Center for Crop Functional Genomics and Molecular Breeding, China Agricultural University, Beijing 100193, China.
State Key Laboratory of Plant Physiology and Biochemistry, College of Biological Sciences, China Agricultural University, Beijing 100193, China.
Int J Mol Sci. 2021 Nov 19;22(22):12487. doi: 10.3390/ijms222212487.
It is vital to develop high-throughput methods to determine transgene copy numbers initially and zygosity during subsequent breeding. In this study, the target sequence of the previously reported endogenous reference gene was analyzed using 633 maize inbred lines, and two SNPs were observed. These SNPs significantly increased the PCR efficiency, while the newly developed gene assay (hmg-taq-F2/R2) excluding these SNPs reduced the efficiency into normal ranges. The TaqMan amplification efficiency of and with newly developed primers was calculated as 0.993 and 1.000, respectively. The inter-assay coefficient of variation (CV) values for the and genes varied from 1.18 to 2.94%. The copy numbers of the transgene using new TaqMan assays were identical to those using dPCR. Significantly, the precision of one repetition reached 96.7% of that of three repetitions of single-copy plants analyzed by simple random sampling, and the actual accuracy reached 95.8%, confirmed by T and T progeny. With the high-throughput DNA extraction and automated data analysis procedures developed in this study, nearly 2700 samples could be analyzed within eight hours by two persons. The combined results suggested that the new gene assay developed here could be a universal maize reference gene system, and the new assay has high throughput and high accuracy for large-scale screening of maize varieties around the world.
开发高通量方法来确定转基因拷贝数,对于最初的研究和后续的繁殖过程中的基因型鉴定非常重要。在本研究中,我们分析了 633 个玉米自交系中先前报道的内参基因的靶序列,并观察到了两个 SNP。这些 SNP 显著提高了 PCR 效率,而新开发的排除这些 SNP 的基因检测(hmg-taq-F2/R2)则将效率降低到正常范围。新开发的引物对 和 的 TaqMan 扩增效率分别计算为 0.993 和 1.000。 和 基因的内实验间变异系数(CV)值从 1.18%到 2.94%不等。使用新的 TaqMan 检测法检测转基因 的拷贝数与使用 dPCR 的结果一致。值得注意的是,重复一次的精度达到了通过简单随机抽样分析单拷贝植物重复三次的 96.7%,实际精度达到 95.8%,这在 T 和 T 后代中得到了验证。通过本研究中开发的高通量 DNA 提取和自动化数据分析程序,两个人可以在 8 小时内分析近 2700 个样本。综合结果表明,这里开发的新 基因检测可以作为一种通用的玉米参考基因系统,该检测具有高通量和高精度,可用于全球范围内大规模筛选玉米品种。