Alleles in a Population
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Alleles in a Population
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Magic Punnett Squares!!!
ALLELES:
MM - homozygous dominant ---> codes for the normal (muggle) gene
Mm - heterozygous ---> codes for carrier of the magic gene (not expressed)
mm - homozygous recessive ---> codes for the magic gene
This is the Punnett square for a muggle couple that are carriers of the magic gene:
The genotypes are homozygous dominant, heterozygous, and homozygous recessive. The genotypic ratio is 1:2:1
The phenotypes expressed are one muggle child that ISN’T a carrier, two muggle children that ARE carriers, and one magical child. The phenotypic ratio is 3:1
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New video out! Explore the Hardy-Weinberg Equilibrium equations! Learn why this equation can be useful, its five assumptions, and how to calculate genotype and allele frequencies with p and q values. This video does assume the viewer already knows vocabulary such as genotype, phenotype, and alleles from our previous videos.
Even if the antibodies are negative, allele testing can still be done (alleles to look for: HLA DQ2 and DQ8). If that result is negative, it’s probably not Celiac Disease. If the result is positive, the patient will then be given a gluten challenge to see if antibodies appear. The gold standard is the gluten challenge. Erin commented that there's a lot of research showing that IgG might be tagging proteins it has seen, which might be indicating tolerance, not intolerance.
alleles cover || 2020