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Zorluk: ZorMendel's First Law and Monohybrid Inheritance

In maize (*Zea mays*), the allele for starchy endosperm (SuSu) is completely dominant over the allele for sugary endosperm (susu). Based on Mendel's First Law (Law of Segregation), which expected progeny outcome on the right correctly matches each monohybrid parental cross scenario on the left?

  • Cross between two heterozygous starchy plants (Susu×SusuSu\,su \times Su\,su), evaluated for the genotypic ratio among starchy progeny only1 SuSu:2 Susu1\ Su\,Su : 2\ Su\,su (1:21 : 2 ratio)
  • Test cross of a heterozygous starchy plant (Susu×susuSu\,su \times su\,su), evaluated for the ratio of dominant allele (SuSu) carriers to non-carriers1:11 : 1 ratio (50%50\% carriers to 50%50\% non-carriers)
  • Self-pollination of an F1F_1 plant (SusuSu\,su), evaluated for the total percentage of pure-breeding (homozygous) progeny50%50\% of total progeny
  • Cross between a heterozygous starchy plant (SusuSu\,su) and a homozygous starchy plant (SuSuSu\,Su), evaluated for the percentage of sugary (sususu\,su) progeny0%0\% of total progeny

Cevap

Cross between two heterozygous starchy plants matches 1 SuSu:2 Susu1\ Su\,Su : 2\ Su\,su; Test cross of a heterozygous starchy plant matches 1:11 : 1 ratio (50%50\% carriers to 50%50\% non-carriers); Self-pollination of an F1F_1 plant matches 50%50\% of total progeny; Cross between a heterozygous starchy plant and homozygous starchy plant matches 0%0\% of total progeny.
Each monohybrid parental cross is correctly matched by calculating the specific genotypic or phenotypic probabilities based on allele segregation during meiosis according to Mendel's First Law.

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1
Analyze the cross between two heterozygous starchy plants (Susu×SusuSu\,su \times Su\,su).
Genotypes produced are 1/4 SuSu1/4\ Su\,Su, 1/2 Susu1/2\ Su\,su, and 1/4 susu1/4\ su\,su.
Mendel's Law of Segregation states alleles segregate into gametes with equal probability (1/2 Su1/2\ Su, 1/2 su1/2\ su). Starchy plants comprise SuSuSu\,Su and SusuSu\,su. Among starchy progeny, the genotypic ratio is 1 SuSu:2 Susu1\ Su\,Su : 2\ Su\,su.
2
Analyze the test cross of a heterozygous starchy plant (Susu×susuSu\,su \times su\,su).
Genotypes produced are 1/2 Susu1/2\ Su\,su and 1/2 susu1/2\ su\,su.
Carriers of the dominant allele SuSu are SusuSu\,su (50%50\%), while non-carriers are sususu\,su (50%50\%), yielding a ratio of 1:11 : 1.
3
Analyze self-pollination of an F1F_1 plant (Susu×SusuSu\,su \times Su\,su) for pure-breeding individuals.
Pure-breeding individuals (SuSuSu\,Su and sususu\,su) constitute 50%50\% of offspring.
Pure-breeding offspring are homozygous. 25% SuSu+25% susu=50%25\%\ Su\,Su + 25\%\ su\,su = 50\% of total progeny.
4
Analyze the cross Susu×SuSuSu\,su \times Su\,Su for sugary (sususu\,su) progeny.
Proportion of sususu\,su offspring is 0%0\%.
The homozygous dominant parent contributes a dominant SuSu allele to all offspring, preventing the expression of the recessive sususu\,su genotype.

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Mendel's First Law and Monohybrid Cross Proportions
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