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Development of multiple SNP marker panels affordable to breeders through genotyping by target sequencing (GBTS) in maize

机译:通过玉米靶测序(GBT)通过基因分型制定多种SNP标记面板的多个SNP标记面板

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摘要

The development of a high-throughput genotyping platform with high quality, flexibility, and affordable genotyping cost is critical for marker-assisted breeding. In this study, a genotyping by target sequencing (GBTS) platform was developed in maize, which can be realized for a small number of markers (several to 5 K) through multiplex PCR (GenoPlexs) and for a large number of markers (1 to 45 K) through in-solution capture. The later was used for development of four SNP marker panels (GenoBaits Maize) containing 20 K, 10 K, 5 K, and 1 K markers. Two genotype panels, one consisting 96 representative worldwide maize inbred lines and the other containing 387 breeding lines developed in our maize breeding programs, were used to test and validate the developed marker panels. First, a 20 K SNP panel, with markers evenly distributed across maize genome, was developed from a 55 K SNP array with improved genome coverage. From this single marker panel, 20 K, 10 K, 5 K, and 1 K SNP markers can be generated by sequencing the samples at the average sequencing depths of 50x, 20x, 7.5x, and 2.5x, respectively. Highly consistent marker genotypes were obtained between the four marker panels and the 55 K array (over 95%) and between two biological replications (over 98%). Also, highly consistent phylogenetic relationships were generated by using four marker panels and two genotype panels, providing strong evidence for the reliability of SNP markers and GBTS genotyping platform. Cost-benefit analysis indicated that the genotypic selection cost based on the GBTS in maize was lower than phenotypic selection, allowing GBTS an affordable genotyping platform for marker-assisted breeding. Integration of this affordable genotyping platform with other breeding platforms and open-source breeding network would greatly facilitate the molecular breeding activities in small- and medium-size companies and developing countries. The four marker panels could be used for many fields of marker application, including germplasm evaluation, genetic mapping, marker-assisted selection (including genomic selection), and plant variety protection.
机译:高通量基因分型平台的开发具有高质量,灵活性和实惠的基因分型成本对于标记辅助育种至关重要。在该研究中,玉米靶测序(GBT)平台的基因分型在玉米中开发,可以通过多重PCR(Genoplexs)和大量标记(1至45 k)通过溶液捕获。后来用于开发含有20k,10k,5k和1k标记的四个SNP标记面板(基因杆状玉米)。两个基因型面板,包括96个代表全球玉米自交系,另一个包含在我们的玉米育种计划中含有387条的育种线,用于测试和验证发达的标记面板。首先,从55 k SNP阵列开发了20K个SNP面板,其具有均匀分布在玉米基因组上的标记,并从55 k SNP阵列中开发,具有改进的基因组覆盖。从该单一标记面板,通过分别在50倍,20x,7.5x和2.5x的平均排序深度测序,可以通过在50倍,20x,7.5x和2.5x的平均序列深度测序来产生20k,10k,5k和1k SNP标记。在四个标记面板和55k阵列(超过95%)和两个生物复制(超过98%)之间获得高度一致的标志物基因型。此外,通过使用四个标记面板和两个基因型面板产生高度一致的系统发育关系,为SNP标记和GBT基因型平台的可靠性提供了强大的证据。成本效益分析表明,基于玉米GBT的基因型选择成本低于表型选择,允许GBT是用于标记辅助育种的实惠的基因分型平台。与其他繁殖平台和开源育种网络的整合性与其他育种平台的整合将极大地促进小型公司和发展中国家的分子育种活动。四个标记面板可用于许多标记应用领域,包括种质评估,遗传映射,标记辅助选择(包括基因组选择)和植物品种保护。

著录项

  • 来源
    《Molecular Breeding》 |2019年第3期|共12页
  • 作者单位

    Chinese Acad Agr Sci Inst Crop Sci 12 South Zhongguancun St Beijing 100081 Peoples R China;

    Chinese Acad Agr Sci Inst Crop Sci 12 South Zhongguancun St Beijing 100081 Peoples R China;

    Mol Breeding Biotechnol Co Ltd 136 Huanghe Pkwy Shijiazhuang 050035 Hebei Peoples R China;

    CapitalBio Technol Corp 18 Life Sci Pkwy Beijing 101111 Peoples R China;

    Chinese Acad Agr Sci Inst Crop Sci 12 South Zhongguancun St Beijing 100081 Peoples R China;

    Mol Breeding Biotechnol Co Ltd 136 Huanghe Pkwy Shijiazhuang 050035 Hebei Peoples R China;

    Chinese Acad Agr Sci Inst Crop Sci 12 South Zhongguancun St Beijing 100081 Peoples R China;

    Mol Breeding Biotechnol Co Ltd 136 Huanghe Pkwy Shijiazhuang 050035 Hebei Peoples R China;

    Chinese Acad Agr Sci Inst Crop Sci 12 South Zhongguancun St Beijing 100081 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

    Maize; Single nucleotide polymorphism(SNP); Genotyping by target sequencing(GBTS); Molecular breeding; Marker-assisted selection;

    机译:玉米;单核苷酸多态性(SNP);靶测序(GBT)的基因分型;分子育种;标记辅助选择;

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