首页> 外文期刊>BMC Genomics >Application of dissociation curve analysis to radiation hybrid panel marker scoring: generation of a map of river buffalo (B. bubalis) chromosome 20
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Application of dissociation curve analysis to radiation hybrid panel marker scoring: generation of a map of river buffalo (B. bubalis) chromosome 20

机译:解离曲线分析在辐射混合面板标记评分中的应用:水牛河(B. bubalis)20号染色体图谱的产生

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Background Fluorescence of dyes bound to double-stranded PCR products has been utilized extensively in various real-time quantitative PCR applications, including post-amplification dissociation curve analysis, or differentiation of amplicon length or sequence composition. Despite the current era of whole-genome sequencing, mapping tools such as radiation hybrid DNA panels remain useful aids for sequence assembly, focused resequencing efforts, and for building physical maps of species that have not yet been sequenced. For placement of specific, individual genes or markers on a map, low-throughput methods remain commonplace. Typically, PCR amplification of DNA from each panel cell line is followed by gel electrophoresis and scoring of each clone for the presence or absence of PCR product. To improve sensitivity and efficiency of radiation hybrid panel analysis in comparison to gel-based methods, we adapted fluorescence-based real-time PCR and dissociation curve analysis for use as a novel scoring method. Results As proof of principle for this dissociation curve method, we generated new maps of river buffalo (Bubalus bubalis) chromosome 20 by both dissociation curve analysis and conventional marker scoring. We also obtained sequence data to augment dissociation curve results. Few genes have been previously mapped to buffalo chromosome 20, and sequence detail is limited, so 65 markers were screened from the orthologous chromosome of domestic cattle. Thirty bovine markers (46%) were suitable as cross-species markers for dissociation curve analysis in the buffalo radiation hybrid panel under a standard protocol, compared to 25 markers suitable for conventional typing. Computational analysis placed 27 markers on a chromosome map generated by the new method, while the gel-based approach produced only 20 mapped markers. Among 19 markers common to both maps, the marker order on the map was maintained perfectly. Conclusion Dissociation curve analysis is reliable and efficient for radiation hybrid panel scoring, and is more sensitive and robust than conventional gel-based typing methods. Several markers could be scored only by the new method, and ambiguous scores were reduced. PCR-based dissociation curve analysis decreases both time and resources needed for construction of radiation hybrid panel marker maps and represents a significant improvement over gel-based methods in any species.
机译:背景技术与双链PCR产物结合的染料的荧光已广泛用于各种实时定量PCR应用中,包括扩增后解离曲线分析或扩增子长度或序列组成的区分。尽管当前是全基因组测序的时代,诸如辐射杂交DNA面板之类的作图工具仍然对序列组装,集中的重测序工作以及建立尚未进行测序的物种的物理图谱有用。为了在地图上放置特定的个体基因或标记,低通量方法仍然很普遍。通常,对来自每个平板细胞系的DNA进行PCR扩增,然后进行凝胶电泳,并对每个克隆的存在或不存在PCR产物进行评分。与基于凝胶的方法相比,为了提高放射杂交板分析的灵敏度和效率,我们对基于荧光的实时PCR和解离曲线分析进行了改进,以用作一种新颖的评分方法。结果作为这种解离曲线方法原理的证明,我们通过解离曲线分析和常规标记计分生成了河水牛(Bubalus bubalis)20号染色体的新图。我们还获得了序列数据以增强解离曲线结果。以前很少有基因被定位到水牛20号染色体上,并且序列细节受到限制,因此从家牛的直系同源染色体上筛选了65个标记。与25种适用于常规分型的标记相比,有30种牛标记(46%)适合作为水牛辐射杂交小组根据标准方案进行解离曲线分析的跨物种标记。计算分析在新方法生成的染色体图上放置了27个标记,而基于凝胶的方法仅产生了20个标记图。在两个地图共有的19个标记中,地图上的标记顺序保持得当。结论解离曲线分析对于放射混合面板评分是可靠且有效的,并且比常规的基于凝胶的分型方法更灵敏,更可靠。只能通过新方法对几个标记进行评分,并减少歧义分数。基于PCR的解离曲线分析减少了构建辐射杂交板标记图所需的时间和资源,并且在任何物种中都比基于凝胶的方法有了显着改进。

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