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Titlebook: Genetics and Genomics of Brachypodium; John P. Vogel Book 2016 Springer International Publishing Switzerland 2016 Brachypodium.genomics.gr

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, and the Abiotic Environment,e history strategy, with species representing short-season annual habits and other species persisting for multiple years. This variation in ecological setting and life history suggests the existence of considerable genetic diversity in adaptation to the abiotic environment, both in constitutive tole
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The Rise of , as a Model System,search and many of the rapid advances in molecular biology and genetics would have been difficult to achieve without them. The model plant . has been used to make tremendous gains in our understanding of plant biology. However, as a eudicot, . is unsuitable to study the unique aspects of grass biolo
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Molecular Cytogenetics in the Genus ,,us in general and ., in particular, represent exceptionally good model systems for cytomolecular studies, which is due to their highly desirable ‘model’ biological features and rapidly and continuously growing repertoire of various experimental tools. This chapter outlines the present status of mole
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Genome Size and the Role of Transposable Elements, level. However, retrotransposons are not only gained through the propagative life cycle described above, but they also can be lost through a combination of progressive small deletions and truncations. The genome of . at ~372 Mb, is at the lower end of the distribution for flowering plants. The comp
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Genomic Diversity and Climate Adaptation in ,,data, these approaches can exploit the diversity of these . spp. Experiments using this toolkit will reveal alleles, genes and pathways underlying agriculturally important and environmentally sensitive traits.
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Chemical and Radiation Mutagenesis: Induction and Detection by Whole Genome Sequencing,(TILLING) has been developed as an efficient method to rapidly identify mutations in genes of interest. Recently, the decreasing cost of DNA sequencing has made it feasible to detect mutations throughout the genome using whole genome sequencing. This promises to revolutionize the use of chemical and
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, Genetic Resources, small flowers, crossing methods have been developed for ., and this has led to the development of segregating populations that have been, and will continue to be, important resources for mapping and isolating genes of interest. This chapter provides a history of . genetic resource development.
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