AI Article Synopsis

  • The study mapped quantitative trait loci (QTL) related to body composition in a single-sire backcross family of sheep by analyzing 165 male offspring and 189 microsatellite loci.
  • Two groups of animals were raised under paddock conditions and then fattened for 90 days, with their body composition assessed using CT imaging to evaluate various traits before slaughter at ages 2 and 3.5.
  • The research identified 28 confirmed QTL and several suggestive QTL across multiple chromosomes, revealing pleiotropic effects without identifying tissue-specific QTL, and culminated in a comparative analysis of ovine and bovine QTL for carcass traits.

Article Abstract

An (Awassi × Merino) × Merino single-sire backcross family with 165 male offspring was used to map quantitative trait loci (QTL) for body composition traits on a framework map of 189 microsatellite loci across all autosomes. Two cohorts were created from the experimental progeny to represent alternative maturity classes for body composition assessment. Animals were raised under paddock conditions prior to entering the feedlot for a 90-day fattening phase. Body composition traits were derived in vivo at the end of the experiment prior to slaughter at 2 (cohort 1) and 3.5 (cohort 2) years of age, using computed tomography. Image analysis was used to gain accurate predictions for 13 traits describing major fat depots, lean muscle, bone, body proportions and body weight which were used for single- and two-QTL mapping analysis. Using a maximum-likelihood approach, three highly significant (LOD ≥ 3), 15 significant (LOD ≥ 2), and 11 suggestive QTL (1.7 ≤ LOD < 2) were detected on eleven chromosomes. Regression analysis confirmed 28 of these QTL and an additional 17 suggestive (P < 0.1) and two significant (P < 0.05) QTL were identified using this method. QTL with pleiotropic effects for two or more tissues were identified on chromosomes 1, 6, 10, 14, 16 and 23. No tissue-specific QTL were identified.A meta-assembly of ovine QTL for carcass traits from this study and public domain sources was performed and compared with a corresponding bovine meta-assembly. The assembly demonstrated QTL with effects on carcass composition in homologous regions on OAR1, 2, 6 and 21.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2949606PMC
http://dx.doi.org/10.1186/1297-9686-42-36DOI Listing

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