My wife and I just did omegaverse genealogy
I know that genealogy is quite a bit more complicated than my general knowledge, but my wife was in biomed and biology classes in college for a bit, so she helped. We came up with the following: Sex chromosomes work as normal. There is another set of chromosomes determining secondary sex characteristics. (Omegaverse.) Beta is the most common/dominant gene. If you have a beta gene, you are a beta. Some betas carry the alpha or the omega gene.
The alpha gene is more dominant than the omega gene, as omegas tend to be more rare.
If you have both, you are a traditional alpha. However, if you present with two O alleles, you are an omega. If you present with two A alleles, then you are a "true alpha". (Often referred to as an enigma.)
Two betas with the correct recessive genes can produce an alpha or an omega. An alpha and an omega will produce half alphas, half omegas. A true alpha and an omega will produce all traditional alphas.
If mated with an omega, a true alpha cannot be the sire to an omega or another true alpha. They may, however, be the grandsire to a true alpha or an omega.
(In the stories involving "bitching", a true alpha is the one who can turn a traditional alpha into an omega.) Visual below by my lovely wife ever.
Translation: (Provided by my wife. Sometimes cursive scares me.)
**Alpha, Beta, and Omega are represented in the drawing as their Greek symbols. For our purposes, Alpha will be A, Beta will be B, and Omega will be O.
Alpha: AA or AO
Omega: OO
Beta: BA or BO or BB
Beta is the most dominant gene, Alpha the second most. Omegas only show traits if they have both (extremely) recessive genes.
Example squares:
**I don't know how to represent Punnett squares with text, so I will just transcribe the probabilities.
Beta (BA) and Beta (BO): 75% Beta, 25% traditional Alpha.
Beta (BO) and Beta (BO): 75% Beta, 25% omega.
Alpha (AO) and Omega (OO): 50% Alpha, 50% Omega (normal sexual distribution)
True Alpha (AA) and Omega (OO): 100% Alpha (all AO)
















