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Zorluk: ZorMendel's Second Law and Dihybrid Inheritance

In fruit flies (*Drosophila melanogaster*), grey body color (BB) is dominant over black body color (bb), and normal wing length (VV) is dominant over vestigial wings (vv). If two heterozygous grey-bodied, normal-winged flies (BbVvBbVv) are crossed and produce a total of 320 offspring, how many of these offspring are expected to exhibit a black body with normal wings?

  1. 60Cevap
  2. B
    180
  3. C
    20
  4. D
    240

Cevap

60 offspring are expected to have a black body with normal wings.
In a dihybrid cross of two heterozygous individuals (BbVv×BbVvBbVv \times BbVv), the independent assortment of alleles yields an F2 phenotypic ratio of 9:3:3:19 : 3 : 3 : 1. The proportion of offspring displaying the recessive trait for the first gene (black body, bbbb) and the dominant trait for the second gene (normal wings, V_V\_) is 316\frac{3}{16}. Multiplying 316\frac{3}{16} by the total offspring count of 320320 gives exactly 6060.

Adım Adım Çözüm

1
Determine parental genotypes and set up the dihybrid cross.
Parental cross is BbVv×BbVvBbVv \times BbVv, where both parents are heterozygous for both traits.
Mendel's Second Law states that alleles of different genes assort independently during gamete formation.
2
Identify the expected phenotypic ratio for the offspring.
The phenotypic ratio for a dihybrid cross between two double heterozygotes (BbVv×BbVvBbVv \times BbVv) is 9:3:3:19 : 3 : 3 : 1.
- Grey body, normal wings (B_V_B\_V\_) = 916\frac{9}{16}
- Grey body, vestigial wings (B_vvB\_vv) = 316\frac{3}{16}
- Black body, normal wings (bbV_bbV\_) = 316\frac{3}{16}
- Black body, vestigial wings (bbvvbbvv) = 116\frac{1}{16}
The probability of recessive body color (bb=14bb = \frac{1}{4}) combined with dominant wing length (V_=34V\_ = \frac{3}{4}) is calculated as 14×34=316\frac{1}{4} \times \frac{3}{4} = \frac{3}{16}.
3
Calculate the expected number of offspring with black body and normal wings.
316×320=60\frac{3}{16} \times 320 = 60.
Multiplying the expected phenotypic fraction by the total offspring count yields the specific expected count.

Anahtar Kavram

Mendel's Law of Independent Assortment and Dihybrid Phenotypic Ratios
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