. Varietal differences in the total and enantiomeric composition of theanine in tea. Journal of Agricultural and Food Chemistry, 1997,45(2):353-363. |
[9] | HORANNI R, ENGELHARDT U H. Enantiomeric analysis of theanine in different teas (Camellia sinensis) using Marfey’s reagent. European Food Research and Technology, 2015,240:61-70. |
[10] | DESAI M J, ARMSTRONG D W. Analysis of derivatized and underivatized theanine enantiomers by high-performance liquid chromatography/atmospheric pressure ionization-mass spectrometry. Rapid Communication in Mass Spectrometry, 2004,18:251-256. |
[11] | 李银花, 李娟, 刘仲华, 黄建安. 配体交换色谱手性固定相法拆分与定量茶氨酸对映体. 福建分析测试, 2010,19(1):10-13. |
LI Y H, LI J, LIU Z H, HUANG J A. Separation and quantitation of theanine enantiomer on ligand exchange chromatography with chiral stationary phase, Fujian Analysis & Testing, 2010,19(1):10-13. (in Chinese) | |
[12] | 李银花, 刘仲华, 黄建安. 配体交换色谱手性流动相法拆分和定量茶氨酸对映体. 茶叶科学, 2006,26(4):280-284. |
LI Y H, LIU Z H, HUANG J A. Separation and quantitation of theanine enantiomers on ligand exchange chromatography with chiral mobile phase. Journal of Tea Science, 2006,26(4):280-284. (in Chinese) | |
[13] | 李银花, 刘仲华, 黄建安. 手性衍生-高效液相色谱法拆分和定量测定茶氨酸对映体. 色谱, 2007,25(5):719-722. |
LI Y H, LIU Z H, HUANG J A. Separation and quantification of theanine enantiomers using high performance liquid chromatography coupled with chiral derivatization. Chinese Journal of Chromatography, 2007,25(5):719-722. (in Chinese) | |
[14] | WANG X Y, WU H H, LUO R Y, XIA D H, JIANG Z J, HAN H. Separation and detection of free D- and L-amino acids in tea by off-line two-dimensional liquid chromatography. Analytical Methods, 2017,9(43):6131-6138. |
[15] | XU Y, LIU Z Y, LIU Z Y, FENG Z H, ZHANG L, WAN X C, YANG X G. Identification of D-amino acids in tea leaves. Food Chemistry, 2020,317:126428. |
[16] | 祝馨怡, 蔡迎春, 陈立仁, 李永民. α-氨基酸在L-苯丙氨酸手性配体交换色谱固定相上的分离研究. 化学试剂, 2003,25(2):65-68. |
ZHU X Y, CAI Y C, CHEN L R, LI Y M. Study on the separation of α-amino acid using L-phenylalanine chiral ligand exchange chromatography as the stationary phase. Chemical Reagent, 2003,25(2):65-68. (in Chinese) | |
[17] | GRÜNER B, HOLUB J, PLEŠEK J, VANĚK T, VOTAVOVÁ H. High-performance liquid chromatographic enantiomeric resolution in the ten-vertex carborane series: Comparison of acyetl- and native β- cyclodextrin bonded chiral stationary phases. Journal of Chromatography A, 1998,793(2):249-256. |
[18] | 方骏, 夏小庆, 吴勇勇. 使用手性冠醚的高效液相色谱法研究伯胺类药物的手性分离. 中国药物化学杂志, 2003,13(1):48-50. |
FANG J, XIA X Q, WU Y Y. Study on chiral separation of amino drugs by HPLC utilizing crown ethers. Chinese Journal of Medicinal Chemistry, 2003,13(1):48-50. (in Chinese) | |
[19] | KARL B, HALKET J M. Handbook of Derivatives for Chromatography (2nd). Chichester: John Wiley & Sons, 1993. |
[20] | SHEN X Z, DENG C H, WANG B, DONG L. Quantification of trimethylsilyl derivatives of amino acid disease biomarkers in neonatal blood samples by gas chromatography-mass spectrometry. Analytical and Bioanalytical Chemistry, 2006,384(4):931-938. |
[21] | 何红波, 张威, 解宏图, 侯松嵋, 张旭东. 测定土壤氨基糖和氨基酸手性异构体中氮同位素比值的气相色谱-质谱方法. 土壤学报, 2009,46(2):289-298. |
HE H B, ZHANG W, XIE H T, HOU S M, ZHANG X D. A Gc/Ms method to assess 15n ratios in soil amino sugars and amino acid enantiomers. Acta Pedologica Sinica, 2009,46(2):289-298. (in Chinese) | |
