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一种可扩展且稳健的叶绿体基因组分型解决方案:玉米叶绿体基因组中单核苷酸多态性和插入/缺失标记的开发与应用。

A Scalable and Robust Chloroplast Genotyping Solution: Development and Application of SNP and InDel Markers in the Maize Chloroplast Genome.

机构信息

Maize Research Institute, Beijing Key Laboratory of Maize DNA Fingerprinting and Molecular Breeding, Key Laboratory of Crop DNA Fingerprinting Innovation and Utilization (Co-construction by Ministry and Province), Beijing Academy of Agricultural and Forest Sciences (BAAFS), Beijing 100097, China.

Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China.

出版信息

Genes (Basel). 2024 Feb 25;15(3):293. doi: 10.3390/genes15030293.

Abstract

Maize( L) is a globally important crop, and understanding its genetic diversity is crucial for plant breeding phylogenetic analyses and comparative genetics. While nuclear markers have been extensively used for mapping agriculturally important genes, they are limited in recognizing characteristics, such as cytoplasmic male sterility and reciprocal cross hybrids. In this study, we performed next-generation sequencing of 176samples, and the maize cultivars represented five distinct groups. A total of 89 single nucleotide polymorphisms (SNPs) and 11 insertion/deletion polymorphisms (InDels) were identified. To enable high-throughput detection, we successfully amplified and confirmed 49 SNP and InDel markers, which were defined as a Varietal Chloroplast Panel (VCP) using the Kompetitive Allele Specific PCR (KASP). The specific markers provided a valuable tool for identifying chloroplast groups. The verification experiment, focusing on the identification of reciprocal cross hybrids and cytoplasmic male sterility hybrids, demonstrated the significant advantages of VCP markers in maternal inheritance characterization. Furthermore, only a small subset of these markers is needed to provide useful information, showcasing the effectiveness of these markers in elucidating the artificial selection process of elite maize lines.

摘要

玉米(L)是一种全球重要的作物,了解其遗传多样性对于植物育种的系统发育分析和比较遗传学至关重要。虽然核标记已被广泛用于定位农业上重要的基因,但它们在识别细胞质雄性不育和正反交杂种等特征方面存在局限性。在这项研究中,我们对 176 个样本进行了下一代测序,这些玉米品种代表了五个不同的群体。总共鉴定出 89 个单核苷酸多态性(SNP)和 11 个插入/缺失多态性(InDel)。为了实现高通量检测,我们成功扩增并验证了 49 个 SNP 和 InDel 标记,这些标记被定义为使用 Kompetitive Allele Specific PCR(KASP)的品种叶绿体面板(VCP)。这些特定的标记提供了识别叶绿体群体的有价值的工具。验证实验集中于识别正反交杂种和细胞质雄性不育杂种,展示了 VCP 标记在母系遗传特征鉴定方面的显著优势。此外,只需要一小部分这些标记就可以提供有用的信息,展示了这些标记在阐明优秀玉米品系的人工选择过程中的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a625/10970264/6eff40a7c0fb/genes-15-00293-g001.jpg

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