AI Article Synopsis

  • This study focuses on structural variants in the genome of Dairy Gir cattle, aiming to improve breeding for tropical environments.
  • A total of 38 cattle were sequenced, and 566 were genotyped, resulting in the identification of 10 common and 45 unique copy number variation regions (CNVR) related to significant traits.
  • The identified CNVRs are linked to key genes influencing factors like health, reproduction, and environmental adaptation, enhancing our understanding of the Gir breed's genetic makeup.

Article Abstract

Studying structural variants that can control complex traits is relevant for dairy cattle production, especially for animals that are tolerant to breeding conditions in the tropics, such as the Dairy Gir cattle. This study identified and characterized high confidence copy number variation regions (CNVR) in the Gir breed genome. A total of 38 animals were whole-genome sequenced, and 566 individuals were genotyped with a high-density SNP panel, among which 36 animals had both sequencing and SNP genotyping data available. Two sets of high confidence CNVR were established: one based on common CNV identified in the studied population (CNVR_POP), and another with CNV identified in sires with both sequence and SNP genotyping data available (CNVR_ANI). We found 10 CNVR_POP and 45 CNVR_ANI, which covered 1.05 Mb and 4.4 Mb of the bovine genome, respectively. Merging these CNV sets for functional analysis resulted in 48 unique high confidence CNVR. The overlapping genes were previously related to embryonic mortality, environmental adaptation, evolutionary process, immune response, longevity, mammary gland, resistance to gastrointestinal parasites, and stimuli recognition, among others. Our results contribute to a better understanding of the Gir breed genome. Moreover, the CNV identified in this study can potentially affect genes related to complex traits, such as production, health, and reproduction.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10085049PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0284085PLOS

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