Mendelian Genetics - More Practice AAA Ha b Bb bb 1. A tetrahybrid individual, AaBbCcDd, is crossed with AABbCcdd: AaBbCcDd x AABbCcdd Use the multiplication and addition rules from lecture to calculate the probabilities that their offspring will have the following genotypes (assume independent assortment): 0.5 0.25 0.25 0.5 A. AABBCCdd 2/21 2/4 1/2 1/4 3/4 = 0.015825 1/64 ソム B. AabbCcdd podated 4/2024 C
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- Using the pedigree below for an autosomal dominant disorder to determine the phase (which ones are recombinants and which are non-recombinants? Identify them by pedigree position (11, 112, etc.) (SLO4) 1 11 III 2/2 1/2 1/1 -O 2/12 2/2 2/2 2/2 2/2 1/2 2/2 1/2 2/2 1/2 2/2 a. 0.01 b. 0.1 c. 0.2 Calculate the LOD score for each theta below for the pedigree above. Note: keep lots of places behind the decimal until the very end for accuracy. (SLO4)5 & :56M ******* 24 DIHYBRID CROSSES DRV 0 Stv T alı A @ zladenA 9160p2-id2 bns obidalbaneoviene da II\ MOD YR 21 $59A ... Create a dihybrid cross and determine the expected phenotypic percentages of the offspring of two corn plants both of which are heterozygous for colour and texture (RrTt X RrTt). Don't forget to include clear let statements, and follow the all six steps taught on solving genetics problems. insig moni nellog: bna. zoom1 of 1 X 2. The following 6 pedigrees were determined to show linkage to a trait: Pedigree A: LOD = 1.8 Pedigree D: LOD = -1.2 Pedigree B: LOD = 2.2 Pedigree E: LOD = -2.2 Pedigree C: LOD = 1.0 Pedigree F: LOD = -0.6 A. What is the estimated overall evidence for linkage in these combined families? B. Which pedigree(s) can be conclusively excluded from being linked to these markers? C. How much more likely is linkage in the pedigrees with positive LOD scores than the families with negative LOD scores? 61 words 31₁ Focus LIM E
- ybrid Cross - Parental (P) vill be observing the F, offspring of the cross shown in nage. The purple colof (P) of the kernel is the result of ment called anthocyanin, which is dominant and not nked. /hat are the genotypes of the F, offspring if both nts shown are homozygous? F1 Mendel's dihybrid cross always showed a the same ratio ONLY for traits that are not linked on the same mosome and inherited together. If the genes are linked the ratio will not follow Mendel's dihybrid ratio. What is atio seen in dihybrid crosses that are not linked? F2 EXPERIMENTAL QUESTION: Are the genes for color (P) and shape (R) linked (on the same chromosome)?FAlpQLSfiOhfAvlhxzCSiUll_6rt-nU5b0WI73UmWOxkOw8OCwk01ng/formResponse B 1 2 Bb x Bb b 4 The fur in both parents in this cross is * 1 B B Bb x Bb b 3 4 brown black O homozygous dominant homozygous recessive 3. 近What phenotypes in what ratio would be expected in the F2 generation of the cross with the following information: The genotype of homozygous black, long haired rabbit is BBhh The genotype of homozygous brown, short haired rabbit is bbHH The gamete of homozygous black, long haired rabbit is Bh The gamete of homozygous brown, short haired rabbit is bH F1 progeny is BbHh (heterozygous black, short haired rabbit)
- GsnKivd010j2gIRWLIZOMZZ-VibKYvBbo61ylATAQ/viewform RECOMBINATION". For numbers 7-35, reler to the given data below. Glven the following testcross data for com In whlch the genes for fine stripe (f), bronze gleurone (bz) and knotted leaf (Kn) are involved: + = wild type f fine stripe +=wild type bz = bronze gleurone +=wild type Kn knotted leaf %3D Genotype Ko f Number 451 Ko 134 97 436 bz bz bz Ko 18 119 f 24 Kn f bz 86 Total: Your answer 7-8. What would be the recombination frequency or the frequency of the recombinant type between +/Kn and +/f genes? Oa. 16% O b. 16 map units + + + + +parent genoty offspring genotypes. We can use this to figure out the probability of 1 How MANY HERITABLE TRAITS ARE USED IN DIHYBRID CROSS? 2. DIHYBRID CROSSES FOLLOW THE SAME RULES AS WHICH OTHER GENETIC DIAGRAM? Dunnet square S 3. How MANY OFFSPRING GENOTYPES ARE WORKED OUT IN A DIHYBRID CROSS? Emmatheteachie 2020 Dihybrid Crosses - Phenotypes LET'S CHECK IF YOU REMEMBER THE RULES FROM CREATING PUNNETT SQUARES! COMPLETE THE SENTENCES: Dominant alleles are represented with a letter. I'M THE BOS! Tt The capital letter is always written Each parent can only pass on allele for each gene. Recessive traits are only shown if both alleles are Now USE THE INFORMATION IN THE PICTURES BELOW TO WORK OUT THE PHENOTYPE FOR EACH GENOTYPE: Dominant traits Recessive traits Bubble fur (B) Spiky fur (b) Yellow body (M Pink body (y) BBYY = BbYy = Bbyy = bbYY= © Ermmotheleachie 2020CH 1-4 X с Maya S x Credib x app.wizer.me/learn/00E0AB wizer.me a Maya X A To-do 25% The table gives the genoty Assign x M Dashb x 50% Figurat X C In cows, brown (B) is codominant with white (W). The heterozygous phenotype is brown and white speckles. A farmer decided to cross a brown cow and a white cow in hopes of making all brown and white speckles. What percentage of the offspring will be brown with white speckles? Figurat X 75% Dashboard Incomp X d Interac X Enter class code Go 100%
- Pedigree 3: NOTE: the asterisk (*) indicates that the individual does not have any disease-related alleles. A. What is the most likely mode of inheritance of this disease? Choose from: autosomal dominant, autosomal recessive, X-linked dominant, X-linked recessive. B State the genotypes of individuals #1 - #4. C What is the probability of individual A being affected (show the disease)? What is the probability of individual B being affected? Pedigree 4:Classical Mendelian Genetics, Incomplete Dominance, Codominance, and Multiple Alleles 1. Complete the table given below regarding the phenotype and genotype ratios in completely dominant traits. R and r represent the dominant and recessive allele, respectively. Type of Cross rrx rr RR x rr Rrx rr Rrx Rr Genotype Ratio Phenotype Ratio RR x Rr RR X RR *How would the genotype ratios be affected if the mode o inheritance in incomplete dominance? Codominance? 2. In dogs, barer trait is controlled by a dominant gene D and the silent trait by the recessive gene d. Normal tail is dependent on a dominant gene M and the screw m. Give the probable genotypes of the parents in the following crosses: Phenotype of parents Phenotypes of progeny Genotypes of parents Barker Barker Silent Silent normal screw normal normal a. silent normal x silent normal b. barker normal x silent normal 0 0 6 2 7 2 8 3 c. barker normal x silent screw 4 5 5 3 d. barker screw x silent normal 6 0 0 0 e. barker screw x…Help me