Cui Bo, Guo Zhongxu, Cao Hongbo, Calus Mario, Zhang Qianqian
School of Chemistry and Biological Engineering, University of Science and Technology, Beijing, China.
College of Water Resources and Civil Engineering, China Agricultural University, Beijing, China.
Front Genet. 2023 Jan 24;13:1028662. doi: 10.3389/fgene.2022.1028662. eCollection 2022.
With the development of genotyping and sequencing technology, researchers working in the area of conservation genetics are able to obtain the genotypes or even the sequences of a representative sample of individuals from the population. It is of great importance to examine the genomic variants and genes that are highly preferred or pruned during the process of adaptive introgression or long-term hybridization. To the best of our knowledge, we are the first to develop a platform with computational integration of a relative identity-by-descent (rIBD) scores algorithm for introgressive mapping. The rIBD algorithm is designed for mapping the fine-scaled genomic regions under adaptive introgression between the source breeds and the admixed breed. Our rIBD calculation platform provides compact functions including reading input information and uploading of files, rIBD calculation, and presentation of the rIBD scores. We analyzed the simulated data using the rIBD calculation platform and calculated the average IBD score of 0.061 with a standard deviation of 0.124. The rIBD scores generally follow a normal distribution, and a cut-off of 0.432 and -0.310 for both positive and negative rIBD scores is derived to enable the identification of genomic regions showing significant introgression signals from the source breed to the admixed breed. A list of genomic regions with detailed calculated rIBD scores is reported, and all the rIBD scores for each of the considered windows are presented in plots on the rIBD calculation platform. Our rIBD calculation platform provides a user-friendly tool for the calculation of fine-scaled rIBD scores for each of the genomic regions to map possible functional genomic variants due to adaptive introgression or long-term hybridization.
随着基因分型和测序技术的发展,从事保护遗传学领域研究的人员能够获取种群中个体代表性样本的基因型甚至序列。研究在适应性渐渗或长期杂交过程中高度优选或被剔除的基因组变异和基因非常重要。据我们所知,我们是首个开发出一个平台的团队,该平台通过计算整合相对同源片段(rIBD)得分算法进行渐渗定位。rIBD算法旨在定位源品种和杂交品种之间适应性渐渗下的精细基因组区域。我们的rIBD计算平台提供了紧凑的功能,包括读取输入信息和上传文件、rIBD计算以及rIBD得分展示。我们使用rIBD计算平台分析了模拟数据,计算出平均IBD得分为0.061,标准差为0.124。rIBD得分通常呈正态分布,得出正、负rIBD得分的截止值分别为0.432和 -0.310,以便识别显示从源品种到杂交品种有显著渐渗信号的基因组区域。报告了具有详细计算rIBD得分的基因组区域列表,并且在rIBD计算平台的图中展示了每个考虑窗口的所有rIBD得分。我们的rIBD计算平台为计算每个基因组区域的精细rIBD得分提供了一个用户友好的工具,以定位由于适应性渐渗或长期杂交可能产生的功能基因组变异。