Identification of homozygosity-rich regions in the Holstein genome.

IF 0.9 Q3 AGRICULTURE, MULTIDISCIPLINARY
M G Smaragdov
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引用次数: 0

Abstract

In this study, 371 Holstein cows from six herds and 26 Holstein bulls, which were used in these herds, were genotyped by the Illumina BovineSNP50 array. For runs of homozygosity (ROH) identification, consecutive and sliding runs were performed by the detectRUNS and Plink software. The missing calls did not significantly affect the ROH data. The mean number of ROH identified by consecutive runs was 95.4 ± 2.7, and that by sliding runs was 86.0 ± 2.6 in cows, while this number for Holstein bulls was lower 58.9 ± 1.9. The length of the ROH segments varied from 1 Mb to over 16 Mb, with the largest number of ROH having a length of 1-2 Mb. Of the 29 chromosomes, BTA 14, BTA 16, and BTA 7 were the most covered by ROH. The mean coefficient of inbreeding across the herds was 0.111 ± 0.003 and 0.104 ± 0.004 based on consecutive and sliding runs, respectively, and 0.078 ± 0.005 for bulls based on consecutive runs. These values do not exceed those for Holstein cattle in North America. The results of this study confirmed the more accurate identification of ROH by consecutive runs, and also that the number of allowed heterozygous SNPs may have a significant effect on ROH data.

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Abstract Image

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荷斯坦基因组中富含纯合性区域的鉴定。
在这项研究中,使用Illumina BovineSNP50阵列对来自六个畜群的371头荷斯坦奶牛和26头荷斯坦公牛进行了基因分型。对于纯合性(ROH)鉴定的运行,通过detectRUNS和Plink软件进行连续和滑动运行。丢失的呼叫对ROH数据没有显著影响。奶牛通过连续跑确定的ROH平均数为95.4±2.7,通过滑动跑确定的平均数为86.0±2.6,而荷斯坦公牛的这一数字较低,为58.9±1.9。ROH段的长度从1Mb变化到超过16Mb,最大数量的ROH具有1-2Mb的长度。在29条染色体中,BTA14、BTA16和BTA7的ROH覆盖率最高。基于连续跑和滑动跑,牛群的平均近亲繁殖系数分别为0.111±0.003和0.104±0.004,基于连续跑,公牛的平均近亲系数为0.078±0.005。这些数值不超过北美荷斯坦牛的数值。这项研究的结果证实了通过连续运行更准确地识别ROH,并且允许的杂合SNP的数量可能对ROH数据有显著影响。
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来源期刊
Vavilovskii Zhurnal Genetiki i Selektsii
Vavilovskii Zhurnal Genetiki i Selektsii AGRICULTURE, MULTIDISCIPLINARY-
CiteScore
1.90
自引率
0.00%
发文量
119
审稿时长
8 weeks
期刊介绍: The "Vavilov Journal of genetics and breeding" publishes original research and review articles in all key areas of modern plant, animal and human genetics, genomics, bioinformatics and biotechnology. One of the main objectives of the journal is integration of theoretical and applied research in the field of genetics. Special attention is paid to the most topical areas in modern genetics dealing with global concerns such as food security and human health.
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