QUESTION IMAGE
Question
- complete the punnett squares.
- in pea plants, round seed is a dominant trait while wrinkled seed is a recessive trait. two pea plants with round seeds are crossed. in the next generation pea plants, about 25% have wrinkled seeds, which is a new genetic variation. using r for the dominant round allele and r for the recessive wrinkle allele, draw a punnett square to illustrate how this new genetic variation (wrinkled seeds) is due to a new allele combination, not due to a dna mutation during meiosis.
p1 genotype _______
p2 genotype _______
punnett square
- list the two causes of genetic variation in a population.
Step1: Complete Punnett Square (Q3)
Combine row/column alleles:
Top-left: $A + a = Aa$
Top-right: $A + a = Aa$
Bottom-left: $a + a = aa$
Bottom-right: $a + a = aa$
Step2: Identify parent genotypes (Q4)
Since 25% offspring are wrinkled ($rr$), parents must be heterozygous (carry recessive allele but show dominant trait).
P1 genotype: $Rr$
P2 genotype: $Rr$
Step3: Build Punnett Square (Q4)
Combine row/column alleles for $Rr \times Rr$:
Top-left: $R + R = RR$
Top-right: $R + r = Rr$
Bottom-left: $r + R = Rr$
Bottom-right: $r + r = rr$
Step4: List genetic variation causes (Q5)
Identify two core sources of population genetic variation.
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Question 3 Completed Punnett Square:
| $a$ | $a$ | |
|---|---|---|
| $a$ | $aa$ | $aa$ |
Question 4:
P1 genotype: $Rr$
P2 genotype: $Rr$
Punnett Square:
| $R$ | $r$ | |
|---|---|---|
| $r$ | $Rr$ | $rr$ |
(The 25% wrinkled offspring come from the $rr$ genotype, a new combination of existing parental alleles, not a mutation)
Question 5:
- Recombination (crossing over during meiosis)
- Random fertilization of gametes