Reinartz Sina, Weiß Christine, Heppelmann Maike, Hewicker-Trautwein Marion, Hellige Maren, Willen Laure, Feige Karsten, Schneider Pascal, Distl Ottmar
Institute for Animal Breeding and Genetics, University of Veterinary Medicine, 30559 Hannover, Germany.
Clinic for Swine, Ludwig-Maximilians-Universität München, 80539 Munich, Germany.
Genes (Basel). 2023 Dec 20;15(1):8. doi: 10.3390/genes15010008.
Mutations within the gene have been associated with congenital hypotrichosis and anodontia (HAD/XHED) in humans, mice, dogs and cattle. We identified a three-generation family of Fleckvieh cattle with male calves exhibiting clinical and histopathological signs consistent with an X-linked recessive HAD (XHED). Whole genome and Sanger sequencing of cDNA showed a perfect association of the missense mutation g.85716041G>A (ss2019497443, rs1114816375) within the gene with all three cases following an X-linked recessive inheritance, but normal and . This mutation causes an exchange of glycine (G) with arginine (R) at amino acid position 227 (p.227G>R) in the second collagen triple helix repeat domain of EDA. The variant was associated with a significant reduction and underdevelopment of hair follicles along with a reduced outgrowth of hairs, a complete loss of seromucous nasolabial and mucous tracheal and bronchial glands and a malformation of and reduction in number of teeth. Thermostability of EDA G227R was reduced, consistent with a relatively mild hair and tooth phenotype. However, incisors and canines were more severely affected in one of the calves, which correlated with the presence of a homozygous missense mutation of (g.51306765T>G), a putative candidate gene possibly associated with tooth number in -deficient Fleckvieh calves.
Genes (Basel). 2024-6-28
Genes (Basel). 2024-6-28
J Dent Res. 2016-10-11
Ann Genet Sel Anim. 1975