AI portrait
This portrait was algorithmically built from this dog's genome: their genotype at 8 morphology loci (coat length, curl, color, ear set, body size, head shape, skull, furnishings) plus their position within the 14,478-dog atlas. The same dog always reproduces the same portrait. A different dog with different alleles gets a different portrait.
PFZ33A05_PFZ33A05
PFZ33A05_PFZ33A05 is a Jack Russell Terrier from the Hayward2016 research cohort. One of 14,478 dogs who built the atlas.
See PFZ33A05_PFZ33A05 in the atlasPFZ33A05_PFZ33A05 sits near the center of the Jack Russell Terrier cluster - genetically very typical for the breed.
- Predicted small by the six body-size genes the atlas reads (IGF1, HMGA2, SMAD2, LCORL, STC2, ADAMTS17).
- Standard leg length. No chondrodysplasia retrogene variant.
- Carrier of the RSPO2 wire-coat variant (single copy).
The five dogs in the atlas whose genomes sit closest to PFZ33A05_PFZ33A05's. Click any of them to keep exploring.
PFZ33A05_PFZ33A05 sits in the Jack Russell Terrier cluster, with genome overlap to Golden Retriever - sister breeds nearby in the atlas.
Breed similarity from non-negative least squares against 91 breed centroids in PCA-256 space, corrected for atlas sample-size imbalance. Without correction, Goldens (22% of the atlas) leak into every dog's raw NNLS breakdown; with it, the bias falls out. Raw fractions stay in the dataset for re-derivation. Methodology.
From the CanVAS (Hayward2016 cohort) . Breed-page reference: Jack Russell Terrier.
Full genotype detail click to expand
The actual allele call at each locus's representative SNP for this dog. Each gene name links to its page where you can see the per-breed frequency table and the direction of effect.
Technical details click to expand
The numbers behind the placement. Useful for researchers reproducing the math or debugging an unexpected position; not interesting to most readers.
y 0.745
z 3.700
The 3 PCs on which PFZ33A05_PFZ33A05 scores most extreme, with the 3 highest-loading SNPs on each. Foundation for the future genome-ring visualization.
- chr28:2,486,426 loading 0.0331
- chr15:29,010,464 loading -0.0324
- chr27:17,119,793 loading -0.0316
- chr22:15,601,204 loading 0.0364
- chr22:2,850,748 loading 0.0330
- chr22:15,670,985 loading -0.0317
- chr22:1,996,400 loading 0.0833
- chr22:2,231,766 loading 0.0832
- chr22:2,271,992 loading 0.0828