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Walling, G. A.

Publications and source records attributed to Walling, G. A..

2 recordsLinked to original sources

Balancing selection at a premature stop mutation in the myostatin gene underlies a recessive leg weakness syndrome in pigs

Balancing selection provides a plausible explanation for the maintenance of deleterious alleles at moderate frequency in livestock, including lethal recessives exhibiting heterozygous advantage in carriers. In the current study, a leg weakness syndrome causing mortality of piglets in a commercial line showed monogenic recessive inheritance, and a region on chromosome 15 associated with the syndrome was identified by homozygosity mapping. Whole genome resequencing of cases and controls identified a mutation coding for a premature stop codon within exon 3 of the porcine Myostatin (MSTN) gene, similar to those causing a double-muscling phenotype observed in several mammalian species. The MSTN mutation was in Hardy-Weinberg equilibrium in the population at birth, but significantly distorted amongst animals still in the herd at 110 kg, due to an absence of homozygous mutant genotypes. In heterozygous form, the MSTN mutation was associated with a major increase in muscle depth and decrease in fat depth, suggesting that the deleterious allele was maintained at moderate frequency due to heterozygous advantage. Knockout of the porcine MSTN by gene editing has previously been linked to problems of low piglet survival and lameness. This MSTN mutation is an example of putative balancing selection in livestock, providing a plausible explanation for the lack of disrupting MSTN mutations in pigs despite many generations of selection for lean growth.

genetics

Sperm morphology differences associated with pig fertility

Artificial insemination (AI) is commonplace in commercial pig breeding, and as such, ensuring sperm sample quality is of utmost importance to avoid reduced farrowing rates and litter sizes. Here, we have used high-throughput nuclear morphometric analysis to compare pig sperm samples categorised as meeting the AI standard (AIS) or not meeting the AI standard (N-AIS). We find that pig sperm nuclei are asymmetric, and that samples contain phenotypic shape abnormalities that show continuous variation. Samples classed as N-AIS have more abnormally shaped sperm than AIS samples, but conventional analysis misses many. The specific phenotypes identified suggest aspects of spermiogenesis that may be disrupted and indicate future avenues for improving pig sperm quality. This method reveals a significant difference in sperm head morphology between AIS and N-AIS pig sperm samples and has the potential to be further developed as a high-throughput tool for sperm head morphology assessment both in the pig breeding industry and in other species.

zoology