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Genome-Wide Analysis Revealed Homozygosity and Demographic History of Five Chinese Sheep Breeds Adapted to Different Environments. | LitMetric

AI Article Synopsis

  • Researchers studied the autozygosity of five local Chinese sheep breeds by analyzing high-density SNP Chip data to identify runs of homozygosity (ROH), revealing how inbreeding has shaped their genomes.
  • Out of 96 sheep samples, they identified 3046 ROHs, mostly in segments longer than 1-5 Mb, with an overall average genome coverage of about 12%.
  • The study also found specific genomic regions associated with traits such as disease resistance and growth, suggesting the need for tailored breeding and conservation strategies for these indigenous breeds.

Article Abstract

Homozygosity of long sequence genotypes are a result of parents transmitting identical haplotypes, which can be used to estimate their auto-zygosity. Therefore, we used high-density SNP Chip data to characterize the auto-zygosity of each breed according to the occurrence and distribution of runs of homozygosity (ROH). Subsequently, we identified the genomic regions with high runs of homozygosity frequencies within individuals of each breed. We selected 96 sheep samples from five local Chinese sheep breeds belonging to different geographical locations. We identified 3046 ROHs within the study breed individuals, among which the longer segments (>1-5 Mb) were dominant. On average, ROH segments covered about 12% of the genomes; the coverage rate of OAR20 was the lowest and that of OAR2 was the highest. The distribution analysis of runs of homozygosity showed that the detected ROH mainly distributed between >26 and 28 Mb. The Hetian and Hu sheep showed the lowest ROH distribution. The estimation of homozygosity level reflects the history of modern and ancient inbreeding, which may affect the genomes of Chinese indigenous sheep breeds and indicate that some animals have experienced recent self-pollination events (Yabuyi, Karakul and Wadi). In these sheep breeds, the genomic regions were assumed to be under selection signatures frequently in line with long ROH. These regions included candidate genes associated with disease resistance traits (), the innate and adaptive immune response ( and ), digestion and metabolism (), growth (SPP1), body size and developments ( and ). This study highlighted new insights into the ROH patterns and provides a basis for future breeding and conservation strategies of Chinese sheep breeds.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7764688PMC
http://dx.doi.org/10.3390/genes11121480DOI Listing

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