Laboratory 11: Mendelian Genetics
Objectives
After completing this lab, you should be able to:
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Discuss the differences between traits, genes, and alleles.
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Distinguish between homozygous and heterozygous conditions.
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Construct and interpret a Punnett square.
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Perform monohybrid and dihybrid crosses.
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Understand and perform linked, sex-linked, and multiple allelic crosses.
Key Terms
| Term | Definition |
|---|---|
| Allele | Different forms of a gene that determine variations in a trait. |
| Dihybrid | Cross involving two genes, each with two alleles. |
| Dominant | Allele that masks the expression of another allele. |
| Gene | Segment of DNA that codes for a specific trait. |
| Genotype | Genetic composition of an organism (e.g., Bb). |
| Heterozygote | Organism with two different alleles for a trait (e.g., Bb). |
| Homozygote | Organism with two identical alleles for a trait (e.g., BB or bb). |
| Linked Genes | Genes located close together on the same chromosome that tend to be inherited together. |
| Monohybrid | Cross involving one gene with two alleles. |
| Phenotype | Observable physical or physiological traits. |
| Punnett Square | Diagram used to predict genetic outcomes of a cross. |
| Recessive | Allele that is masked in the presence of a dominant allele. |
| Sex-linkage | Inheritance pattern involving genes on the X or Y chromosome. |
| Testcross | Cross between an organism with an unknown genotype and one that is homozygous recessive. |
| Trait | Observable characteristic determined by genes. |
Introduction
Genetics is the study of how traits are inherited through genes. Each trait is determined by one or more genes, which can exist in alternative forms called alleles.
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Dominant alleles mask the expression of recessive alleles.
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Recessive alleles are only expressed when an organism is homozygous for that allele.
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The genotype represents the genetic makeup, while the phenotype is the physical expression of that genotype.
For example:
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BB = brown eyes (homozygous dominant)
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Bb = brown eyes (heterozygous)
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bb = blue eyes (homozygous recessive)
To predict genetic outcomes, biologists use a Punnett square, which models how alleles from parents combine in offspring.
Traits and Alleles
When geneticists write about traits:
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Capital letters represent dominant alleles (e.g., F for freckles).
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Lowercase letters represent recessive alleles (e.g., f for no freckles).
Each person has two alleles for each trait—one from each parent.
Pre-Lab Activity
Before attending lab, collect phenotypic data from yourself and two blood relatives (parents or siblings). Record this data in Table 1. You will use these traits in lab to determine genotypes and complete genetic analyses.
Table 1. Phenotypes and Genotypes for Student and Family Members
| Trait | Your Phenotype | Your Genotype | Relative 1 Phenotype | Relative 1 Genotype | Relative 2 Phenotype | Relative 2 Genotype |
|---|---|---|---|---|---|---|
| Tongue Roller | ||||||
| Crooked Pinky | ||||||
| Hitchhiker’s Thumb | ||||||
| Widow’s Peak | ||||||
| Dimples | ||||||
| Interlocking Fingers | ||||||
| Blood Type (A, B, AB, O) | ||||||
| Colorblindness (Red–Green) |
Determining Genotypes
Use the phenotypes from Table 1 to deduce possible genotypes.
Remember:
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Recessive phenotypes always mean homozygous recessive (e.g., rr).
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Dominant phenotypes could be homozygous dominant (RR) or heterozygous (Rr).
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If only one parent shows the recessive trait, their child’s genotype can often be inferred.
Laboratory Activity
You will use Punnett squares to predict expected genotypic and phenotypic ratios, then compare these to observed ratios using corn kernels as a model for inheritance.
Monohybrid Cross
P generation cross:
PP (purple) × pp (yellow)
Gametes produced:
PP → P pp → p
F₁ Generation:
All offspring = Pp (purple)
F₁ generation cross:
Pp × Pp
Gametes produced:
P → p → P → p →
Punnett Square:
Predict and record expected offspring genotypes.
Table 2. Expected and Observed Results for F₂ Generation (Monohybrid Cross: Purple × Yellow Corn)
| Phenotype | Expected Ratio* | Expected Numbers | Observed Ratio (Single Row) | Observed Numbers (Single Row) | Observed Ratio (Whole Ear) | Observed Numbers (Whole Ear) |
|---|---|---|---|---|---|---|
| Purple | ||||||
| Yellow |
*The expected ratio is derived from your Punnett square.
**Expected numbers are based on total kernels counted ÷ 4, multiplied by the appropriate ratio (e.g., 3:1).
Question:
Which count was closer to the expected values—row or ear? ___________________________
Dihybrid Cross
P generation cross:
PPSS (purple, starchy) × ppss (yellow, sweet)
Gametes produced:
PPSS → PS ppss → ps
F₁ Generation:
All offspring = PpSs (purple, starchy)
F₁ generation cross:
PpSs × PpSs
Gametes produced:
PS Ps pS ps
Punnett Square:
Complete and use it to predict expected genotypic and phenotypic ratios.
Table 3. Expected and Observed Results for F₂ Generation (Dihybrid Cross: Purple/Starchy × Yellow/Sweet Corn)
| Phenotype | Expected Ratio* | Expected Numbers | Observed Ratio (Single Row) | Observed Numbers (Single Row) | Observed Ratio (Whole Ear) | Observed Numbers (Whole Ear) |
|---|---|---|---|---|---|---|
| Purple/Starchy | ||||||
| Purple/Sweet | ||||||
| Yellow/Starchy | ||||||
| Yellow/Sweet |
Question:
Which count was closer to the expected values—row or ear? ___________________________
Genetics Practice Problems
Answer the following on your exercise sheet or in your digital submission.
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Write the gametes formed from each genotype:
a. AA b. Aa c. AAbb d. AABb e. AaBb -
Complete Punnett squares and provide expected genotypic and phenotypic ratios:
a. WW × ww
b. Dd × Dd
c. Hh × hh -
Guinea Pig Fur Color:
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Black (B) is dominant over white (b).
Determine phenotypic and genotypic ratios for F₁ generation in:
a. Homozygous dominant × heterozygous
b. Homozygous recessive × heterozygous
c. Homozygous dominant × homozygous recessive
d. Heterozygous × heterozygous
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White Forelock (Humans):
The white forelock trait is dominant.-
A woman with a white forelock (whose father did not have one) marries a man without one.
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What is the probability that their child will have a white forelock?
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Cheek Dimples (D) and Cleft Chin (C):
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Cross: DDCC × ddcc
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Determine F₂ genotypic and phenotypic ratios.
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Complex Crosses:
Using Table 1 traits, determine expected genotypic and phenotypic ratios for:
a. RRtt × rrTT
b. RrTT × rrTt
c. RrTt × RrTt