Heredity and Genetics Assignment Assuming that a long tail is dominant and a short tail is recessive, complete a Punnett square between the following two deer: Deer A: homozygous recessive (short tail) Deer B: heterozygous Remember, you should only be using ONE letter in your Punnett square. The capital version (for example, T) would be the dominant allele, and the lowercase version (t) would be the recessive allele. Each parent will have two alleles, where homozygous dominant would have two capital letters (TT), homozygous recessive would have two lowercase letters (tt), and heterozygous would have one of each (Tt). Submit your Punnett square (below) along with your description of the offspring to your teacher. What will the offspring look like? How many of the offspring will have a long tail and how many will have a short tail? Put the alleles for Deer A in the yellow boxes. Put the alleles for Deer B in the purple boxes.
Heredity and Genetics Assignment Assuming that a long tail is dominant and a short tail is recessive, complete a Punnett square between the following two deer: Deer A: homozygous recessive (short tail) Deer B: heterozygous Remember, you should only be using ONE letter in your Punnett square. The capital version (for example, T) would be the dominant allele, and the lowercase version (t) would be the recessive allele. Each parent will have two alleles, where homozygous dominant would have two capital letters (TT), homozygous recessive would have two lowercase letters (tt), and heterozygous would have one of each (Tt). Submit your Punnett square (below) along with your description of the offspring to your teacher. What will the offspring look like? How many of the offspring will have a long tail and how many will have a short tail? Put the alleles for Deer A in the yellow boxes. Put the alleles for Deer B in the purple boxes.
Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN:9780134580999
Author:Elaine N. Marieb, Katja N. Hoehn
Publisher:Elaine N. Marieb, Katja N. Hoehn
Chapter1: The Human Body: An Orientation
Section: Chapter Questions
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Im really confused about how to do set it out even after looking at the material. If I could get help i'd really appreciate it

Transcribed Image Text:Heredity and Genetics Assignment
Assuming that a long tail is dominant and a short tail is recessive, complete a Punnett square
between the following two deer:
Deer A: homozygous recessive (short tail)
Deer B: heterozygous
Remember, you should only be using ONE letter in your Punnett square.
The capital version (for example, T) would be the dominant allele, and the lowercase version (t)
would be the recessive allele. Each parent will have two alleles, where homozygous dominant would
have two capital letters (TT), homozygous recessive would have two lowercase letters (tt), and
heterozygous would have one of each (Tt).
Submit your Punnett square (below) along with your description of the offspring to your teacher.
What will the offspring look like? How many of the offspring will have a long tail and how many will
have a short tail?
Put the alleles for Deer A in the yellow boxes.
Put the alleles for Deer B in the purple boxes.
1
out of 4 offspring will have long tails.
out of 4 offspring will have short tails.
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