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茶树咖啡碱合成酶基因mRNA表达的研究 被引量:13

Study on the Expression of Caffeine Synthase Gene mRNA in Tea Plant
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摘要 采用原位杂交技术对茶树咖啡碱合成酶基因mRNA的表达进行了研究。结果表明,茶树叶片的表达主要在栅栏组织,该组织的细胞质、细胞核上均有表达,而液泡却没有;叶主脉表达分布在薄壁组织、韧皮部,但韧皮部表达稍弱;幼茎表达分布在韧皮部;不同品种之间的表达位置基本相似、表达信号却有差异。结果还显示,春梢第一片叶比秋梢第一片叶表达信号强;加工技术上绿茶摊青过程0.5 h、1 h、2 h有明显表达信号,而红茶萎凋6 h、8 h、10 h及乌龙茶摇青过程6 h、8 h、10 h的叶子则看不到。 The expression of caffeine synthase gene mRNA in tea plant by means of in situ hybridization was investigated. Results showed that the expressional sites is mainly located in the cell cytoplasm and nucleus of palisade tissue, but not in vacuole. The expressional sites of leaf vein are mainly in parenchyma and phloem, however, that in phloem is weaker. The expressional sites in young stalk are in phloem. The expressional sites in different cultivars are basically similar, but the expressional signal is different. Results also showed that the expressional signal of the first fresh leaf in spring is stronger than that in autumn. In terms of processing technique, the green teas which are spread 0.5 h、1 h、2 h showed apparent expressional signal, but the signal was not observed in the black teas withered for 6 h、8 h、10 h and Oolong teas shaken for 6 h、8 h、10 h.
出处 《茶叶科学》 CAS CSCD 北大核心 2004年第1期23-28,共6页 Journal of Tea Science
基金 2000年教育部<高等学校骨干教师资助计划>项目。
关键词 茶树 咖啡碱合成酶基因 MRNA 基因表达 原位杂交技术 咖啡碱 Tea Caffeine synthase gene Expression MRNA In situ hybridization
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参考文献5

  • 1Misako kato,et al.Purification and characterization of caffeine synthase from Tea leaves, Plant physiol, (1999),120: 579-586.
  • 2Misako kato, et al. Caffeine synthase gene from tea leaves,Nature, 2000, 406(6799):956-957.
  • 3Sano H, et al, Coffea arabica CaMTL1 mRNA for caffeine synthase, GenBank, Accession no, AB039725.
  • 4Kato A. Crozier A and Ashihara A. Subcellular localization of the N-methyltransferase involved in caffeine biosynthes in tea, Phytochemistry, 1998, 48(5): 777-779.
  • 5Mosli Waldhauser S S and Baumann T.W,Compartmentation of caffeine and related purine alkaloids depends exclusively on the physical chemistry of their vacuolar complox formation with chlorogenic acids,Phytochemistry, 1996, 42: 985-996.

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