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Potential to improve oilseed rape and canola breeding in the genomics era.

机译:在基因组学时代,改善油菜和油菜育种的潜力。

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High-throughput genomics technologies today offer unprecedented possibilities for gene discovery, complex trait analysis by genome-wide association studies, global gene expression analyses, genomic selection and predictive breeding strategies. Dissection of the complex Brassica napus genome using mapping-by-sequencing techniques provides a powerful bridge between genetic maps and genome sequences. The completed sequence of the Brassica rapa A genome and the expected forthcoming publication of the C genome (Brassica oleracea) will greatly accelerate the release of public reference sequences for B. napus (genome AC). Dramatically falling DNA costs for targeted or genomic resequencing and the availability of a new, high-density B. napus single-nucleotide polymorphism (SNP) array open the way for considerably more efficient mining and exploitation of genetic variation within the primary and secondary gene pools of B. napus. In this review, we outline some of the most significant recent advances in high-throughput genomics of Brassica crops and their potential impact on germplasm development and breeding of oilseed rape and canola in the coming years and decades.
机译:如今,高通量基因组学技术为基因发现,通过全基因组关联研究进行复杂性状分析,全局基因表达分析,基因组选择和预测育种策略提供了前所未有的可能性。利用测序技术对复杂的甘蓝型油菜基因组进行解剖,为遗传图谱和基因组序列之间的桥梁提供了强有力的桥梁。 甘蓝型油菜基因组的完整序列和预期的C基因组版本(甘蓝>油菜)的发布将大大加速 B的公共参考序列的释放。 napus (基因组AC)。用于靶向或基因组重测序的DNA成本急剧下降,并且需要新的高密度 B。 napus 单核苷酸多态性(SNP)阵列为在 B一级和二级基因库中更有效地挖掘和利用遗传变异开辟了道路。甘蔗。在这篇综述中,我们概述了芸苔属作物高通量基因组学的一些最重要的最新进展,以及它们在未来几年和几十年中对油料油菜和油菜的种质发展和育种的潜在影响。

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