Semalaiyappan Janani, Selvanayagam Sivasubramani, Rathore Abhishek, Gupta S K, Chakraborty Animikha, Gujjula Krishna Reddy, Haktan Suren, Viswanath Aswini, Malipatil Renuka, Shah Priya, Govindaraj Mahalingam, Ignacio John Carlos, Reddy Sanjana, Singh Ashok Kumar, Thirunavukkarasu Nepolean
Genomics and Molecular Breeding Lab, ICAR-Indian Institute of Millets Research, Rajendranagar, India.
Accelerated Crop Improvement, International Crop Research Institute for the Semi-Arid Tropics (ICRISAT), Hyderabad, India.
Front Plant Sci. 2023 Jan 10;13:1068883. doi: 10.3389/fpls.2022.1068883. eCollection 2022.
Pearl millet is a crucial nutrient-rich staple food in Asia and Africa and adapted to the climate of semi-arid topics. Since the genomic resources in pearl millet are very limited, we have developed a brand-new mid-density 4K SNP panel and demonstrated its utility in genetic studies. A set of 4K SNPs were mined from 925 whole-genome sequences through a comprehensive in-silico pipeline. Three hundred and seventy-three genetically diverse pearl millet inbreds were genotyped using the newly-developed 4K SNPs through the AgriSeq Targeted Genotyping by Sequencing technology. The 4K SNPs were uniformly distributed across the pearl millet genome and showed considerable polymorphism information content (0.23), genetic diversity (0.29), expected heterozygosity (0.29), and observed heterozygosity (0.03). The SNP panel successfully differentiated the accessions into two major groups, namely B and R lines, through genetic diversity, PCA, and structure models as per their pedigree. The linkage disequilibrium (LD) analysis showed Chr3 had higher LD regions while Chr1 and Chr2 had more low LD regions. The genetic divergence between the B- and R-line populations was 13%, and within the sub-population variability was 87%. In this experiment, we have mined 4K SNPs and optimized the genotyping protocol through AgriSeq technology for routine use, which is cost-effective, fast, and highly reproducible. The newly developed 4K mid-density SNP panel will be useful in genomics and molecular breeding experiments such as assessing the genetic diversity, trait mapping, backcross breeding, and genomic selection in pearl millet.
珍珠粟是亚洲和非洲一种至关重要的营养丰富的主食作物,适应半干旱热带气候。由于珍珠粟的基因组资源非常有限,我们开发了一种全新的中密度4K SNP面板,并证明了其在遗传研究中的实用性。通过一套全面的电子计算流程,从925个全基因组序列中挖掘出一组4K SNP。利用新开发的4K SNP,通过农业测序靶向基因分型技术对373个遗传多样性丰富的珍珠粟自交系进行基因分型。4K SNP均匀分布在珍珠粟基因组中,显示出相当高的多态性信息含量(0.23)、遗传多样性(0.29)、预期杂合度(0.29)和观察到的杂合度(0.03)。该SNP面板通过遗传多样性、主成分分析(PCA)和基于系谱的结构模型,成功地将这些种质分为两个主要类别,即B系和R系。连锁不平衡(LD)分析表明,第3号染色体具有较高的LD区域,而第1号和第2号染色体具有较多的低LD区域。B系和R系群体之间的遗传差异为13%,亚群体内的变异性为87%。在本实验中,我们挖掘了4K SNP,并通过农业测序技术优化了基因分型方案以供常规使用,该方案具有成本效益高、速度快和高度可重复性的特点。新开发的4K中密度SNP面板将在珍珠粟的基因组学和分子育种实验中发挥作用,如评估遗传多样性、性状定位、回交育种和基因组选择。