Sire Smoky Black on dam Smoky Cream
In this article, we will explore the genetic possibilities of coat colors for the crossing between a stallion Smoky Black and a mare Smoky Cream. Equine genetics is a universe of combinations where dominant and recessive alleles determine the final coat of each individual.
On one side, we have the stallion Smoky Black. Genetically, it presents the base genotype E/_ a/a Cr/n. Slightly faded black coat caused by a single copy of the cream gene over the black base.
On the other side, the mare Smoky Cream contributes with its genetics based on E/_ a/a Cr/Cr. Very pale coat with yellowish highlights, resulting from double dilution of the cream gene over the black base.
Quando combinamos esses códigos genéticos, criamos uma matriz de probabilidades. É importante lembrar que o resultado visual (fenótipo) muitas vezes esconde genes recessivos que podem pular uma geração.
The Genotypes Involved
For a horse to have the coat Smoky Black. it carries specific gene combinations. The possible genotypes for the sire include variants such as: E/e a/a Cr/n, E/E a/a Cr/n.
As for the dam, being Smoky Cream, may present in its DNA the alleles: E/e a/a Cr/Cr, E/E a/a Cr/Cr.
Understanding the Alleles
To understand the result of this crossing, note the gene sets at play:
- E/ (Extension - Dominant): The Extension gene controls eumelanin (black) production. At least one E allele allows the horse to have black hairs.
- a/a (Non-Agouti - Recessive): Allows black pigment to spread uniformly across the body. Essential for Solid Black (if E/).
- Cr/n (Heterozygous Cream): One copy of the dilution allele. Lightens red pigment to gold (e.g. Palomino, Buckskin).
- Cr/Cr (Double Cream): Maximum dilution. Pink skin, blue eyes (e.g. Cremello, Perlino).
Calculated Probabilities
Being the sire Smoky Black with genotype (E/e a/a Cr/n), it transmits the (E) allele (black factor) to 50% and the (e) allele (red factor) to the other 50% and transmits the (a) allele to 100% of offspring, allowing black to spread in homozygosis (if Extension is present) and has a 50% chance of transmitting the Cream dilution allele (Cr).
Being the sire Smoky Black with genotype (E/E a/a Cr/n), it transmits the (E) allele to 100% of offspring, enabling black pigment production (eumelanin) and transmits the (a) allele to 100% of offspring, allowing black to spread in homozygosis (if Extension is present) and has a 50% chance of transmitting the Cream dilution allele (Cr).
Being the dam Smoky Cream with genotype (E/e a/a Cr/Cr), it transmits the (E) allele (black factor) to 50% and the (e) allele (red factor) to the other 50% and transmits the (a) allele to 100% of offspring, allowing black to spread in homozygosis (if Extension is present) and always transmits the Cream dilution allele (Cr).
Being the dam Smoky Cream with genotype (E/E a/a Cr/Cr), it transmits the (E) allele to 100% of offspring, enabling black pigment production (eumelanin) and transmits the (a) allele to 100% of offspring, allowing black to spread in homozygosis (if Extension is present) and always transmits the Cream dilution allele (Cr).
Based on a standard scenario, the statistical chances for foals from this crossing are:
Smoky CreamOpen Coat ➜ 43,9%
Smoky BlackOpen Coat ➜ 43,9%
CremelloOpen Coat ➜ 6,1%
PalominoOpen Coat ➜ 6,1%
Want absolute precision?
Genetics is detailed. Knowing whether the animal is Homozygous or Heterozygous completely changes the result. You can run 100% precise simulations by filtering according to the exact genotype of your animal in our App.
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