Single Loci and Haplotypes in CAPN1 and CAST Genes are Associated with Growth, Biometrics, and in Vivo Carcass Traits in Santa Inês Sheep

Author:

Machado Alessandro Lima1,Meira Ariana Nascimento1,Muniz Evandro Neves2,Azevedo Hymerson Costa2,Coutinho Luiz Lehmann3,Mourão Gerson Barreto3,Pedrosa Victor Breno4,Pinto Luís Fernando Batista1

Affiliation:

1. Federal University of Bahia – 500 , Av. Adhemar de Barros, Salvador , BA, 40170110, Brazil

2. Brazilian Agricultural Research Corporation – Embrapa Coastal Tablelands – 3250 , Av. Beira Mar, Aracaju – SE, 49025040, Brazil

3. University of São Paulo – 11 , Av. Pádua Dias, Piracicaba – SP, 13635900, Brazil

4. State University of Ponta Grossa – 4748 , Av. General Carlos Cavalcanti, Ponta Grossa – PR, 84030900, Brazil

Abstract

Abstract µ-calpain (CAPN1) and calpastatin (CAST) genes play key roles in protein turnover. The present study aimed to identify the variants in these genes associated with growth and ultrasound carcass traits in Santa Inês sheep. A sample of 192 no full sibling Santa Inês lambs was used. Fragments of the CAST and CAPN1 genes were amplified and next-generation sequencing was performed in the MiSeq platform. Variants in the CAPN1 and CAST sequences were then detected using bioinformatic tools. Withers and croup heights, body length, thoracic and croup widths, thoracic and leg girths, body depth, carcass fat score, rib eye area, fat thickness, body weights were recorded at weaning and at 140 days post-weaning, and average daily gain post-weaning was calculated. Both single-locus and haplotype association analyses were performed with the model as follows: farm (2 levels), year (4 levels), the month of birth (12 levels), and the covariate age of the animal. The fragments amplified included 4,514 bp between the 20th and 23rd exons of CAST as well as 3,927 bp between the 12th and 21st exons of CAPN1. In these regions, 58 (CAST) and 45 (CAPN1) variants were identified. In the CAST gene, the single-locus analysis revealed 22 suggestive additive effects (P<0.05) on several growth and carcass traits. Moreover, haplotype substitutions were associated with rib eye area (–0.689±0.290), average daily gain (–23.6±10.4), thoracic girth (–2.72±1.27), body length (–3.38±1.49), and leg girth (–2.84±1.37). Regarding the CAPN1 gene, the single-locus analysis identified seven suggestive additive effects, while only one haplotype replacement effect on fat thickness (–0.0143±0.0053) was detected. The results of the present study suggest that variants in the CAPN1 and CAST genes are associated with growth and ultrasound carcass traits in Santa Inês sheep, which may be a source of information to improve knowledge regarding the genetic control of these traits.

Publisher

Walter de Gruyter GmbH

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