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Austin Hastings
What is a Plasmid
    a small circle of bacterial DNA that is
    independent of the main bacterial
    chromosome. Plasmids often contain
    genes for drug resistances and can be
    transmitted between bacteria of the same
    and different species: used in genetic
    engineering
Where are plasmids
 Recombinant DNA
 Genetic Engineering
 Occur naturally in bacteria and yeast
 Sold individually
 Used for cloning
 Genetically altered organisms
 In your DNA
History of plasmids
 1903- Walter S. Sutton and Theodor
  Boveri think there are hereditary units on
  chromosomes.
 1910-1950- Many scientists expand the
  thought of Walter and Theodor. Expand
  on E Coli mating and beliefs about
  matings and relationships with
  chromosomes
History of Plasmids
 1952- Joshua Lederberg suggests name
  “Plasmid”
 1962- Circular DNA is found(circle is the
  shape of a plasmid)
 Modern Research- Used in DNA
  replication(cloning) and also used to
  genetically alter organisms through with
  recombinant DNA
Different types
   R Plasmids- carry antibiotic resistance
    traits
   Col Plasmids- produce bacteriocins
    F Plasmids- needs fertility system to work
   Episomes- help integrate into main
    chromosome producing a greater chance
    of the transfer of chromosomes with other
    bacteria
   Virulence plasmids- produces toxins
    damaging the host organism
Recombinant DNA
 Plasmids are used as a part of
  Recombinant DNA
 Recombinant DNA takes a plasmid out
  of an organism and places it into
  another that may not contain the trait
  contained by the plasmid
Basics of Plasmid animation
   http://www.youtube.com/watch?v=GNMJ
    BMtKKWU
pGreen
 http://www.pgreen.ac.uk/a_pls_fr.htm
 This link will help describe a type of
  plasmid called pGreen.
     Drag the mouse along the ring to learn
     about the plasmid.

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Plasmids

  • 2. What is a Plasmid  a small circle of bacterial DNA that is independent of the main bacterial chromosome. Plasmids often contain genes for drug resistances and can be transmitted between bacteria of the same and different species: used in genetic engineering
  • 3. Where are plasmids  Recombinant DNA  Genetic Engineering  Occur naturally in bacteria and yeast  Sold individually  Used for cloning  Genetically altered organisms  In your DNA
  • 4. History of plasmids  1903- Walter S. Sutton and Theodor Boveri think there are hereditary units on chromosomes.  1910-1950- Many scientists expand the thought of Walter and Theodor. Expand on E Coli mating and beliefs about matings and relationships with chromosomes
  • 5. History of Plasmids  1952- Joshua Lederberg suggests name “Plasmid”  1962- Circular DNA is found(circle is the shape of a plasmid)  Modern Research- Used in DNA replication(cloning) and also used to genetically alter organisms through with recombinant DNA
  • 6. Different types  R Plasmids- carry antibiotic resistance traits  Col Plasmids- produce bacteriocins  F Plasmids- needs fertility system to work  Episomes- help integrate into main chromosome producing a greater chance of the transfer of chromosomes with other bacteria  Virulence plasmids- produces toxins damaging the host organism
  • 7. Recombinant DNA  Plasmids are used as a part of Recombinant DNA  Recombinant DNA takes a plasmid out of an organism and places it into another that may not contain the trait contained by the plasmid
  • 8. Basics of Plasmid animation  http://www.youtube.com/watch?v=GNMJ BMtKKWU
  • 9. pGreen  http://www.pgreen.ac.uk/a_pls_fr.htm  This link will help describe a type of plasmid called pGreen.  Drag the mouse along the ring to learn about the plasmid.