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Selection criteria for SNP loci to maximize robustness of high-resolution melting analysis for plant breeding

机译:SNP基因座的选择标准可最大程度提高植物育种高分辨率熔解分析的鲁棒性

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摘要

DNA markers are useful for identifying genes and developing new genetic materials for breeding and genetic research. High-resolution melting (HRM) analysis can detect a single nucleotide polymorphism (SNP) in two polymerase chain reaction (PCR) fragments as a melting temperature (Tm) difference without additional experimental steps, such as gel electrophoresis. To design a method for developing reliable HRM markers that discriminate between homozygous alleles containing SNPs, we tested new evaluation indexes related to the thermodynamics of double-stranded DNA to find one that maximizes the difference in Tm values between PCR fragments. We found that differences in the change in Gibbs free energy (ΔG°) correlated with actual differences in Tm values. Optimization of the nearest neighboring nucleotide (NNN) of a SNP by nucleotide substitution in the primer and reducing the size of the PCR fragment both enlarged the actual differences in Tm. The genetic DNA markers we developed by NNN substitution, termed NNNs-HRM markers, could be precisely mapped within soybean chromosomes by linkage analysis. We developed a Perl script pipeline to enable the automatic design of a massive number of NNNs-HRM markers; these scripts are freely available and would be useful for practical breeding programs for other plant species.
机译:DNA标记可用于鉴定基因和开发用于育种和遗传研究的新遗传材料。高分辨率熔解(HRM)分析可以检测两个聚合酶链反应(PCR)片段中的单核苷酸多态性(SNP)作为熔解温度(Tm)的差异,而无需其他实验步骤,例如凝胶电泳。为了设计一种方法来开发区分包含SNP的纯合等位基因的可靠HRM标记的方法,我们测试了与双链DNA热力学相关的新评估指标,以找到能最大化PCR片段之间Tm值差异的方法。我们发现吉布斯自由能(ΔG°)变化的差异与Tm值的实际差异相关。通过在引物中进行核苷酸置换来优化SNP的最近邻核苷酸(NNN),并减小PCR片段的大小,都扩大了Tm的实际差异。我们可以通过连锁分析将通过NNN替代开发的遗传DNA标记(称为NNNs-HRM标记)精确定位在大豆染色体内。我们开发了Perl脚本管道,以实现大量NNNs-HRM标记的自动设计。这些脚本是免费提供的,对于其他植物物种的实用育种程序很有用。

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