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Genotyping and Whole-Genome Resequencing of Welsh Sheep Breeds Reveal Candidate Genes and Variants for Adaptation to Local Environment and Socioeconomic Traits. | LitMetric

AI Article Synopsis

  • - Advances in genetic tools are now allowing researchers to study Welsh mountain sheep breeds, previously overlooked for their poor wool and meat quality, to better understand their adaptation to harsh upland environments.
  • - Genetic analyses revealed strong selection in specific genes related to local adaptation in both upland and lowland breeds, indicating differences in traits such as metabolism, cell stress responses, and color.
  • - The findings highlight new genetic variants that could enhance breeding strategies for sheep, potentially improving their adaptability and productivity across various environments.

Article Abstract

Background: Advances in genetic tools applied to livestock breeding has prompted research into the previously neglected breeds adapted to harsh local environments. One such group is the Welsh mountain sheep breeds, which can be farmed at altitudes of 300 m above sea level but are considered to have a low productive value because of their poor wool quality and small carcass size. This is contrary to the lowland breeds which are more suited to wool and meat production qualities, but do not fare well on upland pasture. Herein, medium-density genotyping data from 317 individuals representing 15 Welsh sheep breeds were used alongside the whole-genome resequencing data of 14 breeds from the same set to scan for the signatures of selection and candidate genetic variants using haplotype- and SNP-based approaches.

Results: Haplotype-based selection scan performed on the genotyping data pointed to a strong selection in the regions of , , , and genes in the upland breeds, and , , and in the lowland breeds. SNP-based selection scan performed on the resequencing data pointed to the missense mutations under putative selection relating to a local adaptation in the upland breeds with functions such as angiogenesis (), anti-oxidation (), cell stress (), membrane transport ( and ), and insulin signaling ( and ). By contrast, genes containing candidate missense mutations in the lowland breeds are related to cell cycle (), cell adhesion (), and coat color ().

Conclusion: We found new variants in genes with potentially functional consequences to the adaptation of local sheep to their environments in Wales. Knowledge of these variations is important for improving the adaptative qualities of UK and world sheep breeds through a marker-assisted selection.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8253514PMC
http://dx.doi.org/10.3389/fgene.2021.612492DOI Listing

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