AI Article Synopsis

  • Genomic structural variation (SV) consists of differences in gene sequences among individuals, primarily characterized by insertions, deletions, duplications, inversions, and translocations that significantly affect livestock genetics and performance.
  • SV research enhances our understanding of breed diversity, evolutionary biology, and disease mechanisms, contributing to a better grasp of hereditary diseases.
  • This article reviews various aspects of SVs in livestock genomes including classification, detection methods, and their role in understanding phenotypic traits and adaptive genetics, providing insights for better utilization of genetic resources in herbivorous animals.

Article Abstract

Genomic structural variation (SV) refers to differences in gene sequences between individuals on a genomic scale. It is widely distributed in the genome, primarily in the form of insertions, deletions, duplications, inversions, and translocations. Due to its characterization by long segments and large coverage, SVs significantly impact the genetic characteristics and production performance of livestock, playing a crucial role in studying breed diversity, biological evolution, and disease correlation. Research on SVs contributes to an enhanced understanding of chromosome function and genetic characteristics and is important for understanding hereditary diseases mechanisms. In this article, we review the concept, classification, main formation mechanisms, detection methods, and advancement of research on SVs in the genomes of cattle, buffalo, equine, sheep, and goats, aiming to reveal the genetic basis of differences in phenotypic traits and adaptive genetic mechanisms through genomic research, which will provide a theoretical basis for better understanding and utilizing the genetic resources of herbivorous livestock.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11588642PMC
http://dx.doi.org/10.3389/fvets.2024.1416220DOI Listing

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