Affiliation:
1. Dipartimento di Agricoltura, Alimentazione e Ambiente Università di Catania Catania Italy
2. Dipartimento Scienze Agrarie, Alimentari e Forestali Università di Palermo Palermo Italy
3. Dipartimento di Agricoltura, Ambiente e Alimenti Università del Molise Campobasso Italy
4. Dipartimento di Scienze Veterinarie Università di Torino Torino Italy
5. Istituto di Biologia e Biotecnologia Agraria, National Research Council Lodi Italy
Abstract
AbstractAnalysis of genomic data is becoming more and more common for the effective management of livestock breeding programmes, even in the case of local populations. In this work, the genome‐wide data of Nero Siciliano pig breed were compared to that of wild boar, Italian local and cosmopolitan breeds to investigate its genetic structure, and runs of homozygosity (ROH) and heterozygosity patterns. The Nero Siciliano has been reported to have the highest rate of genetic diversity among the Italian breeds, and a genetic variability comparable to that of the cosmopolitan breeds. Analyses of genomic structure and relationships underlined its proximity to wild boar, and an internal substructure probably linked to different family lines. The breed showed a low value of inbreeding estimated from ROH, and the highest diversity index among the Italian breeds, even if lower than that of the cosmopolitans. Four ROH islands in three chromosomes (SSC8, SSC11, and SSC14) and one heterozygosity‐rich region (SSC1) were identified in Nero Siciliano, highlighting genomic regions related to productive QTL. Across breeds, SSC8 and SSC14 were the chromosomes with most ROH islands, with Mora Romagnola and wild boar showing the highest level of autozygosity. Chromosomes SSC2, SSC6, SSC8 and SSC13 showed the majority of runs of heterozygosity regions, mainly found in the cosmopolitan pig breeds, which reported several genes associated with health‐related QTL. The outlined results can help to better identify the genomic profile of this local breed in order to plan matings, maintain adequate internal diversity and exploit the production system.
Subject
Genetics,Animal Science and Zoology,General Medicine
Cited by
5 articles.
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