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Whole genome sequences in pulse crops: a global community resource to expedite translational genomics and knowledge-based crop improvement

机译:豆类农作物的全基因组序列:加速翻译基因组学和基于知识的农作物改良的全球社区资源

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摘要

Unprecedented developments in legume genomics over the last decade have resulted in the acquisition of a wide range of modern genomic resources to underpin genetic improvement of grain legumes. The genome enabled insights direct investigators in various ways that primarily include unearthing novel structural variations, retrieving the lost genetic diversity, introducing novel/exotic alleles from wider gene pools, finely resolving the complex quantitative traits and so forth. To this end, ready availability of cost-efficient and high-density genotyping assays allows genome wide prediction to be increasingly recognized as the key selection criterion in crop breeding. Further, the high-dimensional measurements of agronomically significant phenotypes obtained by using new-generation screening techniques will empower reference based resequencing as well as allele mining and trait mapping methods to comprehensively associate genome diversity with the phenome scale variation. Besides stimulating the forward genetic systems, accessibility to precisely delineated genomic segments reveals novel candidates for reverse genetic techniques like targeted genome editing. The shifting paradigm in plant genomics in turn necessitates optimization of crop breeding strategies to enable the most efficient integration of advanced omics knowledge and tools. We anticipate that the crop improvement schemes will be bolstered remarkably with rational deployment of these genome-guided approaches, ultimately resulting in expanded plant breeding capacities and improved crop performance.
机译:过去十年来,豆类基因组学的空前发展已导致获得了广泛的现代基因组资源,以支持谷物豆类的遗传改良。基因组学使洞察力以各种方式直接指导研究人员,主要包括发掘新颖的结构变异,检索丢失的遗传多样性,从更广泛的基因库中引入新颖/外来等位基因,精细地解析复杂的定量特征等。为此,具有成本效益的高密度基因分型测定法的现成可用性使全基因组预测日益被认为是作物育种中的关键选择标准。此外,通过使用新一代筛选技术获得的具有农学意义的表型的高维测量将使基于参考的重测序以及等位基因挖掘和性状作图方法能够将基因组多样性与表型规模变化综合相关。除了刺激正向遗传系统外,对精确划定的基因组片段的可及性还揭示了反向遗传技术(如靶向基因组编辑)的新颖候选人。植物基因组学范式的转变反过来需要优化作物育种策略,才能最有效地整合先进的组学知识和工具。我们预计,通过合理部署这些基因组指导的方法,作物改良计划将得到显着支持,最终将导致植物育种能力的提高和作物性能的提高。

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