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Construction of the third-generation Zea mays haplotype map

机译:第三代玉米玉米单倍型图的构建

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Background Characterization of genetic variations in maize has been challenging, mainly due to deterioration of collinearity between individual genomes in the species. An international consortium of maize research groups combined resources to develop the maize haplotype version 3 (HapMap 3), built from whole-genome sequencing data from 1218 maize lines, covering predomestication and domesticated Zea mays varieties across the world. Results A new computational pipeline was set up to process more than 12 trillion bp of sequencing data, and a set of population genetics filters was applied to identify more than 83 million variant sites. Conclusions We identified polymorphisms in regions where collinearity is largely preserved in the maize species. However, the fact that the B73 genome used as the reference only represents a fraction of all haplotypes is still an important limiting factor.
机译:背景技术玉米遗传变异的特征描述具有挑战性,主要是由于该物种中各个基因组之间的共线性恶化。一个国际玉米研究协会财团结合资源开发了玉米单倍型版本3(HapMap 3),该版本是根据来自1218个玉米品系的全基因组测序数据构建而成的,涵盖了全世界的优势种群和驯化的玉米。结果建立了新的计算管道来处理超过12万亿bp的测序数据,并且应用了一组种群遗传学过滤器来识别超过8300万个变异位点。结论我们确定了在玉米物种中共线性大部分保留的区域中的多态性。但是,用作参考的B73基因组仅代表所有单倍型的一部分这一事实仍然是重要的限制因素。

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