According to the current resource status and the botanical charactenstic of Chongzhou loquat wild tea plants, the representative plants were selected and divided as six types (from A to F). The major biochemical components were determined, and the quality of manufactured black tea and green tea was evaluated. Results showed that: To different types of Chongzhou loquat tea, free amino acids arranged at (2.46±0.07)%~(5.69±0.10)%, polyphenol content arranged at (21.41±13.48)%~(37.16±0.99)%, caffeine content arranged at (4.01±0.18)%~ (4.88±0.03)%, water extract content arranged at (33.31±2.49)%~(47.28±1.35)%, total catechins arranged at (77.08±1.18)~(236.47±29.59)mg/g. Some types of Chongzhou loquat wild tea plants can be used as resources in the breeding of high content of catechin, caffeine and other specific ingredients of tea varieties. It can be deduced that E-Class was appropriate system of black tea and F-Class was suitable for green tea by using the caffeine ECG, EGC as the first, second and third principle components or the combinational factors on the quality of broken black tea and according to the contents of major biochemical components and polyphenol/amino acids ratio and sensory evaluation scores. It can be inferred from the content of theanine and phenylalanine, total catechins and catechins components that E-class was closer to the cultivative type among 6 types of Chongzhou loquat tea plants.
WANG Chun-mei
,
TANG Qian
,
DU Xiao
,
CHEN Chang-hui
,
XU Jing-yi
,
LI Pin-wu
. Preliminary Study on Biochemical Composition and Processing Quality of Chongzhou Loquat Wild Tea Plants in Sichuan[J]. Journal of Tea Science, 2012
, 32(4)
: 305
-312
.
DOI: 10.13305/j.cnki.jts.2012.04.011
[1] 钟渭基. 崇庆枇杷茶[J]. 茶叶, 1959(5): 31-32.
[2] 叶乃兴, 郭元超. 茶树种质资源形态特征的主分量分析[J]. 茶叶科学技术, 1996, 26(3): 21-25.
[3] 陈亮, 杨亚军, 虞富莲, 等. 茶树种质资源描述规范和数据标准[M]. 北京: 中国农业出版社, 2005: 65-67.
[4] 中华人民共和国农业部. NY/T 1312—2007农作物种质资源鉴定技术规程茶树[S]. 北京: 中国农业出版社, 2007.
[5] 中华全国供销合作总社. GB/T 8313—2008《茶叶中茶多酚和儿茶素类含量的检测方法》[S]. 北京: 中国标准出版社, 2008.
[6] 中华全国供销合作总社. GB/T 8314—2002《茶游离氨基酸总量测定》[S]. 北京: 中国标准出版社, 2002.
[7] 全国食品工业标准化技术委员会. GB/T 8312—1987《茶咖啡碱测定》[S]. 北京: 中国标准出版社, 1987.
[8] 中华全国供销合作总社. GB/T 8305—2002《茶水浸出物测定》[S]. 北京: 中国标准出版社, 2002.
[9] British Standards Institution.ISO 14502-2-2005(E), INTERNATIONAL STANDARD[S]. London: ISO copyright office, 2005.
[10] 朱旗, 施兆鹏, 童京汉, 等. HPLC检测分析速溶绿茶游离氨基酸[J]. 茶叶科学, 2001, 21(2): 134-136.
[11] 陆松侯, 施兆鹏. 茶叶审评与检验: 第三版[M]. 北京: 中国农业出版社, 2001: 82-148.
[12] 张新富, 龚加顺, 周红杰, 等. 云南普洱茶中多酚类物质与品质的关系研究[J]. 食品科学, 2008, 29(4): 230-233.
[13] 陈岱卉, 叶乃兴, 邹长如. 茶树品种的适制性与茶叶品质[J]. 福建茶叶, 2008(1): 2-5.
[14] 李立祥. 绿茶氨基酸对滋味的影响[J]. 食品科学, 1998, 19(3): 16-19.
[15] 唐和平, 陈兴琰. 茶树品种资源氨基酸组成与亲缘关系的研究[J]. 湖南农学院学报, 1995, 21(2): 127-129.
[16] 阮宇成, 程启坤. 茶叶儿茶素的动态化学[J]. 园艺学报, 1964, 3(1): 95-98.
[17] 阮宇成, 程启坤. 儿茶素的组成与绿茶品质的关系[J]. 园艺学报, 1964, 3(3): 287-300.
[18] 俞永明. “八五”期间茶种质源研究中筛选出一批优质资源[J]. 中国茶叶, 1996, 18(3): 26.
[19] 钟萝. 茶叶品质理化分析[M]. 上海: 上海科学技术出版社, 1989: 289-295.
[20] 陈南丰正. 茶叶香气及评价方法[J]. 茶叶科学简报, 1990(2): 42-45.
[21] 梁月荣, 刘祖生. 不同茶树品种化学成分与红碎茶品质关系的研究[J]. 浙江农业大学学报, 1994, 20(2): 149-154.
[22] K M 杰姆哈捷. 论野生茶树的进化因素[M]. 刘祖生, 译. 上海: 上海科技编译馆, 1963: 30.
[23] 唐一春, 杨盛美, 季鹏章, 等. 云南野生茶树资源的多样性、利用价值及保护研究[J]. 西南农业学报, 2009, 22(2): 518-521.
[24] 王平盛. 云南的茶树资源[J]. 云南茶叶, 1987(2): 10-13.