Match the characteristics of a pedigree to the mode of inheritance. An affected father panses a trait on to his (Ooose Mare males than females are affected. (Ohoose) Once the trait dinappeans from one branch of (Ooose the pedigree, tnever repan An afected father passes the trait on to al Nis daghters but none of his sons (Choose
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- Question:- Based on your selected mode of inheritance, show the genotypes for the following individuals. [Use these symbols for alleles: if it is autosomal, then use the symbols B - dominant, b - recessive (e.g. BB, bb etc.) if it is X-Linked, then X(B) - dominant, X(b) - recessive, and Y for Y-chromosome (e.g. X(B)X(B), X(B)Y etc.) ] I-1 I-2 II-7 II-8 III-10 III-11 III-12 IV-8 IV-9Analysis of Autosomal Recessive and Dominant Traits In the following pedigree, assume that the father of the proband is homozygous for a rare trait. What pattern of inheritance is consistent with this pedigree? In particular, explain the phenotype of the proband.Analysis of Autosomal Recessive and Dominant Traits a. What pattern of inheritance is suggested by the following pedigree? b. For genotype assignment, assume that the pedigree is for an autosomal dominant trait and that the affected male in the first generation is heterozygous. Assign genotypes to all other individuals in the pedigree.
- Analysis of X-Linked Dominant and Recessive Traits Suppose a couple, both phenotypically normal, have two children: one unaffected daughter and one son affected with a genetic disorder. The phenotype ratio is 1:1, making it difficult to determine whether the trait is autosomal or X-linked. With your knowledge of genetics, what are the genotypes of the parents and children in the autosomal case? In the X-linked case?question is attachedpls don’t forget to answer the last bottom question as well. Thank you!
- MENDELIAN MODE OF INHERITANCE AND PEDIGREE ANALYSIS 1. Dent disease is a rare disorder of the kidney in which there is impaired reabsorption of filtered solutes and progressive renal failure. The following pedigree shows the pattern of inheritance for this disorder. a. On the basis of this pedigree, what is the most likely mode of inheritance for the disease? b. From your answer to part a, give the most likely genotypes for the following persons in the pedigree: 1-1: 1-2: Il-5: Il-8: III-1: III-3: IV-2: IV-1:Codominance pattern of inheritance: Two equally dominant alleles (IA and IB) and one recessive (i)Fill in the chart with the missing information. Remember, blood genotypes are indicated with IA IB and i alleles.#1. a. Write down all of the possible genotypes possible for human blood type. How many?b. evaluate the difference between genotype and phenotype by filling in the table. BLOODPHENOTYPE Possible Genotype(s Can donate blood to Can receive blood from: O O AB AB (universal recipient) A O,A B AB, BWorking with the definitions of penetrance and expressivity, analyze the following pedigree and assume that the father of the proband is homozygous for a rare trait. (Consider a rare trait here to be less than 1 in 30,000.) What pattern of inheritance other than autosomal recessive could explain this pedigree? In particular, explain the genotype and phenotype of the proband (arrow).
- Mendel's independent assortment: Draw a cell with a diploid chromosome number of 4. The gene controlling flower color (pink/white) is not linked to the gene for height (short/tall). Draw the cells and chromosomes in the process of meiosis (meiosis I followed by meiosis II, not all individual stages) in a plant clearly heterozygous for both traits. Be sure your answer demonstrates your understanding of Mendel’s 2nd law of inheritance. PLEASE HELP. This is all of the information.olving Monohybrid Inheritance single gene. crosses. The henotypic traits controlled by a single gene. The problems are to give you practice in problem solving using Mendelian genetics. A dominant gene (W) produces wire-haired texture in dogs; its recessive allele (w) produces smooth hair. A group of heterozygous wire-haired individuals are crossed and their F1 progeny are then test-crossed. Determine the expected genotyplc and phenotypic ratios among the test cross progeny:Please help me since I am not too sure