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Rose Scent: Genomics Approach to Discovering Novel Floral Fragrance–Related GenesW⃞

机译:玫瑰香:基因组学方法发现与花卉香相关的新基因W⃞

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摘要

For centuries, rose has been the most important crop in the floriculture industry; its economic importance also lies in the use of its petals as a source of natural fragrances. Here, we used genomics approaches to identify novel scent-related genes, using rose flowers from tetraploid scented and nonscented cultivars. An annotated petal EST database of ∼2100 unique genes from both cultivars was created, and DNA chips were prepared and used for expression analyses of selected clones. Detailed chemical analysis of volatile composition in the two cultivars, together with the identification of secondary metabolism–related genes whose expression coincides with scent production, led to the discovery of several novel flower scent–related candidate genes. The function of some of these genes, including a germacrene D synthase, was biochemically determined using an Escherichia coli expression system. This work demonstrates the advantages of using the high-throughput approaches of genomics to detail traits of interest expressed in a cultivar-specific manner in nonmodel plants.
机译:几个世纪以来,玫瑰一直是花卉产业中最重要的农作物。它的经济重要性还在于使用花瓣作为天然香料的来源。在这里,我们使用基因组学方法来鉴定新的与气味相关的基因,使用来自四倍体有香味和无香味品种的月季花。建立了一个带注释的花瓣EST数据库,该数据库包含来自两个品种的约2100个独特基因,并制备了DNA芯片并将其用于所选克隆的表达分析。对两个品种中挥发性成分的详细化学分析,以及与表达与气味产生相吻合的次级代谢相关基因的鉴定,导致发现了几种新的与花香相关的候选基因。使用大肠杆菌表达系统,通过生物化学方法确定了其中一些基因的功能,包括生殖三丁烯D合酶。这项工作证明了使用基因组学的高通量方法来详细描述在非模型植物中以特定品种的方式表达的目的性状的优势。

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