The Use of Interactive Visualizations for Tracking Haplotypic Inheritance in Livestock

Ruminants Pub Date : 2024-02-21 DOI:10.3390/ruminants4010006
Alana Selli, Stephen P. Miller, Ricardo V. Ventura
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Abstract

Our objective was to harness the power of interactive visualizations by utilizing open-source tools to develop an efficient strategy for visualizing Single Nucleotide Polymorphism data within a livestock population, focusing on tracking the transmission of haplotypes. To achieve this, we simulated a realistic beef cattle population in order to obtain phased haplotypes and generate the necessary inputs for creating our visualizations. The visualization tool was built using Python and the Plotly library, which enables interactivity. We set out to explore three scenarios: trio comparison, visualization of grandparents, and half-sibling evaluation. These scenarios enabled us to trace the inheritance of genetic segments, identify crossover events, and uncover common regions within related and unrelated animals. The potential applications of this approach are significant, particularly for improving genomic selection in smaller breeding programs and farms, and it provides valuable insights for guiding more in-depth genomic region analysis. Beyond its practical applications, we believe this strategy can be a valuable educational tool, helping educators clarify complex concepts like Mendelian sampling and haplotypic diversity. Furthermore, we hope it will encourage livestock producers to adopt advanced technologies like genotyping and genomic selection, thereby contributing to the advancement of livestock genetics.
利用交互式可视化技术跟踪家畜的单倍型遗传情况
我们的目标是利用开放源码工具,开发一种有效的可视化牲畜群体单核苷酸多态性数据的策略,重点跟踪单倍型的传播情况,从而发挥交互式可视化的威力。为此,我们模拟了一个现实的肉牛种群,以获得分期单倍型并生成创建可视化所需的输入。可视化工具是使用 Python 和 Plotly 库构建的,该库具有交互性。我们开始探索三种情况:三人比较、祖父母可视化和同父异母评估。通过这些场景,我们可以追踪基因片段的遗传情况,识别交叉事件,并发现亲缘动物和非亲缘动物的共同区域。这种方法的潜在应用意义重大,特别是在改进小型育种计划和农场的基因组选择方面,它为指导更深入的基因组区域分析提供了宝贵的见解。除了实际应用之外,我们还相信这种策略可以成为一种有价值的教育工具,帮助教育工作者澄清孟德尔抽样和单体型多样性等复杂概念。此外,我们还希望它能鼓励家畜生产者采用基因分型和基因组选择等先进技术,从而推动家畜遗传学的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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