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Titlebook: Genomics of the Saccharinae; Andrew H. Paterson Book 2013 Springer Science+Business Media New York 2013

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楼主: deliberate
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Die Angestellten im generativen Geschehen,y-related data. Data integration, as means for providing answers to more complex biological questions, is discussed in terms of existing applications of reference genome sequence and possible future applications of co-expression network data.
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Sorghum and Sugarcane Proteomicsc (MS)-based proteomics tools used to analyse global protein accumulation profiles of leaf, sheath and root tissues from two sorghum varieties, AS6 and MN1618, is described. Identified sorghum proteins are grouped into appropriate functional categories and their subcellular localisations are predicted using various bioinformatic tools.
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Genetic Engineering of ,aits leading to improvements in yield parameters such as plant height, tiller number, branching patterns, and time of flowering. Methods to integrate transgenic genotypes into a breeding program are discussed.
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Bioinformatics Resourcesy-related data. Data integration, as means for providing answers to more complex biological questions, is discussed in terms of existing applications of reference genome sequence and possible future applications of co-expression network data.
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Book 2013s important to understand the naturally occurring diversity in each genus, its organization and distribution, and its evolutionary history. Genomic tools and methods for Saccharinae biology and improvement have improved dramatically in the past few years – a detailed summary of these tools and their
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The Gene Pool of , Species and Their Improvement., and . Sugarcane has long been recognized as one of the world’s most efficient crops in converting solar energy into chemical energy harvestable as biomass, and is of growing interest as a biofactory for production of fossil fuel alternatives and other high-value bioproducts.
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The Sorghum Genome Sequence: A Core Resource for Saccharinae Genomics provide the foundation for use of sorghum as a Saccharinae functional genomics model. Here, we revisit the sequencing and initial analysis of the sorghum genome, providing more detail than could be included in the primary description of the genome and also highlighting planned efforts to increase k
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