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Titlebook: Genetics and Genomics of Rosaceae; Kevin M. Folta,Susan E. Gardiner Book 2009 Springer-Verlag New York 2009 Rosaceae.Translation.currentjk

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Peter Johannes Wöstheinrich,Michael Rohdencing efforts of cDNA libraries from Washington University, United States and HortResearch, New Zealand (Korban et al., 2004, Newcomb et al., 2006). These . cDNA libraries have been sequenced to varying depths (Table 1), depending on library quality and novelty, to generate expressed sequence tags (
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Constantin Brunner,Lothar Bickelmpirical approaches to sequence annotation, will made possible the identification of more than thousand genes. At the time of completion of the apple genome sequence, few of these genes will have an experimental assigned function. Indeed, in Arabidopsis thalinia only 10% of the 25,500 unique genes t
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Der Entwicklungsstand der Herzchirurgie,ple in terms of adaptation. The broad distribution reflects its extensive cultivation, as its prized fruits drove its rapid dissemination and selection for adaptation to new areas. The relatively short juvenility period and ease of making controlled crosses have made the peach the most successfully
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https://doi.org/10.1007/978-3-642-91539-0eral features (Abbott et al., 2002): it has a short juvenile phase (2–3 years) if compared to many other tree species; it has a small genome, just about twice the size of Arabidopsis (5.9 x 10. bp; Baird et al., 1994); it is diploid with a base chromosome number of x = 8; it is the best characterize
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Genomics Opportunities, New Crops and New Productshrough direct transfer of genes that encode desirable traits. The two techniques that effect gene transfer include transgenic biotechnology and marker assisted selection (MAS) using molecular markers associated with economically important traits. In the Rosaceae family, durable genetic resistance to
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