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Transcript
Super Duper
Inheritance,
Shminheritance
Generic
Genetics
Pics ‘n Stuff
Diseases 
$100
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$400
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Final
Jeopardy
$500
$500
$500
$500
Hard Stuff 
C1 $100
The type of inheritance
shown when a redflowering plant is crossed
with a white-flowering
plant to produce pink
offspring is _____
C1? $100
Incomplete dominance
C1 $200
A trait controlled by four
alleles is said to have
____
C1 $200
Multiple alleles
C1 $300
Humans have 22 pairs of
_______ chromosomes
C1 $300
autosome
C1 $400
_____ is when the
phenotype of the offspring
of two homozygous parents
is a mix/intermediate color
between the two
C1 $400
Incomplete dominance
final
Create a pedigree using the following C1
data
:
* Generation I: mother affected/father not
affected
* Generation II: 4 offspring: II-1 is
affected (male/married) II-3 is carrier
(male/married) II-5 not affected (female/
married), II-7 not affected (female/not married)
*Generation III: II-1 and 2 have two
female offspring, both carriers, II-3 mated, but
has no offspring, II-5 and 6 has one male
offspring, affected and one female offspring,
not affected, II-7 has not mated, has no
offspring
Timer
C1 final
See overhead
C2 $100
Eye color in humans is the
result of ______
inheritance.
C2 $100
polygenic
C2 $200
Royal hemophilia is a
result of _____
inheritance.
C2 $200
Sex-linked
C2 $300
Cystic fibrosis and TaySachs disease are typical
of recessive disorders
concentrated in _____
C2 $300
Ethnic groups
C2 $400
Most human genetic
disorders are caused by
the expression of ______
C2 $400
Recessive alleles
Because the gene for red-green
C2 $500
colorblindness is located on the
X chromosome, it is not normally
possible for a
a) Carrier mother to pass the gene to her
daughter
b) carrier mother to pass the gene on to
her son
c) Color blind father to pass the gene on to
his daughter
d) Color blind father to pass the gene on to
C2 $500
d) Color blind father to
pass the gene on to his
son
C3 $100
If individual III-2 marries a person with the same
genotype as individual II-2, what is the chance that
their children will be affected with hemophilia?
C3 $100
0%
C3 $200
What type of inheritance pattern does
the trait represented by the shaded
symbols illustrate?
C3 $200
Sex-linked
C3 $300
For the trait in the above pedigree,
individuals II-1 and II-4 can be
classified as ___________
C3 $300
Carriers/heterozygous
C3 $400
What is the relationship between
individual I-1 and individual III-2?
C3 $400
Grandmother and
grandson
C3 $500
What phenotype is depicted here?
C3 $500
B
C4 $100
Two healthy parents have
a child with a rare genetic
disease. What could be
the explanation for this?
C4 $100
The gene is recessive and
is carried by both
parents.
C4 $200
Which term does not
belong with the others:
Huntingtons’s disease, cystic fibrosis,
Tay-Sach’s disease, PKU.
Explain
C4 $200
Huntington’s disease does
not belong. It is a
dominant trait, the
others are recessive.
C4 $300
Both hemophilia and redgreen colorblindness are
_______
C4 $300
Sex-linked disorders
C4 $400
What damage is caused as
a result of sickle-cell
anemia?
C4 $400
Tissue damage as a result
of oxygen deprivation
C4 $500
The gene for
colorblindness is found on
the X chromosome. Will
the boy of a colorblind
father be colorblind?
Explain.
C4 $500
No, the Y chromosome he
received from his father
does not carry the trait.
C5 $100
When roan cattle are mated, 25% of
the offspring are red, 50% are roan
and 25% are white. Roan coats consist
of both red and white hairs. This
trait is one controlled by _________
alleles.
C5 $100
codominant
C5 $200
A cross between a white
rooster and a black hen results
in 100% blue Andalusian
offspring (codominance). When
two of these blue offspring are
mated, the probable phenotypic
ratio would be _______
C5 $200
25% black, 50% blue,
25% white
C5 $300
Which of the following
disorders can be
detected by
karyotyping?
a) sickle-cell anemia
b) Down syndrome
c) Tay-Sachs disease
d) PKU
C5 $300
Down syndrome (3 copies
of chromosome 21—
trisomy 21)
C5 $400
What is the chance that the
individual A will have
Huntington’s disease?
C5 $400
50%
C5 $500
A man heterozygous for
blood type A has children
with a woman
heterozygous for blood
type B. The chance that
their first child will have
type O blood is ___
C5 $500
25%
This Jeopardy game was created by
(Your Name)
(Post Credits Here)
This Jeopardy template was created by Dr. Robert Pettis, Director
An Adventure of the American Mind, University of South Carolina Spartanburg