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New genomic resources for switchgrass: a BAC library and comparative analysis of homoeologous genomic regions harboring bioenergy traits

机译:柳枝的新基因组资源:BAC库和具有生物能源特征的同源基因组区域的比较分析

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摘要

BackgroundSwitchgrass, a C4 species and a warm-season grass native to the prairies of North America, has been targeted for development into an herbaceous biomass fuel crop. Genetic improvement of switchgrass feedstock traits through marker-assisted breeding and biotechnology approaches calls for genomic tools development. Establishment of integrated physical and genetic maps for switchgrass will accelerate mapping of value added traits useful to breeding programs and to isolate important target genes using map based cloning. The reported polyploidy series in switchgrass ranges from diploid (2X = 18) to duodecaploid (12X = 108). Like in other large, repeat-rich plant genomes, this genomic complexity will hinder whole genome sequencing efforts. An extensive physical map providing enough information to resolve the homoeologous genomes would provide the necessary framework for accurate assembly of the switchgrass genome.
机译:背景柳枝,是一种C4物种,原产于北美大草原,是一种暖季草,其目标是发展成为草本生物质燃料作物。通过标记辅助育种和生物技术方法对柳枝feed原料性状进行遗传改良,需要开发基因组工具。建立柳枝integrated综合物理和遗传图谱将加快对育种程序有用的增值性状的定位,并使用基于图谱的克隆分离重要的靶基因。已报道的柳枝poly的多倍体系列从二倍体(2X = 18)到十二指肠(12X = 108)。像在其他大型的,重复序列丰富的植物基因组中一样,这种基因组复杂性将阻碍整个基因组测序工作。提供足够信息以解析同源基因组的广泛物理图谱将为柳枝genome基因组的准确组装提供必要的框架。

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