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首页> 外文期刊>Nature Communications >Whole-genome sequencing reveals untapped genetic potential in Africa’s indigenous cereal crop sorghum
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Whole-genome sequencing reveals untapped genetic potential in Africa’s indigenous cereal crop sorghum

机译:全基因组测序揭示了非洲本土谷物作物高粱的未开发遗传潜力

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Sorghum is a food and feed cereal crop adapted to heat and drought and a staple for 500 million of the world’s poorest people. Its small diploid genome and phenotypic diversity make it an ideal C4 grass model as a complement to C3 rice. Here we present high coverage (16–45 × ) resequenced genomes of 44 sorghum lines representing the primary gene pool and spanning dimensions of geographic origin, end-use and taxonomic group. We also report the first resequenced genome of S. propinquum , identifying 8?M high-quality SNPs, 1.9?M indels and specific gene loss and gain events in S. bicolor. We observe strong racial structure and a complex domestication history involving at least two distinct domestication events. These assembled genomes enable the leveraging of existing cereal functional genomics data against the novel diversity available in sorghum, providing an unmatched resource for the genetic improvement of sorghum and other grass species.
机译:高粱是适应高温和干旱的粮食和饲料谷物作物,是世界5亿最贫困人口的主要食物。其小二倍体基因组和表型多样性使其成为理想的C 4 草模型,作为C 3 水稻的补充。在这里,我们介绍了44个高粱品系的高覆盖度(16–45×)重排基因组,代表了主要的基因库以及地理来源,最终用途和分类组的跨度。我们还报告了第一个重新排序的链霉菌基因组,鉴定了8个M高质量SNP,1.9个M indels和双色链球菌的特定基因缺失和获得事件。我们观察到强大的种族结构和复杂的驯化历史,涉及至少两个不同的驯化事件。这些组装的基因组能够利用现有的谷物功能基因组学数据来对抗高粱中可用的新颖多样性,从而为高粱和其他草种的遗传改良提供了无与伦比的资源。

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