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加拿大西部大麦合作试验的遗传多样性与群体结构评估

Genetic diversity and population structure assessment of Western Canadian barley cooperative trials.

作者信息

Capo-Chichi Ludovic J A, Elakhdar Ammar, Kubo Takahiko, Nyachiro Joseph, Juskiw Patricia, Capettini Flavio, Slaski Jan J, Ramirez Guillermo Hernandez, Beattie Aaron D

机构信息

Department of Renewable Resources, Faculty of Agriculture, Life and Environmental Sciences, University of Alberta, Edmonton, AB, Canada.

Institute of Genetic Resources, Faculty of Agriculture, Kyushu University, Fukuoka, Japan.

出版信息

Front Plant Sci. 2023 Jan 9;13:1006719. doi: 10.3389/fpls.2022.1006719. eCollection 2022.

Abstract

Studying the population structure and genetic diversity of historical datasets is a proposed use for association analysis. This is particularly important when the dataset contains traits that are time-consuming or costly to measure. A set of 96 elite barley genotypes, developed from eight breeding programs of the Western Canadian Cooperative Trials were used in the current study. Genetic diversity, allelic variation, and linkage disequilibrium (LD) were investigated using 5063 high-quality SNP markers the Illumina 9K Barley Infinium iSelect SNP assay. The distribution of SNPs markers across the barley genome ranged from 449 markers on chromosome 1H to 1111 markers on chromosome 5H. The average polymorphism information content (PIC) per locus was 0.275 and ranged from 0.094 to 0.375. Bayesian clustering in STRUCTURE and principal coordinate analysis revealed that the populations are differentiated primarily due to the different breeding program origins and ear-row type into five subpopulations. Analysis of molecular variance based on PhiPT values suggested that high values of genetic diversity were observed within populations and accounted for 90% of the total variance. Subpopulation 5 exhibited the most diversity with the highest values of the diversity indices, which represent the breeding program gene pool of AFC, AAFRD, AU, and BARI. With increasing genetic distance, the LD values, expressed as r, declined to below the critical r 0.18 after 3.91 cM, and the same pattern was observed on each chromosome. Our results identified an important pattern of genetic diversity among the Canadian barley panel that was proposed to be representative of target breeding programs and may have important implications for association mapping in the future. This highlight, that efforts to identify novel variability underlying this diversity may present practical breeding opportunities to develop new barley genotypes.

摘要

研究历史数据集的群体结构和遗传多样性是关联分析的一种应用设想。当数据集中包含耗时或成本高昂的测量性状时,这一点尤为重要。本研究使用了一组由加拿大西部合作试验的八个育种项目培育出的96个优良大麦基因型。利用Illumina 9K大麦Infinium iSelect SNP检测法的5063个高质量SNP标记,研究了遗传多样性、等位基因变异和连锁不平衡(LD)。SNP标记在大麦基因组中的分布范围从1H染色体上的449个标记到5H染色体上的1111个标记。每个位点的平均多态性信息含量(PIC)为0.275,范围从0.094到0.375。STRUCTURE中的贝叶斯聚类和主坐标分析表明,这些群体主要因不同的育种项目起源和穗行数类型而分为五个亚群。基于PhiPT值的分子方差分析表明,群体内观察到较高的遗传多样性值,占总方差的90%。亚群5表现出最多样性,多样性指数值最高,代表了AFC、AAFRD、AU和BARI的育种项目基因库。随着遗传距离的增加,以r表示的LD值在3.91 cM后降至临界r 0.18以下,并且在每条染色体上都观察到相同的模式。我们的结果确定了加拿大大麦群体中遗传多样性的一个重要模式,该模式被认为代表了目标育种项目,并且可能对未来的关联作图具有重要意义。这突出表明,识别这种多样性背后新变异的努力可能为培育新的大麦基因型提供实际的育种机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a28d/9868428/908e5e124815/fpls-13-1006719-g001.jpg

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