Mapping and functional characterization of structural variation in 1060 pig genomes
Картирование и функциональная характеристика структурных вариантов в 1060 геномах свиней
2024-05-07
SCID: 54.1/uewxbkmp
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ABCG2 copy number gain and chromatin interactionKIT gene duplication (white coat color)mobile element insertions (SINE)structural variation (SV) catalogwhole-genome sequencing of 1060 pigs
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Abstract (AI)
BACKGROUND: Structural variations (SVs) have significant impacts on complex phenotypes by rearranging large amounts of DNA sequence. RESULTS: We present a comprehensive SV catalog based on the whole-genome sequence of 1060 pigs (Sus scrofa) representing 101 breeds, covering 9.6% of the pig genome. This catalog includes 42,487 deletions, 37,913 mobile element insertions, 3308 duplications, 1664 inversions, and 45,184 break ends. Estimates of breed ancestry and hybridization using genotyped SVs align well with those from single nucleotide polymorphisms. Geographically stratified deletions are observed, along with known duplications of the KIT gene, responsible for white coat color in European pigs. Additionally, we identify a recent SINE element insertion in MYO5A transcripts of European pigs, potentially influencing alternative splicing patterns and coat color alterations. Furthermore, a Yorkshire-specific copy number gain within ABCG2 is found, impacting chromatin interactions and gene expression across multiple tissues over a stretch of genomic region of ~200 kb. Preliminary investigations into SV's impact on gene expression and traits using the Pig Genotype-Tissue Expression (PigGTEx) data reveal SV associations with regulatory variants and gene-trait pairs. For instance, a 51-bp deletion is linked to the lead eQTL of the lipid metabolism regulating gene FADS3, whose expression in embryo may affect loin muscle area, as revealed by our transcriptome-wide association studies. CONCLUSIONS: This SV catalog serves as a valuable resource for studying diversity, evolutionary history, and functional shaping of the pig genome by processes like domestication, trait-based breeding, and adaptive evolution.
Key Findings
1
Cataloged 42,487 deletions, 37,913 mobile element insertions, 3,308 duplications, 1,664 inversions, and 45,184 break ends.
2
Discovered a recent SINE insertion in MYO5A transcripts of European pigs potentially affecting alternative splicing and coat color.
3
Found a Yorkshire-specific ~200 kb ABCG2 copy number gain that alters chromatin interactions and gene expression across multiple tissues.
4
Generated a comprehensive SV catalog from whole-genome sequences of 1060 pigs across 101 breeds, covering 9.6% of the pig genome.
5
Genotyped SVs reproduce breed ancestry and hybridization patterns consistent with single nucleotide polymorphism-based estimates.
6
Identified geographically stratified deletions and known KIT gene duplications linked to white coat color in European pigs.
7
Using PigGTEx, linked SVs to regulatory variants and gene-trait pairs, e.g., a 51-bp deletion associated with the lead eQTL of FADS3 affecting embryo expression and loin muscle area.
Research Object
Structural variation catalog derived from whole-genome sequences of 1060 pigs (Sus scrofa)
Research Subject
Mapping and functional characterization of structural variants (deletions, insertions, duplications, inversions, break ends) across pig breeds, and their impacts on gene expression, chromatin interactions, and phenotypic traits (e.g., coat color, lipid metabolism, muscle area)
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2024-05-07
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