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首页> 外文期刊>Frontiers in Plant Science >Expression of Key Structural Genes of the Phenylpropanoid Pathway Associated with Catechin Epimerization in Tea Cultivars
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Expression of Key Structural Genes of the Phenylpropanoid Pathway Associated with Catechin Epimerization in Tea Cultivars

机译:茶叶素紊乱途径关键结构基因的表达与茶叶中儿茶素差异化相关

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摘要

Catechin epimerization is an important factor affecting tea catechin compositions and thereby tea quality. However, a lack of tea germplasms with high non-epicatechins limits relative research. Here, a tea cultivar Y510 with high non-epicatechins was firstly reported and used for catechin and RNA sequencing (RNA-Seq) analysis. Results showed that the (-)-gallocatechin gallate and (+)-catechin (C) contents in Y510 were at least 136 and 6 times higher than those in Fudingdabaicha and 0306I, but the epicatechins (-)-epigallocatechin and (-)-epicatechin (EC) were significantly lower. Eleven unigenes potentially involved in catechin epimerization were identified by RNA-Seq analysis. Based on a combination of catechin and gene expression analysis, it was hypothesized that two anthocyanidin reductase genes ( CsANR1 , CsANR2 ) and an anthocyanidin synthase gene ( CsANS ) are the key genes affecting catechin epimerization in tea. Non-epicatechin formations were hypothesized to be mainly influenced by the expression ratio of CsANR2 to CsANR1 and the expression of CsANS . Overexpression of CsANS in an Arabidopsis mutant tds4-2 led to a significant increase of EC accumulation in seeds, revealing CsANS is important for catechin epimerization. These results shed new light on breeding tea cultivars with special catechin compositions.
机译:儿茶素差异是影响茶叶服毒组合物的重要因素,从而是茶叶质量。然而,缺乏具有高非EPICATECHINS的茶种质限制了相对研究。这里,首先报道了具有高非表古素的茶叶品种Y510并用于儿茶素和RNA测序(RNA-SEQ)分析。结果表明,( - ) - GallocateChin Gallate和(+) - 儿茶素(C)含量在Y510中的含量至少比Fudingdabaicha和0306I高至少136倍,但EpicateChins( - ) - EpigallocateChin和( - ) - EPICATECHIN(EC)显着降低。通过RNA-SEQ分析鉴定了可能参与儿茶素映像的11个unigenes。基于儿茶素和基因表达分析的组合,假设两个花青素还原酶基因(CsanR1,CsanR2)和花青素合酶基因(CSANs)是影响茶叶中儿茶素差异化的关键基因。假设非EPICATECHIN形成主要受CSANR2至CSANR1的表达比和CSAN的表达的影响。拟南芥突变体TDS4-2中CSAN的过度表达导致种子中EC积累的显着增加,揭示CSAN对于儿茶素差异是重要的。这些结果揭示了具有特殊儿茶素组合物的繁殖茶品种。

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