4.7 Article

Development of polymorphic markers in the immune gene complex loci of cattle

Journal

JOURNAL OF DAIRY SCIENCE
Volume 104, Issue 6, Pages 6897-6908

Publisher

ELSEVIER SCIENCE INC
DOI: 10.3168/jds.2020-19809

Keywords

cattle genome reassembly; marker selection; bovine tuberculosis; major histocompatibility complex class

Funding

  1. United Kingdom Research and Innovation, Biotechnology and Biological Sciences Research Council (UKRI-BBSRC) [BB/M027155/1, BBS/E/I/00007031, BBS/E/I/00007038, BBS/E/I/00007039, BBS/OS/GC/000015B, BBS/OS/GC/200016]
  2. UKRI-BBSRC [BB/M027155/1, BB/J004227/1, BB/J004235/1, BB/P013740, BB/E018386/1, BB/E018335/1, BB/L004054/1, BB/P013740/1, BB/E018335/2]
  3. grant Reducing Mastitis in the Dairy Cow by Increasing the Prevalence of Beneficial Polymorphisms in Genes Associated with Mastitis Resistance from the Minnesota Agricultural Experiment Station Rapid Agricultural Response Fund
  4. ARSUSDA [30403100010000D, 80423100000200D]
  5. USDA NIFA [20156701522970]
  6. [80423100000100D]
  7. [50903100002600D]
  8. BBSRC [BB/E018335/2, BBS/E/I/00007031, BBS/E/I/00007038, BB/M027155/1, BB/E018386/1, BB/L004054/1, BB/E018335/1, BBS/E/I/00007039] Funding Source: UKRI

Ask authors/readers for more resources

The study developed genetic markers in cattle using new assembly methods and gene references, although no significant associations with bovine tuberculosis phenotypes were found, some markers were successful in predicting the effects on phenotypes.
The addition of cattle health and immunity traits to genomic selection indices holds promise to increase individual animal longevity and productivity, and decrease economic losses from disease. However, highly variable genomic loci that contain multiple immune-related genes were poorly assembled in the first iterations of the cattle reference genome assembly and underrepresented during the development of most commercial genotyping platforms. As a consequence, there is a paucity of genetic markers within these loci that may track haplotypes related to disease susceptibility. By using hierarchical assembly of bacterial artificial chromosome inserts spanning 3 of these immune-related gene regions, we were able to assemble multiple full-length haplotypes of the major histocompatibility complex, the leukocyte receptor complex, and the natural killer cell complex. Using these new assemblies and the recently released ARS-UCD1.2 reference, we aligned whole-genome shotgun reads from 125 sequenced Holstein bulls to discover candidate variants for genetic marker development. We selected 124 SNPs, using heuristic and statistical models to develop a custom genotyping panel. In a proof-of-principle study, we used this custom panel to genotype 1,797 Holstein cows exposed to bovine tuberculosis (bTB) that were the subject of a previous GWAS study using the Illumina BovineHD array. Although we did not identify any significant association of bTB phenotypes with these new genetic markers, 2 markers exhibited substantial effects on bTB phenotypic prediction. The models and parameters trained in this study serve as a guide for future marker discovery surveys particularly in previously unassembled regions of the cattle genome.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.7
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available