You cross individuals with genotypes AABb and AaBb. What is the probability of producing an offspring of type AABb Group of answer choices A. 1/2 B. 1/4 C. 1/8 D. 1/16
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You cross individuals with genotypes AABb and AaBb. What is the probability of producing an offspring of type AABb
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- For each of the terms in the left column, choose thebest matching phrase in the right column.a. phenotype 1. having two identical alleles of a given geneb. alleles 2. the allele expressed in the phenotype ofthe heterozygotec. independent 3. alternate forms of a gene assortmentd. gametes 4. observable characteristice. gene 5. a cross between individuals bothheterozygous for two genesf. segregation 6. alleles of one gene separate into gametesrandomly with respect to alleles of othergenesg. heterozygote 7. reproductive cells containing only onecopy of each geneh. dominant 8. the allele that does not contribute to thephenotype of the heterozygotei. F1 9. the cross of an individual of ambiguousgenotype with a homozygous recessiveindividualj. testcross 10. an individual with two different allelesof a genek. genotype 11. the heritable entity that determines acharacteristicl. recessive 12. the alleles an individual hasm. dihybrid cross 13. the separation of the two alleles of agene into…Using the following information perform following crosses using the forked line and predict all possible phenotypes types of the offspring. List the number and description of the phenotypes of the offspring. 1. aa BB Cc Dd Ee X aa bb Cc Dd EE 2. Ff Rr Gg dd Bb X Ff RR Gg Dd Bb 3. Dd gg JJ bb Hh Ee X DD GG Jj Bb Hh EeIf these two individuals with the following characteristics are crossed Parent 1: blood type AB; heterozygous for H gene Parent 2: heterozygous B blood type; hh genotype What is the phenotypic ratio (blood type) of the F, generation? A. 4 AB: 1 A: 1 B: 2 0 B. 2 AB: 2 A: 4 B: no O C. 1 AB: 1 A: 2 B: 4 0 D. 1 AB: 1 A: 1 B: 10
- Please consider the pedigree below. There are no cases of false paternity. The ABO blood group phenotypes of individuals who marry into the family are a true reflection of their ABO genotypes. image attached I a. Which individual/s definitely has/have Bombay phenotype in the descendants of I-1 and I-2? b. What are the genotypes of individuals I-1 and II-2 at the ABO and H loci?Complete the Punnett Squares for each of the following crosses and fill out the possible % for the offspring. 10. If the woman is type AB and the father is heterozygous for type B. % AB % A % BWhat is the phenotypic ratio of the offspring when a man who has type A blood, and whose mother had type O blood, marries a woman who has type AB blood? a 2 type A : 1 type AB : 1 type B b 3 type A: 1 type B c 1 type A : 1 type O d 1AA :1AB : 1AO : 1BO
- Given the allelic frequency of A = .5 , answer the following 1. What is the homozygous dominant frequency ? 2. What is the allellc of a? 3. What is the heterozygous frequency ?Pretending that Park shin-hye is heterozygous for A blood type marries Choi Tae-joon whose blood type is O. Show the possible blood types of their future children. 1. P1: 2. Punnett Square: 3. Genotype symbols: 4. Genotype in words: 5. Genotypic ratio: 6. Genotypic %: 7. Phenotype symbols: 8. Phenotype in words: 9. Phenotypic ratio: 10. Phenotypic %:Sickle Cell Anemia affects blood types in humans and represents what type of relationship compared to normal alleles? 1.Codominance 2.Incomplete Dominance 3.Epistasis 4.Dominant Lethal 5. It is not clear and could be 1 or 2
- The karyotype below belongs to a male with Down Syndrome. > K în B X 88 88 88 88 88 00 00 00 88 13 86 Bo True False 000 03Which are the following are TRUE for test crosses? Select an answer and submit. For keyboard navigation, use the up/down arrow keys to select an answer. a They are useful when the genotype of a dominant phenotype is unknown. b They are always done by crossing the dominant phenotype to a homozygous recessive individual for that trait. c This test is always done in humans. d A + B e A + C f B + CWhat is the difference between incomplete dominance and codominance? * a. The dominant allele completely masks the recessive allele. b. In codominant traits, both alleles are expressed, while incompletely dominant traits mix to create a third phenotype c. In codominance, the traits are mixed; in incomplete dominance, both traits are expressed When organisms reproduce and their offspring demonstrate co-dominance the offspring dominant traits exhibit homsolvns