Search Phenotypes

Cataract, recessive, CPAMD8-related — Morgagnian cataract

Hollmann et al. (2017): "Whole genome re-sequencing of one case and four relatives showed a nonsense mutation (g.5995966C>T) in the PZP-like, alpha-2-macroglobulin domain containing 8 (CPAMD8) gene leading to a premature stop codon (CPAMD8 p.Gln74*)".

OMIA ID: 2111Inheritance: Hollmann et al. (2017): "an autosomal recessive inheritance of the cataract p...Characterised: YesYear: 2017

Caudal and thoracic vertebral and viscerocranial malformation, SLC40A1-related

Jacinto et al. (2025): "A Holstein heifer ... was clinically diagnosed with scoliosis of the caudal vertebra (“crooked tail”), thoracic scoliosis, and skull dysplasia. The [whole genome sequencing based] trio-approach identified a heterozygous missense variant in exon 5 of SLC40A1, affecting the ferroportin-1 domain of SLC40A1 (Chr2:g.6785954 T > A; c.323 T > A; p.Ile108Asn) [omia.variant:1839]. The pathogenic variant most likely arose p...

OMIA ID: 3020Inheritance: 3Characterised: YesYear: 2025

Cerebellar abiotrophy, CACNA2D2-related

Jacinto et al. (2026): "Genetic analysis [of two affected Angus calvse] identified a private homozygous missense variant [omia.variant:1852] in the bovine CACNA2D2 gene (XP_024839037.1:p.(Cys395Arg)), which is linked to neurological disorders in other species, including a form of cerebellar atrophy in humans."

OMIA ID: 3025Inheritance: 5Characterised: YesYear: 2026

Charcot Marie Tooth disease, FGD4-related

Reynolds et al. (2021) report a FGD4 c.1671+1G>A splice donor mutation in New Zealand dairy cattle as likely causal variant for the the bodyweight QTL and Charcot Marie Tooth disease.

OMIA ID: 2374Inheritance: 5Characterised: YesYear: 2021

Chediak-Higashi syndrome

By cloning and sequencing a very likely comparative candidate gene (based on the homologous human disorder), Kunieda et al. (1999) identified a missense mutation (A to G) in the bovine LYST gene, producing an amino-acid substitution of histidine to arginine (H2015R) in the resultant peptide.

OMIA ID: 185Inheritance: 5Characterised: YesYear: 1999

Chondrodysplasia, EVC2-related — bovine chondrodysplastic dwarfism, bcd

Also known as Ellis-van Creveld Syndrome

OMIA ID: 2540Inheritance: 1Characterised: YesYear: 2002

Chondrodysplasia, FGFR3-related

Whole-genome sequencing of an affected calf and both its parents, followed by filtering of variants, enabled Häfliger et al. (2020) to identify a stop-lost mutation in FGFR3 as the likely causal variant, namely g.116,767,863C>A; NM_174318.3: c.2408G>T; [XM_024992994.1: p.(Ter803Leuext*93), which is "predicted to extend the sequence at the C‐terminal end with 93 additional amino acids". This variant resulted from a de novo mutation in the...

OMIA ID: 1703Inheritance: Häfliger et al. (2020): "Considering that approximately 25% of offspring were...Characterised: YesYear: 2020

Citrullinaemia

To date, all cases of this lethal disorder in cattle appear to be due to the same mutation, namely a nonsense mutation in the 5th of 9 exons of the ASS gene. Normal bovine ASS is a peptide containing 412 amino acids; the mutation occurs in the 86th codon.

OMIA ID: 194Inheritance: 5Characterised: YesYear: 1989

classical Ehlers-Danlos syndrome (cEDS), COL5A2-related — classical Ehlers-Danlos syndrome (cEDS), COL5A2-related; Ehlers-Danlos syndrome, classi...

