首页|银杏查尔酮合成酶基因表达的时间进程

银杏查尔酮合成酶基因表达的时间进程

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查尔酮合成酶是银杏叶黄酮合成途径中的第一个关键酶.利用RACE技术克隆到银杏的一个查尔酮合成酶基因,命名为GbCHS2,其cDNA全长1 608 bp,包括长1 173 bp的读码框,编码391个氨基酸.GbCHS2蛋白与已从银杏克隆到的GbCHS1蛋白具有很高的同源性,并包含其所有相同的活性位点.用半定量RT-PCR方法研究了银杏叶生长过程中chs基因的转录水平的变化,并对CHS活性变化和黄酮含量的变化曲线进行了线性回归分析.结果显示,在整个银杏叶生长过程中,CHS活性与黄酮含量呈极显著线性相关,表明CHS是银杏叶黄酮合成途径中的一个关键限速酶;chs基因的转录水平的变化与黄酮的积累是同步的,chs基因的这种表达模式表明chs基因的转录水平可能决定了银杏叶黄酮的积累.
Time Course of Expression of Chalcone Synthase Gene in Ginkgo biloba
Chalcone synthase (CHS) catalyses the first and key regulatory step of flavonoid biosynthetic pathway. A chalcone synthase gene was isolated from Ginkgo biloba leaves using the method of rapid amplification of the cDNA ends (RACE). The full-length cDNA, designated as GbCHS2, is 1 608 bp in length (GenBank accession No. DQ054841) and contains an open reading frame of 1 173 bp encoding a protein of 391 amino acids. Alignment of the predicted amino acid sequence of GbCHS2 has been shown to have high sequence similarity with GbCHS1. All the active sites and active site motifs in GbCHS1 protein were also found in GbCHS2.Correlation analysis between CHS activity and flavonoid accumulation during ginkgo leaf growth indicated that CHS might be the rate-limiting enzyme in the biosynthesis pathway of flavonoids in ginkgo leaves. Results of semi-quantitative RT-PCR analysis showed that flavonoid accumulation paralleled the transcription level of change in chs gene, suggesting chs gene as the specific key gene regulating flavonoid accumulation in ginkgo leaves.

Ginkgo bilobachalcone synthase geneexpressiontime courseflavonoid

许锋、程水源、程述汉、王燕、杜何为

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山东农业大学,园艺科学与工程学院,泰安,271018

长江大学园艺园林学院,荆州,434025

山东农业大学,信息科学与工程学院,泰安,271018

银杏 查尔酮合成酶基因 表达 时间进程 黄酮

教育部跨世纪优秀人才培养计划教育部地方重大攻关项目湖北省自然科学基金湖北省杰出青年科学基金湖北省教育厅科研项目

NCET-04-0746教育部地方020952002AB0942003AB014Z200627002

2007

植物生理与分子生物学学报
中国植物生理学会

植物生理与分子生物学学报

CSTPCD
ISSN:1671-3877
年,卷(期):2007.33(4)
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