Institute of Genetics, Vetsuisse Faculty, University of Bern, Bremgartenstrasse 109a, 3001, Bern, Switzerland.
Qualitas AG, 6300, Zug, Switzerland.
Genet Sel Evol. 2021 Dec 16;53(1):95. doi: 10.1186/s12711-021-00686-3.
This study was carried out on the two Braunvieh populations reared in Switzerland, the dairy Brown Swiss (BS) and the dual-purpose Original Braunvieh (OB). We performed a genome-wide analysis of array data of trios (sire, dam, and offspring) from the routine genomic selection to identify candidate regions showing missing homozygosity and phenotypic associations with five fertility, ten birth, and nine growth-related traits. In addition, genome-wide single SNP regression studies based on 114,890 single nucleotide polymorphisms (SNPs) for each of the two populations were performed. Furthermore, whole-genome sequencing data of 430 cattle including 70 putative haplotype carriers were mined to identify potential candidate variants that were validated by genotyping the current population using a custom array.
Using a trio-based approach, we identified 38 haplotype regions for BS and five for OB that segregated at low to moderate frequencies. For the BS population, we confirmed two known haplotypes, BH1 and BH2. Twenty-four variants that potentially explained the missing homozygosity and associated traits were detected, in addition to the previously reported TUBD1:p.His210Arg variant associated with BH2. For example, for BS we identified a stop-gain variant (p.Arg57*) in the MRPL55 gene in the haplotype region on chromosome 7. This region is associated with the 'interval between first and last insemination' trait in our data, and the MRPL55 gene is known to be associated with early pregnancy loss in mice. In addition, we discuss candidate missense variants in the CPT1C, MARS2, and ACSL5 genes for haplotypes mapped in BS. In OB, we highlight a haplotype region on chromosome 19, which is potentially caused by a frameshift variant (p.Lys828fs) in the LIG3 gene, which is reported to be associated with early embryonic lethality in mice. Furthermore, we propose another potential causal missense variant in the TUBGCP5 gene for a haplotype mapped in OB.
We describe, for the first time, several haplotype regions that segregate at low to moderate frequencies and provide evidence of causality by trait associations in the two populations of Swiss Braunvieh. We propose a list of six protein-changing variants as potentially causing missing homozygosity. These variants need to be functionally validated and incorporated in the breeding program.
本研究针对瑞士饲养的两个红牛品种进行,即乳用棕色瑞士牛(BS)和兼用原红牛(OB)。我们对常规基因组选择的三亲(父本、母本和后代)阵列数据进行了全基因组分析,以鉴定表现出缺失纯合性和与五个繁殖力、十个出生和九个生长相关性状的表型关联的候选区域。此外,我们还针对这两个群体的每一个群体进行了基于 114890 个单核苷酸多态性(SNP)的全基因组单 SNP 回归研究。此外,我们还挖掘了包括 70 个假定单倍型携带者在内的 430 头牛的全基因组测序数据,以鉴定潜在的候选变体,并使用定制的数组对当前群体进行基因分型以验证这些变体。
使用三亲方法,我们鉴定了 BS 的 38 个单倍型区域和 OB 的 5 个单倍型区域,这些区域的分离频率较低。对于 BS 群体,我们证实了两个已知的单倍型 BH1 和 BH2。除了先前报道的与 BH2 相关的 TUBD1:p.His210Arg 变体之外,还检测到了 24 个可能解释缺失纯合性和相关性状的变体。例如,对于 BS,我们在第 7 号染色体上的单倍型区域中鉴定出了一个 MRPL55 基因的无义突变(p.Arg57*)。该区域与我们数据中的“第一次和最后一次授精之间的间隔”性状相关,并且已知 MRPL55 基因与小鼠的早期妊娠丢失有关。此外,我们还讨论了在 BS 映射的单倍型中 CPT1C、MARS2 和 ACSL5 基因的候选错义变体。在 OB 中,我们突出了 19 号染色体上的一个单倍型区域,该区域可能是由于 LIG3 基因的移码突变(p.Lys828fs)引起的,该突变被报道与小鼠的早期胚胎致死性有关。此外,我们还提出了 OB 映射的另一个潜在的因果错义变体在 TUBGCP5 基因中。
我们首次描述了在瑞士红牛的两个群体中分离频率较低的几个单倍型区域,并通过两个群体的性状关联提供了因果关系的证据。我们提出了一个由六个蛋白改变变体组成的列表,作为潜在的缺失纯合性原因。这些变体需要进行功能验证,并纳入到育种计划中。