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Do Now. Identify the heterozygous and homozygous alleles from below. Aa BB Bb Tt tt Kk Ll GG Oo ZZ. Announcements. GU plays tonight at 11 pm on ESPNU Homework tonight Quiz on Friday Progress Reports on Monday. Agenda. Bean Genes Lab Punnett Squares. Bean Gene Lab. - PowerPoint PPT PresentationTRANSCRIPT
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Do Now
1.Identify the heterozygous and homozygous alleles from below.
1.Aa BB Bb Tt tt Kk Ll GG Oo ZZ
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GU plays tonight at 11 pm on ESPNU
Homework tonightQuiz on FridayProgress Reports on Monday
Announcements
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Bean Genes LabPunnett Squares
Agenda
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Please be careful not to make a mess!
Bean Gene Lab
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Please be careful not to make a mess!
Punnett Squares
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Punnett Square
Why?Way of predicting the likelihood (probability) of offspring carrying certain genetic traits!
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What do we need to know?
1. Genotype of parents
2. Which allele is dominant
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Purebred = Homozygous
Purebred: Both alleles are for the same trait
Example:FF
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Hybrid = Heterozygous
Hybrid = The alleles are mixed; they are for different traits
Example:Ff
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Quick Check: Homozygous = stand up, Heterozygous = sit down
BB Homozygous
Bb Heterozygous
bb Homozygous
bB Heterozygous
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Remember, capital letters are dominant!
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Let’s try another Punnett Square!
Hair Color in HumansB = brown = dominantb = blonde = recessive
Let’s say Kevin Federline and Britney Spears are having a baby…
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KFed is heterozygous for brown hair, so….
His genotype is
Bb B
b
And Britney is homogenous for blonde hair, so….
Her genotype is
bb
b b
Bb Bb
bb bb
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B
b
b b
Bb Bb
bb bb
Genotype Ratio Percentage Phenotype Ratio Percentage
Bb 2/4
2/4 50%50%
Brown Hair
2/450%
bb Blonde Hair
2/4
50%
The likelihood that an offspring will have Brown Hair is ______________ .
The probability that an offspring will have Blonde Hair is ____________ .
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***Important***
Probability is the likelihood something will happen, or the chance that something will happen.
If there is a 25% chance that your kids will have blue eyes, it does not mean that if you have 4 kids one of them is definitely going to have blue eyes!
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Widow’s Peak
A recessive gene
W = Normal Hairline
w = Widow’s Peak
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Let’s say you have two parents who are heterozygous for the gene
1. What are the chances that their offspring will have a widow’s peak?
2. What are the chances that their offspring will not have a widow’s peak but will carry an allele for a widow’s peak?
3. What are the chances that their offspring will not have a widow’s peak and will not carry a gene for a widow’s peak?
What are their genotypes?
Ww and Ww
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Let’s see what happens if the parents have the following genotypes: Ww and ww
1. What are the chances that their offspring will have a widow’s peak?
2. What are the chances that their offspring will not have a widow’s peak but will carry an allele for a widow’s peak?
3. What are the chances that their offspring will not have a widow’s peak and will not carry a gene for a widow’s peak?