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name dihybrid genetic crosses – chickens! trait\tdominant allele\treces…

Question

name
dihybrid genetic crosses – chickens!
trait\tdominant allele\trecessive allele
feather color\twhite (w)\tspeckled (w)
number of toes\tfive (f)\tthree (f)
comb color\thot pink (p)\tbaby blue (p)
sound it makes\tcluck (c)\twoof (c)

  1. suppose you have a homozygous white, five - toed rooster (wwff) and you cross it with a heterozygous white, three - toed hen (wwff). answer the following questions about this cross.

a. list the possible gamete combinations for the rooster:
b. list the possible gamete combinations for the hen:
c. perform the following dihybrid cross:
(a table is here)
d. what are all of the possible genotypes of the offspring?
e. what are all of the possible phenotypes of the offspring, and in what ratio?

  1. suppose you cross a rooster that has a baby blue comb and is heterozygous for a cluck with a hen who is heterozygous for a hot pink comb and makes a “woof” sound.

a. what is the genotype for the rooster?
b. what is the genotype for the hen?

Explanation:

1.

a.

Brief Explanations

The rooster is homozygous \(WWFF\). For gamete formation, each gamete gets one allele from each gene pair. Since it is homozygous for both traits (\(WW\) and \(FF\)), using the principle of segregation (each gamete gets one allele of each gene), the only possible combination is \(WF\).

Brief Explanations

The hen is heterozygous for feather - color (\(Ww\)) and homozygous recessive for toe - number (\(ff\)). Using the principle of segregation, for the \(Ww\) gene pair, it can contribute \(W\) or \(w\), and for the \(ff\) gene pair, it can only contribute \(f\).

Brief Explanations

Set up a Punnett square. The rooster has only one type of gamete (\(WF\)), and the hen has two types (\(Wf\) and \(wf\)).

Answer:

\(WF\)

b.