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Genome-Wide Identification of Genes Probably Relevant to the Uniqueness of Tea Plant (Camellia sinensis) and Its Cultivars

机译:可能与茶树及其栽培品种的独特性有关的基因的全基因组鉴定

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摘要

Tea (Camellia sinensis) is a popular beverage all over the world and a number of studies have focused on the genetic uniqueness of tea and its cultivars. However, molecular mechanisms underlying these phenomena are largely undefined. In this report, based on expression data available from public databases, we performed a series of analyses to identify genes probably relevant to the uniqueness of C. sinensis and two of its cultivars (LJ43 and ZH2). Evolutionary analyses showed that the evolutionary rates of genes involved in the pathways were not significantly different among C. sinensis, C. oleifera, and C. azalea. Interestingly, a number of gene families, including genes involved in the pathways synthesizing iconic secondary metabolites of tea plant, were significantly upregulated, expressed in C. sinensis (LJ43) when compared to C. azalea, and this may partially explain its higher content of flavonoid, theanine, and caffeine. Further investigation showed that nonsynonymous mutations may partially contribute to the differences between the two cultivars of C. sinensis, such as the chlorina and higher contents of amino acids in ZH2. Genes identified as candidates are probably relevant to the uniqueness of C. sinensis and its cultivars should be good candidates for subsequent functional analyses and marker-assisted breeding.
机译:茶(Camellia sinensis)是全世界流行的饮料,许多研究都集中在茶及其栽培品种的遗传独特性上。但是,这些现象的分子机制在很大程度上尚不清楚。在本报告中,基于可从公共数据库获得的表达数据,我们进行了一系列分析,以鉴定可能与中华假单胞菌及其两个品种(LJ43和ZH2)的独特性有关的基因。进化分析表明,参与该途径的基因的进化速率在中华C,油茶和杜鹃花之间没有显着差异。有趣的是,与杜鹃花茶相比,许多基因家族(包括参与茶树标志性次生代谢途径合成基因的基因)被显着上调,在中华茶树(LJ43)中表达,这可以部分解释其较高含量。类黄酮,茶氨酸和咖啡因。进一步的研究表明,非同义突变可能部分促成中华C两个品种之间的差异,例如ZH2的叶绿素和较高的氨基酸含量。被鉴定为候选基因的基因可能与中华假单胞菌的独特性有关,其品种应该是后续功能分析和标记辅助育种的良好候选者。

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