xperiments performed by Professor Trink reveal that it takes only 20 minutes for owing cell to replicate this chromosome. What is the minimum number of icons present on the chromosome? on 7: lowing data were obtained from a Lebanese population of 1,000 people. Blood Type Number of Individuals A 85 B 260 AB 15 0 640 late the 4, 1 and 1 allelic frequencies. Assume that the population is in Hardy-Weinberg brium
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- IX. The blood of several members of a particular family was determined, and the results are tabulated below. Individual Blood Type Genotype Father Mother B Child 1 AB Child 2 B. Child 3 Grandfather (mother's side) Grandmother (father's side) AB Assuming that no adultery or adoption took place for all generations, answer the following questions: a. Give the most probable genotype for each individual. Supply your answers on the table above. b. What is/are the most probable genotype(s) for the grandmother on the mother's side? c. If the father and the mother decide to have two more children, what is the probability that the first would be female type A and the second male type AB?An individual has the following genotype. Gene loci (A) and (B) are 15 m.u. apart. What are the correct frequencies of some of the gametes that car be made by this individual? Bl a O A. Ab = 7.5%; AB = 42.5% B. ab = 25%; aB = 50% O C. AB = 7.5%; aB = 42.5% O D. aB = 15%; Ab = F0% E. aB = 70%; Ab = 15% Reset Selection OMark for Review What's This?Please ASAP. Thank you. The following diagram represents the results of hemoglobin samples of 5 patients (1-5) that were run on an electrophoresis gel at pH 9.2. The first 3 lanes show the control samples, for comparison. Consider Patient 4 and Patient 5. If patient 2 is female and patient 5 is a male, and they conceive a child together, what is the chance that the child will have sickle cell anemia (the disease)? Give your answer as a percentage (%)
- Switch Background P Immersive Reader 100% Page Width d. What percent of the offspring will be carriers of the white eye trait? 2. Using the same information as for question #1, cross a heterozygous red-eyed female with a red-eyed male. a. What are the genotypes of each parent? ic b. What fraction of the children will have red eyes? c. What fraction of the children will have white eyes? Pra d. What fraction of the female children will carry the white eyed trait?Please ASAP. Thank you. The following diagram represents the results of hemoglobin samples of 5 patients (1-5) that were run on an electrophoresis gel at pH 9.2. The first 3 lanes show the control samples, for comparison. Consider Patient 4 and Patient 5. If patient 4 is female and patient 5 is a male, and they conceive a child together, is there a good chance that the child will have sickle cell anemia (the disease)? Answer Yes or NoGenotypic %: Phenotypic %: 3. Cross a man with type B heterozygous blood with a woman with type O blood, What are the possible genotypes and phenotypes of their offspring? Genotypes: Phenotypes: 4. Klariz, a 28-year-old woman with type O blood and Ricci, a 30-year-old man with type AB blood are expecting a child. What are the possible blood types of the kid? Show your solution using Punnett Square. Phenotypes: 5. Mrs. Lopez has type B blood. Mr. Lopez has type O blood. Their son Michael has type O blood. Make a Punnett square to show what Mrs. Lopez's genotype must be to have a child with type O blood. Mrs. Lopez's genotype:
- TEST goo.g/CUYGKD 2.) A man with type A blood marries a woman with type B blood. Their child has type O blood. What are the genotypes of these three individuals? What genotypes, and in what frequencies, would you expect in future offspring from this marriage? 3. A man has six fingers on each hand and six toes on each foot. His wife and their daughter have the normal number of digits. Remember that extra digits is a dominant trait. What fraction of this couple's children would be expected to have extra digits?t 2. ng. Questions and Problems Given the pedigree below, answer the following questions separately for each pedigree. 1. What is the mode of inheritance? 2 Write the genotype of the individuals in the pedigree based on the mode of inheritance given. date distance Pedigree 1 gous Pedigree 2 Recombination zzel 9rd To ya hisiga of elds ed bittorie 10 Tube heterozygpitanjonosenis the fasiria cell while the tester, taken as the raingoz, mix on the allele of the nie of Deteraniol are now adva Hol Tidmoos DNG sevel. This cross will produce filial generation (2) walthen purple ves f 11020 12 13 encont 000 sg nomi 2 is importan gies to do this, scientists preously 4 méte based monso nomiskt sild devon S01 000 05 1uodo 910 919/3 2m al m 29098 3291T 20 comondo of pes. The value is, the OTO the value is the closer 1 2 nesten che 3 4 5 6 I snag- niboo to 19dmun srid wordt oo Jadigrappen va bo trog do disp ambe 000 61 251110010 aliso ist was by The song Shear Besa STS GRAD color. In his experimenti…Part I. A. Examine the gene pool of this population (Column A) and then choose the answer for the following questions from the box in Column B. show computation (3pts each) 10% 30% 40% 50% 60% 70% 1. What is the frequency of the AA genotype in this population? 2. What is the frequency of Aa genotype in this population? 3. What is the frequency of the aa genoty pe in this population? 4. What is the frequency of the A allele in this population? 5. What is the frequency of the a allele in this population?
- Po es) 20 F1 KEY CROSS- RR X IT RESULTS- Rr GENOTYPE- RR IT Ơ 天 2 T 1. To determine the results of this experiment, complete the Punnett squares below by writing the correct allele(s) in the space provided P Generation PHENOTYPE- Round seeds x Wrinkled seeds F4 R 1, a r Rr F5 Rr RR Rr RR R X Rr F6 Rr Rr AaBbCcDdE AaBbCcDdE Aa BbCcD Aa BbCcD Heading 1 Normal No Spacing IT IT I F1 F2 F2 KEY CROSS-RrxRr RESULTS ace provid GENOTYPE 2. hat phenotypes are present in the F₁ generation? What gen'otypes are present? F7 3. What phenotypes are present in the F2 generation? In what ratio are they present? PHENOTYPE 4. Does your analysis support or refute Mendel's hypothesis of dominant and recessive inheritance? Explain. DII F8 Title F9 Aa BbCcDdEe Focus Subtitle E E 1ning x earning.com/index.cfm?method%3DcResource.dspView&ResourcelD=1070&ClassID=D3856718 5. Which offspring could not arise from the parent cells with the chromosomes shown below? Assume crossovers can occur between chromosome pairs in the parent cells. Allele key Parent 1 Parent 2 Dominant C-Curly wing B-Brown body L-Legs on head R-Red eyes HX Recessive c-normal wing b-black body 1-antenna r-orange eyes D. OA. Offspring A OB. Offspring B Oc.offspring C OD. Offspring D acer B.Answer the following questions. 1. Construct a map for the genes d,e,f. Assume that: d and e = 3%; e and f = 5%. Give 2 arrangements of the genes/maps. 2. If d and f = 2%, what is the correct arrangement of the genes d,e,f? 3. Consider the fourth gene "g". if g and e = 1.5%, give two possible arrangements. 4. If d and g = 1.5 % give the correct order of the four genes %3D