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开发一种具有更高基因组覆盖度的玉米55K单核苷酸多态性(SNP)芯片用于分子育种。

Development of a maize 55 K SNP array with improved genome coverage for molecular breeding.

作者信息

Xu Cheng, Ren Yonghong, Jian Yinqiao, Guo Zifeng, Zhang Yan, Xie Chuanxiao, Fu Junjie, Wang Hongwu, Wang Guoying, Xu Yunbi, Li Ping, Zou Cheng

机构信息

Institute of Crop Science, Chinese Academy of Agricultural Sciences, 12 South Zhongguancun Street, Beijing, 100081 China.

CapitalBio Technology Corporation, 18 Life Science Parkway, Beijing, 101111 China.

出版信息

Mol Breed. 2017;37(3):20. doi: 10.1007/s11032-017-0622-z. Epub 2017 Feb 16.

Abstract

With the decrease of cost in genotyping, single nucleotide polymorphisms (SNPs) have gained wide acceptance because of their abundance, even distribution throughout the maize ( L.) genome, and suitability for high-throughput analysis. In this study, a maize 55 K SNP array with improved genome coverage for molecular breeding was developed on an Affymetrix® Axiom® platform with 55,229 SNPs evenly distributed across the genome, including 22,278 exonic and 19,425 intronic SNPs. This array contains 451 markers that are associated with 368 known genes and two traits of agronomic importance (drought tolerance and kernel oil biosynthesis), 4067 markers that are not covered by the current reference genome, 734 markers that are differentiated significantly between heterotic groups, and 132 markers that are tags for important transgenic events. To evaluate the performance of 55 K array, we genotyped 593 inbred lines with diverse genetic backgrounds. Compared with the widely-used Illumina® MaizeSNP50 BeadChip, our 55 K array has lower missing and heterozygous rates and more SNPs with lower minor allele frequency (MAF) in tropical maize, facilitating in-depth dissection of rare but possibly valuable variation in tropical germplasm resources. Population structure and genetic diversity analysis revealed that this 55 K array is also quite efficient in resolving heterotic groups and performing fine fingerprinting of germplasm. Therefore, this maize 55 K SNP array is a potentially powerful tool for germplasm evaluation (including germplasm fingerprinting, genetic diversity analysis, and heterotic grouping), marker-assisted breeding, and primary quantitative trait loci (QTL) mapping and genome-wide association study (GWAS) for both tropical and temperate maize.

摘要

随着基因分型成本的降低,单核苷酸多态性(SNP)因其数量丰富、在玉米基因组中均匀分布以及适用于高通量分析而得到广泛认可。在本研究中,基于Affymetrix® Axiom®平台开发了一种用于分子育种的、基因组覆盖度更高的玉米55K SNP芯片,该芯片有55,229个SNP均匀分布于基因组中,其中包括22,278个外显子SNP和19,425个内含子SNP。该芯片包含451个与368个已知基因以及两个重要农艺性状(耐旱性和籽粒油生物合成)相关的标记,4067个未被当前参考基因组覆盖的标记,734个在杂种优势群之间有显著差异的标记,以及132个重要转基因事件的标签标记。为了评估55K芯片的性能,我们对593个具有不同遗传背景的自交系进行了基因分型。与广泛使用的Illumina® MaizeSNP50 BeadChip相比,我们的55K芯片在热带玉米中的缺失率和杂合率更低,且有更多低次要等位基因频率(MAF)的SNP,有助于深入剖析热带种质资源中罕见但可能有价值的变异。群体结构和遗传多样性分析表明,该55K芯片在解析杂种优势群和进行种质精细指纹图谱分析方面也非常有效。因此,这种玉米55K SNP芯片是用于种质评估(包括种质指纹图谱分析、遗传多样性分析和杂种优势群划分)、标记辅助育种以及热带和温带玉米的初级数量性状位点(QTL)定位和全基因组关联研究(GWAS)的潜在有力工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa09/5311085/ef06249361e7/11032_2017_622_Fig1_HTML.jpg

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