Could a type A homozygous mom and a type B heterozygóus dau nav Show the Punnett square. урe А JAJA, IAjO using IA for Antigen A Туг Tyr B|B, IB10 using 1B for Antigen B 1910 using 1° for no antigens present A & IB are dominant over 1º member IAA is homozygous A10 is heterozygous 9. If a man is Rh positive homozygous and his wife is Rh negative, how many Rh positive and negative children could they have? Show the Punnet square. Pag https://camdencc.instructure.com/courses/11154/assignments/163003?module_item_id=380851

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I have been stuck for hours on the final 3 genetic problems at the end of this lab. I really need help. I’ve answered the entire blood typing and genetics section but I’m stuck with this. There are 3 questions. The pheno / Geno chart needs to be applied. I have so many variations on my answer but I can’t sit and type them all in to this box. Please help me.
**Transcription for Educational Website**

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**Genetics Problems: Blood Type and Rh Factor Inheritance**

**8. Blood Type Inheritance**
- **Problem:** Could a type A homozygous mom and a type B heterozygous dad have a type O child? Show the Punnett square.
  
**Understanding Blood Type Alleles:**

- **Type A**: 
  - Genotypes: \( I^A I^A \), \( I^A I^0 \)
  - Notes: Uses \( I^A \) for Antigen A

- **Type B**:
  - Genotypes: \( I^B I^B \), \( I^B I^0 \)
  - Notes: Uses \( I^B \) for Antigen B

- **Type O**:
  - Genotype: \( I^0 \)
  - Notes: Uses \( I^0 \) for no antigens present

- **Dominant Traits**:
  - \( I^A \) and \( I^B \) are dominant over \( I^0 \)

- **Key terms**:
  - **Homozygous**: Example - \( I^A I^A \)
  - **Heterozygous**: Example - \( I^A I^0 \)

**9. Rh Factor Inheritance**
- **Problem:** If a man is Rh positive homozygous and his wife is Rh negative, how many Rh positive and negative children could they have? Show the Punnett square.

**Guidance for Filling Out Punnett Squares:**

1. **For problem #8:** Determine the genotypes of the parents and set up a Punnett square to visualize possible offspring blood types. 

2. **For problem #9:** Consider Rh factor alleles, where positive is dominant over negative. Set up a Punnett square to determine the probability of their children inheriting Rh positive or negative traits.

**Reference Link:** [Course Material](https://camdencc.instructure.com/courses/11154/assignments/163003?module_item_id=380851)

---

This transcription serves as an educational guide to understanding genetic inheritance patterns related to blood types and Rh factors.
Transcribed Image Text:**Transcription for Educational Website** --- **Genetics Problems: Blood Type and Rh Factor Inheritance** **8. Blood Type Inheritance** - **Problem:** Could a type A homozygous mom and a type B heterozygous dad have a type O child? Show the Punnett square. **Understanding Blood Type Alleles:** - **Type A**: - Genotypes: \( I^A I^A \), \( I^A I^0 \) - Notes: Uses \( I^A \) for Antigen A - **Type B**: - Genotypes: \( I^B I^B \), \( I^B I^0 \) - Notes: Uses \( I^B \) for Antigen B - **Type O**: - Genotype: \( I^0 \) - Notes: Uses \( I^0 \) for no antigens present - **Dominant Traits**: - \( I^A \) and \( I^B \) are dominant over \( I^0 \) - **Key terms**: - **Homozygous**: Example - \( I^A I^A \) - **Heterozygous**: Example - \( I^A I^0 \) **9. Rh Factor Inheritance** - **Problem:** If a man is Rh positive homozygous and his wife is Rh negative, how many Rh positive and negative children could they have? Show the Punnett square. **Guidance for Filling Out Punnett Squares:** 1. **For problem #8:** Determine the genotypes of the parents and set up a Punnett square to visualize possible offspring blood types. 2. **For problem #9:** Consider Rh factor alleles, where positive is dominant over negative. Set up a Punnett square to determine the probability of their children inheriting Rh positive or negative traits. **Reference Link:** [Course Material](https://camdencc.instructure.com/courses/11154/assignments/163003?module_item_id=380851) --- This transcription serves as an educational guide to understanding genetic inheritance patterns related to blood types and Rh factors.
**Blood Type Genotypes and Rh Factor Analysis**

**Blood Type and Possible Genotypes:**

- **Type A**:  
  Genotypes: \( I^A I^A \), \( I^A I^O \)  
  *Using \( I^A \) for Antigen A*

- **Type B**:  
  Genotypes: \( I^B I^B \), \( I^B I^O \)  
  *Using \( I^B \) for Antigen B*

- **Type AB**:  
  Genotype: \( I^A I^B \)

- **Type O**:  
  Genotype: \( I^O I^O \)  
  *Using \( I^O \) for no antigens present*

*Note: \( I^A \) and \( I^B \) are dominant over \( I^O \).*

- Remember \( I^A I^A \) is homozygous
- \( I^A I^O \) is heterozygous

---

**Rh Factor and Punnett Square Analysis:**

*Problem Statement:*  
What happens if the man is Rh positive heterozygous and the mom is still Rh negative? What do the offspring look like? Show the Punnett square.

*Explanation:*  
To solve this problem, a Punnett square can be used to illustrate the potential genotypes of the offspring. The man, being Rh positive heterozygous, has one Rh positive (R) and one Rh negative (r) allele. The mom, being Rh negative, has two Rh negative alleles (r).

The potential combinations in the Punnett square are:

- R r
- r Rr rr
- r Rr rr

**Outcome:**
- 50% chance of Rh positive offspring (Rr)
- 50% chance of Rh negative offspring (rr)

This analysis helps in understanding the inheritance patterns of the Rh factor in this scenario.
Transcribed Image Text:**Blood Type Genotypes and Rh Factor Analysis** **Blood Type and Possible Genotypes:** - **Type A**: Genotypes: \( I^A I^A \), \( I^A I^O \) *Using \( I^A \) for Antigen A* - **Type B**: Genotypes: \( I^B I^B \), \( I^B I^O \) *Using \( I^B \) for Antigen B* - **Type AB**: Genotype: \( I^A I^B \) - **Type O**: Genotype: \( I^O I^O \) *Using \( I^O \) for no antigens present* *Note: \( I^A \) and \( I^B \) are dominant over \( I^O \).* - Remember \( I^A I^A \) is homozygous - \( I^A I^O \) is heterozygous --- **Rh Factor and Punnett Square Analysis:** *Problem Statement:* What happens if the man is Rh positive heterozygous and the mom is still Rh negative? What do the offspring look like? Show the Punnett square. *Explanation:* To solve this problem, a Punnett square can be used to illustrate the potential genotypes of the offspring. The man, being Rh positive heterozygous, has one Rh positive (R) and one Rh negative (r) allele. The mom, being Rh negative, has two Rh negative alleles (r). The potential combinations in the Punnett square are: - R r - r Rr rr - r Rr rr **Outcome:** - 50% chance of Rh positive offspring (Rr) - 50% chance of Rh negative offspring (rr) This analysis helps in understanding the inheritance patterns of the Rh factor in this scenario.
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