| Literature DB >> 12368489 |
Inna Guterman1, Moshe Shalit, Naama Menda, Dan Piestun, Mery Dafny-Yelin, Gil Shalev, Einat Bar, Olga Davydov, Mariana Ovadis, Michal Emanuel, Jihong Wang, Zach Adam, Eran Pichersky, Efraim Lewinsohn, Dani Zamir, Alexander Vainstein, David Weiss.
Abstract
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 approximately 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. EST sequences were submitted to the GenBank database (accession numbers BQ 103855 to BQ 106728).Entities:
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Year: 2002 PMID: 12368489 PMCID: PMC151220 DOI: 10.1105/tpc.005207
Source DB: PubMed Journal: Plant Cell ISSN: 1040-4651 Impact factor: 11.277