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Application of mathematical expectation (ME) strategy for detecting low frequency mutations: An example for evaluating 14-bp insertion/deletion (indel) within the bovine PRNP gene

机译:数学期望(ME)策略在检测低频突变中的应用:评估牛PRNP基因内14 bp插入/缺失(插入/缺失)的示例

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摘要

The detection method based on the mathematical expectation (ME) strategy is fast and accuracy for low frequency mutation screening in large samples. Previous studies have found that the 14-bp insertion/deletion (indel) variants of the 3 untranslated region (3 UTR) within bovine PRNP gene have been characterized with low frequency (5%) in global breeds outside China, which has not been determined in Chinese cattle breeds yet. Therefore, this study aimed to identify the 14-bp indel within PRNP gene in 5 major Chinese indigenous cattle breeds and to evaluate its associations with phenotypic traits. It was the first time to use ME strategy to detect low frequency indel polymorphisms and found that minor allele frequency was 0.038 (Qinchuan), 0.033 (Xianan), 0.013 (Nanyang), 0.003 (Jiaxian), and zero (Ji'an), respectively. Compared to the traditional detection method by which the sample was screened one by one, the reaction time by using the ME method was decreased 62.5%, 64.9%, 77.6%, 88.9% and 66.4%, respectively. In addition, the 14-bp indel was significantly associated with the growth traits in 2 cattle breeds, with the body length of Qinchuan cattle as well as the body weight and waistline of Xianan cattle. Our results have uncovered that the method based on ME strategy is rapid, reliable, and cost-effective for detecting the low frequency mutation as well as our findings provide a potential valuable theoretical basis for the marker-assisted selection (MAS) in beef cattle.
机译:基于数学期望(ME)策略的检测方法快速,准确,可用于大样本的低频突变筛选。先前的研究发现,在中国以外的全球品种中,牛PRNP基因内3个非翻译区(3 UTR)的14 bp插入/缺失(indel)变异的频率较低(5%),尚未确定在中国的牛品种中还没有。因此,本研究旨在鉴定中国5个主要本地牛品种PRNP基因内的14 bp indel,并评估其与表型性状的关联。这是首次使用ME策略检测低频indel多态性,发现次要等位基因频率分别为0.038(秦川),0.033(咸安),0.013(南阳),0.003(嘉县)和零(吉安),分别。与传统的逐一筛选样品的检测方法相比,使用ME方法的反应时间分别减少了62.5%,64.9%,77.6%,88.9%和66.4%。此外,这14bp的插入缺失与2个牛的生长特性显着相关,与秦川牛的体长以及咸南牛的体重和腰围有关。我们的研究结果表明,基于ME策略的方法可快速,可靠且经济高效地检测低频突变,我们的发现为肉牛的标记辅助选择(MAS)提供了潜在的有价值的理论基础。

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