This pairing gives you 50% English White and 50% Tuxedo-type Pharaoh.
| Chick looks like | Carries, but does not show | Egg shell (hens) | Share of hatch |
|---|---|---|---|
| English White | — | Normal | 50% |
| Tuxedo-type Pharaoh | — | Normal | 50% |
White spotting
| w | w+ | |
|---|---|---|
| w | w/w | w/w+ |
| w | w/w | w/w+ |
White spotting: Dose-dependent, not cleanly recessive. Two copies give the mostly-white English White; ONE copy shows as partial white — the tuxedo bibs and patches — and how much white you get varies from bird to bird. Perfect symmetrical bibs are the exception, not the rule.
Two doses of white spotting. White × white breeds white reliably; crossed to anything else it hands every chick a single dose, which is where tuxedo-patterned birds come from.
Built on recessive white spotting: two copies produce the mostly-white bird. Because the gene masks whatever color lies beneath, English White × colored crosses can throw surprises in later generations as hidden colors resurface. White × white breeds white reliably.
Full English White guide →A single dose of white spotting. This is why Tuxedo × Tuxedo "throws a range — some crisp tuxedos, some mostly-white, some mostly-dark": that range is the ordinary 1:2:1 of one gene at half dose. HOW MUCH white a single dose puts on a bird varies a great deal, so treat the pattern as a probability and the symmetry as luck.
Tuxedo comes from the white-spotting family in an intermediate dose — commonly from pairing dark-based birds carrying spotting (breeding English-White-type spotting into E-family bases). Tuxedo × Tuxedo throws a range: some crisp tuxedos, some mostly-white, some mostly-dark. Perfect symmetrical bibs are the exception, not the rule.
Full Tuxedo guide →Need a trait that is not a named variety? Use the full genetics calculator to set alleles directly for recessive, dominant, incomplete-dominant and sex-linked traits.
Quail Keeper Max stores every bird's variety and celadon status, builds 4-generation pedigrees, and predicts the hatch from your actual pairings — so the invisible carriers in your covey stop being invisible.
See Breeding & Genetics →