In: Biology
How many different phenotypes are found among the progeny of the cross listed below?
Aa | Bb | dd | Ee | x | Aa | Bb | Dd | Ee |
This exercise shoul be solved with a Punnett Square:
ABdE |
ABde |
ABdE |
AbdE |
ABde |
AbdE |
Abde |
Abde |
aBdE |
aBde |
aBdE |
abdE |
aBde |
abdE |
abde |
abde |
|
ABDE |
AABBdDEE |
AABBdDeE |
AABBdDEE |
AAbBdDEE |
AABBdDeE |
AAbBdDEE |
AAbBdDeE |
AAbBdDeE |
aABBdDEE |
aABBdDeE |
aABBdDEE |
aAbBdDEE |
aABBdDeE |
aAbBdDEE |
aAbBdDeE |
aAbBdDeE |
ABDe |
AABBdDEe |
AABBdDee |
AABBdDEe |
AAbBdDEe |
AABBdDee |
AAbBdDEe |
AAbBdDee |
AAbBdDee |
aABBdDEe |
aABBdDee |
aABBdDEe |
aAbBdDEe |
aABBdDee |
aAbBdDEe |
aAbBdDee |
aAbBdDee |
ABdE |
AABBddEE |
AABBddeE |
AABBddEE |
AAbBddEE |
AABBddeE |
AAbBddEE |
AAbBddeE |
AAbBddeE |
aABBddEE |
aABBddeE |
aABBddEE |
aAbBddEE |
aABBddeE |
aAbBddEE |
aAbBddeE |
aAbBddeE |
AbDE |
AABbdDEE |
AABbdDeE |
AABbdDEE |
AAbbdDEE |
AABbdDeE |
AAbbdDEE |
AAbbdDeE |
AAbbdDeE |
aABbdDEE |
aABbdDeE |
aABbdDEE |
aAbbdDEE |
aABbdDeE |
aAbbdDEE |
aAbbdDeE |
aAbbdDeE |
ABde |
AABBddEe |
AABBddee |
AABBddEe |
AAbBddEe |
AABBddee |
AAbBddEe |
AAbBddee |
AAbBddee |
aABBddEe |
aABBddee |
aABBddEe |
aAbBddEe |
aABBddee |
aAbBddEe |
aAbBddee |
aAbBddee |
AbdE |
AABbddEE |
AABbddeE |
AABbddEE |
AAbbddEE |
AABbddeE |
AAbbddEE |
AAbbddeE |
AAbbddeE |
aABbddEE |
aABbddeE |
aABbddEE |
aAbbddEE |
aABbddeE |
aAbbddEE |
aAbbddeE |
aAbbddeE |
AbDe |
AABbdDEe |
AABbdDee |
AABbdDEe |
AAbbdDEe |
AABbdDee |
AAbbdDEe |
AAbbdDee |
AAbbdDee |
aABbdDEe |
aABbdDee |
aABbdDEe |
aAbbdDEe |
aABbdDee |
aAbbdDEe |
aAbbdDee |
aAbbdDee |
Abde |
AABbddEe |
AABbddee |
AABbddEe |
AAbbddEe |
AABbddee |
AAbbddEe |
AAbbddee |
AAbbddee |
aABbddEe |
aABbddee |
aABbddEe |
aAbbddEe |
aABbddee |
aAbbddEe |
aAbbddee |
aAbbddee |
aBDE |
AaBBdDEE |
AaBBdDeE |
AaBBdDEE |
AabBdDEE |
AaBBdDeE |
AabBdDEE |
AabBdDeE |
AabBdDeE |
aaBBdDEE |
aaBBdDeE |
aaBBdDEE |
aabBdDEE |
aaBBdDeE |
aabBdDEE |
aabBdDeE |
aabBdDeE |
aBDe |
AaBBdDEe |
AaBBdDee |
AaBBdDEe |
AabBdDEe |
AaBBdDee |
AabBdDEe |
AabBdDee |
AabBdDee |
aaBBdDEe |
aaBBdDee |
aaBBdDEe |
aabBdDEe |
aaBBdDee |
aabBdDEe |
aabBdDee |
aabBdDee |
aBdE |
AaBBddEE |
AaBBddeE |
AaBBddEE |
AabBddEE |
AaBBddeE |
AabBddEE |
AabBddeE |
AabBddeE |
aaBBddEE |
aaBBddeE |
aaBBddEE |
aabBddEE |
aaBBddeE |
aabBddEE |
aabBddeE |
aabBddeE |
abDE |
AaBbdDEE |
AaBbdDeE |
AaBbdDEE |
AabbdDEE |
AaBbdDeE |
AabbdDEE |
AabbdDeE |
AabbdDeE |
aaBbdDEE |
aaBbdDeE |
aaBbdDEE |
aabbdDEE |
aaBbdDeE |
aabbdDEE |
aabbdDeE |
aabbdDeE |
aBde |
AaBBddEe |
AaBBddee |
AaBBddEe |
AabBddEe |
AaBBddee |
AabBddEe |
AabBddee |
AabBddee |
aaBBddEe |
aaBBddee |
aaBBddEe |
aabBddEe |
aaBBddee |
aabBddEe |
aabBddee |
aabBddee |
abdE |
AaBbddEE |
AaBbddeE |
AaBbddEE |
AabbddEE |
AaBbddeE |
AabbddEE |
AabbddeE |
AabbddeE |
aaBbddEE |
aaBbddeE |
aaBbddEE |
aabbddEE |
aaBbddeE |
aabbddEE |
aabbddeE |
aabbddeE |
abDe |
AaBbdDEe |
AaBbdDee |
AaBbdDEe |
AabbdDEe |
AaBbdDee |
AabbdDEe |
AabbdDee |
AabbdDee |
aaBbdDEe |
aaBbdDee |
aaBbdDEe |
aabbdDEe |
aaBbdDee |
aabbdDEe |
aabbdDee |
aabbdDee |
abde |
AaBbddEe |
AaBbddee |
AaBbddEe |
AabbddEe |
AaBbddee |
AabbddEe |
Aabbddee |
Aabbddee |
aaBbddEe |
aaBbddee |
aaBbddEe |
aabbddEe |
aaBbddee |
aabbddEe |
aabbddee |
aabbddee |
The solution is 8 diferent phenotypes
In a excel book you can set criteria to search for the genomes that are presented, you can also make the capital letters are included with the same group to mark those cells and you can count the phenotypes instead of the genotypes using the concanetar function (you can find templates for excel ready to be used in the net).
(Note: I would like to send you screenshots to make it look better, however at this moment the website does not allow me to upload images)