A Nonsense Variant in the ST14 Gene in Akhal-Teke Horses with Naked Foal Syndrome

Author:

Bauer Anina123,Hiemesch Theresa14,Jagannathan Vidhya123,Neuditschko Markus35,Bachmann Iris35,Rieder Stefan35,Mikko Sofia6,Penedo M Cecilia7,Tarasova Nadja89,Vitková Martina10,Sirtori Nicolò11,Roccabianca Paola12,Leeb Tosso123,Welle Monika M213

Affiliation:

1. Institute of Genetics, Vetsuisse Faculty, University of Bern, 3001, Switzerland

2. DermFocus, University of Bern, 3001, Switzerland

3. Swiss Competence Center of Animal Breeding and Genetics, Bern University of Applied Sciences HAFL & Agroscope, University of Bern, 3001, Switzerland

4. Institute of Animal Breeding and Genetics, University of Göttingen, 37075, Germany

5. Agroscope, Swiss National Stud Farm, 1580 Avenches, Switzerland

6. Department of Animal Breeding and Genetics, Swedish University of Agricultural Sciences, 75007 Uppsala, Sweden

7. Veterinary Genetics Laboratory, School of Veterinary Medicine, University of California, Davis, California 95616

8. Russian Akhal-Teke Association, 115470 Moscow, Russia

9. International Akhal-Teke Association, 115470 Moscow, Russia

10. Equine Veterinary Practice, 91601 Stará Turá, Slovakia

11. Equine Veterinary Practice, 29010 Agazzano, Italy

12. Department of Veterinary Medicine, University of Milan, 20133, Italy

13. Institute of Animal Pathology, Vetsuisse Faculty, University of Bern, 3001, Switzerland

Abstract

Abstract Naked foal syndrome (NFS) is a genodermatosis in the Akhal-Teke horse breed. We provide the first scientific description of this phenotype. Affected horses have almost no hair and show a mild ichthyosis. So far, all known NFS affected horses died between a few weeks and 3 yr of age. It is not clear whether a specific pathology caused the premature deaths. NFS is inherited as a monogenic autosomal recessive trait. We mapped the disease causing genetic variant to two segments on chromosomes 7 and 27 in the equine genome. Whole genome sequencing of two affected horses, two obligate carriers, and 75 control horses from other breeds revealed a single nonsynonymous genetic variant on the chromosome 7 segment that was perfectly associated with NFS. The affected horses were homozygous for ST14:c.388G>T, a nonsense variant that truncates >80% of the open reading frame of the ST14 gene (p.Glu130*). The variant leads to partial nonsense-mediated decay of the mutant transcript. Genetic variants in the ST14 gene are responsible for autosomal recessive congenital ichthyosis 11 in humans. Thus, the identified equine ST14:c.388G>T variant is an excellent candidate causative variant for NFS, and the affected horses represent a large animal model for a known human genodermatosis. Our findings will enable genetic testing to avoid the nonintentional breeding of NFS-affected foals.

Publisher

Oxford University Press (OUP)

Subject

Genetics(clinical),Genetics,Molecular Biology

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