利用Slaf-Seq鉴定的Snp标记研究芒草的遗传关系

Zhiyong Chen, Yancen He, Y. Iqbal, Yan-Ding Shi, Hongmei Huang, Zili Yi
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引用次数: 0

摘要

背景:芒草是欧洲和亚洲部分地区领先的专用能源草,有望在未来生物经济的发展中发挥关键作用。然而,由于其复杂的遗传背景,对其系统发育关系和基因功能的进化进行研究是困难的。本研究对50份芒草种质资源进行了调查,包括1份母本(lutarioriparius)、30份候选父本(lutarioriparius、M. sinensis和M. sacchariflorus)和19份子代。我们使用高通量特异性位点扩增片段测序(SLAF-seq)在所有种质中鉴定信息丰富的单核苷酸多态性(snp)。结果:共鉴定出800,081个SLAF标签,其中160,368个是多态性的。每个标签长264 - 364bp。获得的SNPs用于研究芒草属植物的遗传关系。利用所获得的snp构建了50份种质资源的系统发育树,发现这些种质资源可分为两个支系:一个支系仅为中华支原体,一个支系包含了其后代、lutarioriparius和sacchariflorus。遗传聚类分析表明,该品种的雄性亲本最可能为绿毛小蠊C3种质。结论:SLAF-seq是一种高通量测序方法,可用于鉴定芒草种质资源中的信息性snp,并快速表征该属的遗传关系。我们的研究结果将为利用具有优良生物量或纤维生产潜力的芒草品种的育种计划提供支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Genetic Relationships within Miscanthus Using Snp Markers Identified Using Slaf-Seq
Background: Miscanthus, which is a leading dedicated-energy grass in Europe and in parts of Asia, is expected to play a key role in the development of the future bioeconomy. However, due to its complex genetic background, it is difficult to investigate phylogenetic relationships and the evolution of gene function in this genus. Here, we investigated 50 Miscanthus germplasms: 1 female parent (M. lutarioriparius), 30 candidate male parents (M. lutarioriparius, M. sinensis, and M. sacchariflorus), and 19 offspring. We used high-throughput Specific-Locus Amplified Fragment sequencing (SLAF-seq) to identify informative single nucleotide polymorphisms (SNPs) in all germplasms.Results: We identified 800,081 SLAF tags, of which 160,368 were polymorphic. Each tag was 264–364 bp long. The obtained SNPs were used to investigate genetic relationships within Miscanthus. We constructed a phylogenetic tree of the 50 germplasms using the obtained SNPs, and found that the germplasms fell into two clades: one clade of M. sinensis only and one clade that included the offspring, M. lutarioriparius, and M. sacchariflorus. Genetic cluster analysis indicated that M. lutarioriparius germplasm C3 was the most likely male parent of the offspring.Conclusions: As a high-throughput sequencing method, SLAF-seq can be used to identify informative SNPs in Miscanthus germplasms and to rapidly characterize genetic relationships within this genus. Our results will support the development of breeding programs utilizing Miscanthus cultivars with elite biomass- or fiber-production potential.
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