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Titlebook: Genetics and Genomics of the Triticeae; Gary J. Muehlbauer,Catherine Feuillet Book 2009 The Editor(s) (if applicable) and The Author(s), u

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书目名称Genetics and Genomics of the Triticeae
编辑Gary J. Muehlbauer,Catherine Feuillet
视频video
概述A modern and comprehensive volume on the status and future of triticeae
丛书名称Plant Genetics and Genomics: Crops and Models
图书封面Titlebook: Genetics and Genomics of the Triticeae;  Gary J. Muehlbauer,Catherine Feuillet Book 2009 The Editor(s) (if applicable) and The Author(s), u
描述.Sequencing of the model plant genomes such as those of A. thaliana and rice has revolutionized our understanding of plant biology but it has yet to translate into the improvement of major crop species such as maize, wheat, or barley. Moreover, the comparative genomic studies in cereals that have been performed in the past decade have revealed the limits of conservation between rice and the other cereal genomes. This has necessitated the development of genomic resources and programs for maize, sorghum, wheat, and barley to serve as the foundation for future genome sequencing and the acceleration of genomic based improvement of these critically important crops. .Cereals constitute over 50% of total crop production worldwide (http://www.fao.org/) and cereal seeds are one of the most important renewable resources for food, feed, and industrial raw materials. Crop species of the Triticeae tribe that comprise wheat, barley, and rye are essential components of human and domestic animal nutrition. With 17% of all crop area, wheat is the staple food for 40% of the world’s population, while barley ranks fifth in the world production. Their domestication in the Fertile Crescent 10,000 years
出版日期Book 2009
关键词DNA; Evolution; Genotyp; Mutant; chromosome; currentjks; genes; genetics; grasses; plant genetics; plantr geno
版次1
doihttps://doi.org/10.1007/978-0-387-77489-3
isbn_softcover978-1-4614-1706-4
isbn_ebook978-0-387-77489-3Series ISSN 2363-9601 Series E-ISSN 2363-961X
issn_series 2363-9601
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Science+Busines
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Planung und Berechnung der Freileitung,ration programmes, germplasm databases and cultivar registers with pedigree information for these genera are briefly described. For the major cereal crops, core collections and genetic stocks collections are also mentioned. Due to its growing importance as a model plant in genomics research, the gen
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https://doi.org/10.1007/978-3-658-11298-1e identification and cloning of genes involved in domestication; and (VI) excavation campaigns..This chapter reviews the recent knowledge on wheat, barley and rye domestication in the Fertile Crescent and covers several issues concerning the molecular knowledge of the effects induced by domesticatio
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,Die Entstehung des Freizeitpädagogen,ral and functional differentiation of wheat chromosomes into proximal gene-poor/low recombination and distal gene-rich/high recombination compartments. The abovementioned structural and functional differentiation may have been driven by chromosome behavior at meiosis. As DNA sequence information bec
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Tabellen zum Bestimmen der Arten, efficient tools have to be developed for the validation of the candidate genes identified in positional cloning. Here, we review the state of the art of positional gene cloning in the Triticeae crops and discuss the challenges in this field of research in the next years.
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https://doi.org/10.1007/978-3-642-91857-5s. These require the proteins of autonomous forms for their mobility. Hence, the genome contains a mixture of autonomous elements, some of which contain stop codons or frameshifts inactivating translation, nonautonomous elements, and various deletion derivatives of both. The cell employs many regula
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https://doi.org/10.1007/978-3-662-39619-3. Functional annotation of protein coding genes involves assessment of sequence similarity to known proteins, expression evidence, and the presence of domain and motifs. Annotation methods and tools for Triticeae genomic sequences have been adapted from existing plant genome annotation projects and
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