Genetic Crosses and Inheritance Patterns

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Genetic Crosses
 
Show possible outcomes of genes the
new generation will have
 
We use:
Gene diagrams
Punnett Squares
Terminology
 
   Genotype
Phenotype
Parent
Gamete
Offspring
 
   dominant
recessive
allele
 
Gene control of characteristics
 
All characteristics are controlled by a
minimum of 2 genes.
 
These genes give the characteristic a
different of presenting itself.
 
Different genes that control the same feature
are called ALLELES
 
 
EYE COLOUR
 
Possible alleles – blue , brown, green,
hazel etc    (each colour needs its own
gene)
 
It is possible to have pairs of different
alleles, alleles are usually given a letter
Genotype and phenotype
 
Genotype is the letter or term used to
describe the allele of an individual gene or
pair of genes
 
Phenotype – is how the gene (or pair) shows
itself, how it appears.
Dominance and
recessiveness
 
Some alleles for a feature are able to mask
the influence of other (weaker) gene when
they are paired
Stronger gene is 
DOMINANT
 and is
represented by a capital letter      e.g. H
The masked gene is 
RESSESIVE
 shown as
lower case of the same letter      e.g.   h
Gene diagram – Flower colour
 
Genotype of alleles-  
 
R
 = red flower
    
r
 = yellow flower
All genes occur in pairs – so 2 alleles affect a
characteristic – possible combinations are;
genotype
 
RR
 
  
R
r
  
rr
Phenotype
 
RED             RED   
 
    YELLOW
Gene diagram – Flower colour
Male
    
female
 
RR
 
rr
 
parent
gamete
 
    R                     R                      r                        r
Offspring
genotype
 
Rr
 
Rr
 
Rr
 
Rr
Phenotype
 
All 
red
Gene diagram – Flower colour
Male
    
female
 
Rr
 
Rr
 
parent
gamete
 
    R                     r                      R                       r
Offspring
genotype
 
RR
 
Rr
 
Rr
 
rr
Phenotype
 
 
Red 
         
yellow
          
red              red
 
        3 red    :   1 yellow
Gene diagram – Flower colour
Male
    
female
 
Rr
 
rr
 
parent
gamete
 
    R                     r                      r                        r
Offspring
genotype
 
Rr
 
Rr
 
rr
 
rr
Phenotype
 
Red
         
yellow 
              
yellow 
            
red
 
Red 50%         yellow 50%
 
Punnett Square
 
Another method of showing crosses
 
Gamete genotypes are inserted
 
 
Parent genotypes are inserted    B=black       b=white
 
 
Bb
     
male 
black
 
 
 
bb
white
female
 
 
B
 
 
b
 
 
b
 
 
b
 
What are the crosses
 
 
Bb
 
 
bb
 
 
Bb
 
 
bb
 
 
 
2
 
w
h
i
t
e
 
a
n
d
 
2
b
l
a
c
k
 
o
f
f
s
p
r
i
n
g
5
0
:
5
0
 
c
h
a
n
c
e
w
i
t
h
 
t
h
e
s
e
p
a
r
e
n
t
s
Question
 
2 black rats are mated,
they have 13 offspring.
All of which are black,
what are the genotypes
of the parents
 
The male is re-mated
with a white female,
the offspring are
6 black   and  7 white
 
What were the genotypes
of the original parents
 
Rats have 2 coat colours – black B, white b.
 
Both    BB    BB
BUT
one could be Bb
 
 
Female 
BB    
Male 
Bb
Remember think how lucky
you are!
 
This powerpoint was kindly donated to
www.worldofteaching.com
 
 
 
 
http://www.worldofteaching.com
 is home to over a
thousand powerpoints submitted by teachers. This is a
completely free site and requires no registration. Please
visit and I hope it will help in your teaching.
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Discover the world of genetic crosses through gene diagrams and Punnett squares. Explore the terminology, genotype, phenotype, and the concepts of dominance and recessiveness. Learn how genes control characteristics like eye color, delve into allele combinations for flower color, and see possible outcomes of offspring in various genetic crosses.

  • Genetics
  • Genetic crosses
  • Alleles
  • Punnett squares
  • Dominance

Uploaded on Jul 13, 2024 | 0 Views


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  1. Genetic Crosses Show possible outcomes of genes the new generation will have We use: Gene diagrams Punnett Squares

  2. Terminology Genotype Phenotype Parent Gamete Offspring dominant recessive allele

  3. Gene control of characteristics All characteristics are controlled by a minimum of 2 genes. These genes give the characteristic a different of presenting itself. Different genes that control the same feature are called ALLELES

  4. EYE COLOUR Possible alleles blue , brown, green, hazel etc (each colour needs its own gene) It is possible to have pairs of different alleles, alleles are usually given a letter

  5. Genotype and phenotype Genotype is the letter or term used to describe the allele of an individual gene or pair of genes Phenotype is how the gene (or pair) shows itself, how it appears.

  6. Dominance and recessiveness Some alleles for a feature are able to mask the influence of other (weaker) gene when they are paired Stronger gene is DOMINANT and is represented by a capital letter e.g. H The masked gene is RESSESIVE shown as lower case of the same letter e.g. h

  7. Gene diagram Flower colour R = red flower r = yellow flower Genotype of alleles- All genes occur in pairs so 2 alleles affect a characteristic possible combinations are; RR RED RED YELLOW Rr rr genotype Phenotype

  8. Gene diagram Flower colour parent Male female RR rr R R r r gamete Offspring genotype Rr Rr Rr Rr All red Phenotype

  9. Gene diagram Flower colour parent Male female Rr Rr R r R r gamete Offspring genotype Rr rr Rr RR Phenotype Red yellow red red 3 red : 1 yellow

  10. Gene diagram Flower colour parent Male female Rr rr R r r r gamete Offspring genotype rr Rr Rr rr Red yellow yellow red Phenotype Red 50% yellow 50%

  11. Punnett Square Another method of showing crosses

  12. Parent genotypes are inserted B=black b=white Gamete genotypes are inserted What are the crosses Bb male black B b 2 white and 2 black offspring bb Bb b bb white female 50:50 chance with these parents b Bb bb

  13. Question Rats have 2 coat colours black B, white b. 2 black rats are mated, they have 13 offspring. All of which are black, what are the genotypes of the parents The male is re-mated with a white female, the offspring are 6 black and 7 white Both BB BB What were the genotypes of the original parents BUT Female BB Male Bb one could be Bb

  14. Remember think how lucky you are!

  15. This powerpoint was kindly donated to www.worldofteaching.com http://www.worldofteaching.com is home to over a thousand powerpoints submitted by teachers. This is a completely free site and requires no registration. Please visit and I hope it will help in your teaching.

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