Genetic insights into crossbred dairy cattle of Pakistan: exploring allele frequency, linkage disequilibrium, and effective population size at a genome-wide scale.

IF 2.7 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Mammalian Genome Pub Date : 2023-12-01 Epub Date: 2023-10-07 DOI:10.1007/s00335-023-10019-y
Fakhar Un Nisa, Haiba Kaul, Muhammad Asif, Imran Amin, Raphael Mrode, Shahid Mansoor, Zahid Mukhtar
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Abstract

Linkage disequilibrium (LD) affects genomic studies accuracy. High-density genotyping platforms identify SNPs across animal genomes, increasing LD evaluation resolution for accurate analysis. This study aimed to evaluate the decay and magnitude of LD in a cohort of 81 crossbred dairy cattle using the GGP_HDv3_C Bead Chip. After quality control, 116,710 Single Nucleotide Polymorphisms (SNPs) across 2520.241 Mb of autosomes were retained. LD extent was assessed between autosomal SNPs within a 10 Mb range using the r2 statistics. LD value declined as inter-marker distance increased. The average r2 value was 0.24 for SNP pairs < 10 kb apart, decreasing to 0.13 for 50-100 kb distances. Minor allele frequency (MAF) and sample size significantly impact LD. Lower MAF thresholds result in smaller r2 values, while higher thresholds show increased r2 values. Additionally, smaller sample sizes exhibit higher average r2 values, especially for larger physical distance intervals (> 50 kb) between SNP pairs. Effective population size and inbreeding coefficient were 150 and 0.028 for the present generation, indicating a decrease in genetic diversity over time. These findings imply that the utilization of high-density SNP panels and customized/breed-specific SNP panels represent a highly favorable approach for conducting genome-wide association studies (GWAS) and implementing genomic selection (GS) in the Bos indicus cattle breeds, whose genomes are still largely unexplored. Furthermore, it is imperative to devise a meticulous breeding strategy tailored to each herd, aiming to enhance desired traits while simultaneously preserving genetic diversity.

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巴基斯坦杂交奶牛的遗传学见解:在全基因组范围内探索等位基因频率、连锁不平衡和有效种群规模。
连锁不平衡(LD)影响基因组研究的准确性。高密度基因分型平台识别动物基因组中的SNPs,提高LD评估分辨率以进行准确分析。本研究旨在使用GGP_HDv3_C珠芯片评估81头杂交奶牛LD的衰变和幅度。质量控制后,保留了2520.241Mb常染色体上的116710个单核苷酸多态性(SNPs)。使用r2统计数据在10Mb范围内的常染色体SNPs之间评估LD程度。LD值随标记间距离的增加而下降。SNP对的平均r2值为0.24 2的值,而更高的阈值显示增加的r2值。此外,较小的样本量表现出较高的平均r2值,尤其是对于较大的物理距离间隔(> 50kb)。本代的有效种群规模和近亲繁殖系数分别为150和0.028,表明遗传多样性随着时间的推移而降低。这些发现表明,利用高密度SNP面板和定制/品种特异性SNP面板是在Bos indicus牛品种中进行全基因组关联研究(GWAS)和实施基因组选择(GS)的一种非常有利的方法,其基因组在很大程度上仍未被探索。此外,必须为每个群体制定细致的育种策略,旨在增强所需性状,同时保持遗传多样性。
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来源期刊
Mammalian Genome
Mammalian Genome 生物-生化与分子生物学
CiteScore
4.00
自引率
0.00%
发文量
33
审稿时长
6-12 weeks
期刊介绍: Mammalian Genome focuses on the experimental, theoretical and technical aspects of genetics, genomics, epigenetics and systems biology in mouse, human and other mammalian species, with an emphasis on the relationship between genotype and phenotype, elucidation of biological and disease pathways as well as experimental aspects of interventions, therapeutics, and precision medicine. The journal aims to publish high quality original papers that present novel findings in all areas of mammalian genetic research as well as review articles on areas of topical interest. The journal will also feature commentaries and editorials to inform readers of breakthrough discoveries as well as issues of research standards, policies and ethics.
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