Genetics: A Conceptual Approach
Genetics: A Conceptual Approach
6th Edition
ISBN: 9781319050962
Author: Benjamin A. Pierce
Publisher: W. H. Freeman
Question
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Chapter 3.3, Problem 34AQP

a.

Summary Introduction

To determine:

The proportion of the genotype Aa Bb Cc Dd Ee among the progeny of the cross AaBbCcddEe×AabbCcDdEe.

Introduction:

The cross between AaBbCcddEe and AabbCcDdEe will give rise to many combinations and the probability of specific genotype in progenies can be determined. Some simpler crosses can also help in determining the proportion of genotype in progeny from many combinations obtained from the cross. The cross occurs only between the genes found on the same locus of each parent’s chromosome.

a.

Expert Solution
Check Mark

Explanation of Solution

Tabular representation: Table.1: The proportion of possible genotypes formed in offsprings obtained by the cross AaBbCcddEe×AabbCcDdEe.

Genetic crossProbability of possible genotype of offspring
Cross between genes present on locus 1 (A and a):Aa×Aa14AA,12Aa,14aa
Cross between genes present on locus 2 (B and b):Bb×bb12Bb, 12bb
Cross between genes present on locus 3 (C and c):Cc×Cc14CC,12Cc,14cc
Cross between genes present on locus 4 (D and d):dd×Dd12Dd,12dd
Cross between genes present on locus 5 (E and e):Ee×Ee14EE,12Ee,14ee

Table.1: The proportion of possible genotypes formed in offsprings obtained by the cross AaBbCcddEe×AabbCcDdEe.

The probability of obtaining Aa Bb Cc Dd Ee genotype can be calculated by multiplication rule in which the probability of each allele is multiplied. Probability of Aa is 12, probability of Bb is 12 , probability of Cc is 12 , probability of Dd is 12 and probability of Ee is 12. Therefore, the probability of obtaining Aa Bb Cc Dd Ee genotype can be calculated as:

Probability of Aa Bb Cc Dd Ee=12Aa×12Bb×12Cc×12Dd×12Ee=132

Thus, the probability of Aa Bb Cc Dd Ee genotype is 132.

b.

Summary Introduction

To determine:

The proportion of the genotype Aa bb Cc dd ee among the progeny of the cross AaBbCcddEe×AabbCcDdEe.

Introduction:

The cross between AaBbCcddEe and AabbCcDdEe will give rise to many combinations and the probability of specific genotype in progenies can be determined. Some simpler crosses can also help in determining the proportion of genotype in progeny from many combinations obtained from the cross. The cross occurs only between the genes found on the same locus of each parent’s chromosome.

b.

Expert Solution
Check Mark

Explanation of Solution

The probability of obtaining Aa bb Cc dd ee genotype can be calculated by multiplication rule in which the probability of each allele is multiplied. Probability of Aa is 12, probability of bb is 12 , probability of Cc is 12 , probability of dd is 12 and probability of ee is 14. Therefore, the probability of obtaining Aa bb Cc dd ee genotype can be calculated as:

Probability of Aa bb Cc dd ee=12Aa×12bb×12Cc×12dd×14ee=164

Thus, the probability of Aa bb Cc dd ee genotype is 164.

c.

Summary Introduction

To determine:

The proportion of the genotype aa bb cc dd ee among the progeny of the cross AaBbCcddEe×AabbCcDdEe.

Introduction:

The cross between AaBbCcddEe and AabbCcDdEe will give rise to many combinations and the probability of specific genotype in progenies can be determined. Some simpler crosses can also help in determining the proportion of genotype in progeny from many combinations obtained from the cross. The cross occurs only between the genes found on the same locus of each parent’s chromosome.

c.

Expert Solution
Check Mark

Explanation of Solution

The probability of obtaining aa bb cc dd ee genotype can be calculated by multiplication rule in which the probability of each allele is multiplied. Probability of aa is 14, probability of bb is 12 , probability of cc is 14 , probability of dd is 12 and probability of ee is 14. Therefore, the probability of obtaining aa bb cc dd ee genotype can be calculated as:

Probability of aa bb cc dd ee=14aa×12bb×14cc×12dd×14ee=1256

Thus, the probability of aa bb cc dd ee genotype is 1256.

d.

Summary Introduction

To determine:

The proportion of the genotype AA BB CC DD EE among the progeny of the cross AaBbCcddEe×AabbCcDdEe.

d.

Expert Solution
Check Mark

Explanation of Solution

In the given cross the genotype of parent 1 is AaBbCcddEe and the genotype of parent 2 is AabbCcDdEe. Parent 1 will not contribute allele D to the off spring as it is homozygous for allele d. It can pass only allele d to the offspring.

Similarly parent 2 will not contribute to allele B as it is homozygous for allele b. It can pass only allele b to the offspring.

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