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Titlebook: Genomics of Tropical Crop Plants; Paul H. Moore,Ray Ming Book 2008 Springer-Verlag New York 2008 Fruit.biodiversity.biotechnology.crop gen

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https://doi.org/10.1007/978-3-662-30017-6microbial properties have been described. Macadamia is the most economically valuable member of the ancient Proteaceae family, and has few cultivated relatives. This crop is the obvious target within the family for developing further genomics resources. Comparing the structure of the macadamia genom
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https://doi.org/10.1007/978-3-662-30015-2ts high density of repetitive elements. Functional genomics activities have made use of insertional mutation-based cloning as well as expressed sequence tags and map-based cloning. A wide range of genomic databases and tools have been developed, of which MaizeGDB features a wealth of data and resour
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https://doi.org/10.1007/978-3-662-30019-0neapple microarrays containing in excess of 9,000 EST clones have been produced. Although research in pineapple genomics is taking momentum, much more is needed before the tools developed can be used for the benefit of the industry. An international collaborative effort to develop additional molecul
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https://doi.org/10.1007/978-3-662-30016-9el” scientific research organisms. In 2003, tomato was the first diploid crop among the asterids to be chosen for genome sequencing. It is intended that a high quality sequence of the tomato euchromatin will serve as a reference for the Solanaceae. In addition, the Potato Genome Sequencing Consortiu
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Book 2008the poor are of tropical origin, one hopes that this very readable collection of essays will help bridge that gap as they should be of interest to both types of scientists. My own experience is interesting in this regard—I had thought that it might be useful to read just a few of these essays and en
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https://doi.org/10.1007/978-3-662-30013-8ore collections, the focus is shifting towards the molecular characterization of the cultivated species. The development of large-inset libraries, expressed sequence tags, genomic clone libraries, characterized mutant collections, and bioinformatics is expected to advance peanut genomics.
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