This phene has been renamed from "Ehlers-Danlos syndrome, classic type, 2" to "classical Ehlers-Danlos syndrome (cEDS), COL5A2-related" in OMIA on the basis of the review on human Ehlers-Danlos syndromes by Malfait et al. (2020) [2/6/2022].

OMIA ID: 2295Inheritance: 3Characterised: YesYear: 2020

Cleft palate, syndromic, WDR33-related — syndromic cleft palate with pentalogy of Fallot and internal hydrocephalus

Bolcato et al. (2025): Genetic analysis identified a missense variant in WDR33 (omia.variant:1814) that was heterozygous in both analyzed cases [Belgian Blue cross calves] and in an estimated 40% of the paternal gametes of the mosaic [Belgian Blue] founder, but absent in both dams and controls. ... The genetic findings were most consistent with a likely pathogenic dominant de novo mutation in WDR33 as the underlying cause of the observed conge...

OMIA ID: 2970Inheritance: 9Characterised: YesYear: 2025

Coat colour, albinism, oculocutaneous type IV — In Dexter cattle: dark dun / chocolate (CD) or light dun / cream (CL)

Rothammer et al. (2017): "comparisons of the sequence of [the candidate] haplotype [see Genetic mapping section] with sequence data from four Braunvieh sires and the Aurochs genome identified two possible candidate causal mutations at positions 39,829,806 bp (G/A; R45Q) [omia.variant:847] and 39,864,148 bp (C/T; T444I) [omia.variant:848] that were absent in 1682 animals from various bovine breeds included in the 1000 bull genomes project. Both...

OMIA ID: 1821Inheritance: 5Characterised: YesYear: 2017

Coat colour, brown, TYRP1-related — Dun coat colour in Dexter cattle

Armed with the knowledge that TYRP1 in Dexter cattle is a strong positional candidate gene for the dun phenotype (see Mapping section above), Berryere et al. (2003) showed that dun brown coat colour in Dexter cattle is due to homozygosity for a H434Y amino acid substitution in TYRP1, due to "a C to T change in nucleotide 1300 within exon 7" of the TYRP1 gene. [FN 10 Sep 2005; 21 Sep 2012]. See also OMIA:001821-9913 : Coat colour, albinism, ocu...

OMIA ID: 1249Inheritance: 5Characterised: YesYear: 2003

Coat colour, dilution, FZD7-related — milca coat colour

Floriot et al. (2021) "A total of 106 affected animals were reported to the French National Observatory for Bovine Abnormalities (ONAB, https://www.onab.fr/, Grohs et al. 2016). The first case reported to the ONAB was a cow born in 2008. At birth, the affected animals, which are otherwise healthy, present a dilution of the pigmented, normally red, areas of the coat .... To search for the causative genetic factors responsible for this genetic co...

OMIA ID: 2318Inheritance: 5Characterised: YesYear: 2021

Coat colour, dilution, MLPH-related — Cool gray; Larson Blue

In a reversal of the normal sequence of discovery, Li et al. (2016) discovered this phenotype AFTER identifying the causal mutation, by noticing that all Belgian Blue cattle with a particular mutation (MLPH: c.87_96del; p.Glu32Aspfs*1), which inactivates MLPH, have an expected dilution phenotype which the authors called "cool gray".

OMIA ID: 31Inheritance: 5Characterised: YesYear: 2015

Coat colour, dilution, PMEL-related

Gutiérrez-Gil et al. (2007): c.64G>A Jolly et al. (2008): c.50_52delTTC Laible et al. (2021): "To better adapt dairy cattle to rapidly warming climates, we aimed to lighten their coat color by genome editing. ... Using gRNA/Cas9-mediated editing, we introduced a three bp deletion in the pre-melanosomal protein 17 gene (PMEL) proposed as causative variant for the semi-dominant color dilution phenotype observed in Galloway and Highland cattl...

OMIA ID: 1545Inheritance: 5Characterised: YesYear: 2007