[22] | 邢其毅, 裴伟伟, 徐瑞秋, 裴坚. 基础有机化学(第3版). 北京:高等教育出版社, 2005. |
XING Q Y, PEI W W, XU R Q, PEI J. Basic Organic Chemistry (3rd ed). Beijing: Higher Education Press, 2005. (in Chinese) | |
[23] | 丁永胜, 牟世芬. 氨基酸的分析方法及其应用进展. 色谱, 2004,22(3):210-215. |
DING Y S, MOU S F. Development of analytical methods for amino acids and their applications. Chinese Journal of Chromatography, 2004,22(3):210-215. (in Chinese) | |
[24] | 陈勤操, 戴伟东, 蔺志远, 解东超, 吕美玲, 林智. 代谢组学解析遮阴对茶叶主要品质成分的影响. 中国农业科学, 2019,52(6):1066-1077. |
CHEN Q C, DAI W D, LIN Z Y, XIE D C, LÜ M L, LIN Z. Effects of shading on main quality components in tea (Camellia Sinensis (L) O. Kuntze) leaves based on metabolomics analysis. Scientia Agricultura Sinica, 2019,52(6):1066-1077. (in Chinese) | |
[25] | ZHU Y, SHAO C, LV H, ZHANG Y, DAI W D, GUO L, TAN J F, PENG Q H, LIN Z. Enantiomeric and quantitative analysis of volatile terpenoids in different teas (Camellia sinensis). Journal of Chromatography A, 2017,1490:177-190. |
[26] | SINGH S K, KOLE P C, MISRA A K, ROY S, ARYA L, VERMA M, BHARDWAJ R, SUNEJA P, VERMA M R, BHAT K V, SINGH R. Characterization of Perilla frutescens (Linn.) Britt based on morphological, biochemical and STMS markers. Industrial Crops and Products, 2017,109, 773-785. |
[27] | 陈宗懋, 杨亚军. 中国茶经. 上海:上海文化出版社, 2011. |
CHEN Z M, YANG Y J. The Classic of Chinese Tea. Shanghai: Shanghai Cultural Publishing House, 2011. (in Chinese) | |
[28] | BRÜCKNER H, HAUSCH M. D-amino acids in dairy products: detection, origin and nutritional aspects. I. Milk, fermented milk, fresh cheese and acid curd cheese. Milchwissenschaft, 1990,45:357-360. |
[29] | ERBE T, BRÜCKNER H. Chromatographic determination of amino acid enantiomers in beers and raw materials used for their manufacture. Journal of Chromatography A, 2000,881(1-2):81-91. |
[30] | GOGAMI Y, OKADA K, OIKAWA T. High-performance liquid chromatography analysis of naturally occurring D-amino acids in sake. Journal of Chromatography B, 2011,879(29):3259-3267. |
[31] | MARCONE G L, ROSINI E, CRESPI E, POLLEGIONI L. D-amino acids in foods. Applied Microbiology and Biotechnology, 2020,104(2):555-574. |
[32] | PALLA G, MARCHELLI R, DOSSENA A, CASNATI G. Occurrence of D-amino acids in food: detection by capillary gas chromatography and by reversed-phase high-performance liquid chromatography with L-phenylalaninamides as chiral selectors. Journal of Chromatography A, 1989,475(1):45-53. |
[33] | GENCHI G. An overview on D-amino acids. Amino Acids, 2017,49:1521-1533. |
[34] | PÄTZOLD R, NIETO-RODRIGUEZ A, BRÜCKNER H. Chiral gas chromatographic analysis of amino acids in fortified wines. Chromatographia, 2003,57(Suppl. l):207-211. |
[35] | PRANDI B, FACCINI A, LAMBERTINI F, BENCIVENNI M, JORBA M, DROOGENBROEK B V, BRUGGEMAN G, SCHÖBER J, PETRUSAN J, ELST K, SFORZA S. Food wastes from agrifood industry as possible sources of proteins: a detailed molecular view on the composition of the nitrogen fraction, amino acid profile and racemisation degree of 39 food waste streams. Food Chemistry, 2019,286:567-575. |
[36] | ALI H, PÄTZOLD R, BRÜCKNER H. Determination of L- and D-amino acids in smokeless tobacco products and tobacco. Food Chemistry, 2006,99(4):803-812. |
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