Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes...

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Molecular Genetics Lab Review

Transcript of Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes...

Page 1: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.

Molecular Genetics Lab

Review

Page 2: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.

Bacterial Transformation• Genetic transformation—host organism takes

in and expresses foreign DNA• Genetic engineering—manipulation of an

organism’s genome using DNA technology– Introduction of foreign DNA into organism

• You used antibiotic-resistance plasmids to transform E. coli– If bacteria incorporates the foreign

DNA, they became ampicillin resistant

Page 3: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.

E. coli

• Most common bacterium in human gut• Studied extensively• Important research organism– Reproduce rapidly– A single cell can divide to form millions of cells

overnight– No nuclear envelope surrounding chromosome– One single chromosome– Some contain plasmids resistant to certain drugs

Page 4: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.

Plasmids

• Circular pieces of DNA• Outside the main bacterial chromosome• Carry their own genes for specialized functions• Plasmids can be used in genetic engineering to

introduce foreign genes into a bacterium

Page 5: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.

The Experiment

Page 6: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.
Page 7: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.
Page 8: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.
Page 9: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.

Results

Page 10: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.
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Page 12: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.

Gel Electrophoresis

Page 13: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.

Restriction Enzymes

• Bacteria have enzymes that cut (or digest) the DNA of foreign organisms to protect themselves

• Scientists have isolated several hundred of these enzymes, restriction enzymes

• Each is able to recognize and cut at a specific DNA sequence, the recognition sequence

• DNA fragments can be analyzed and used

Page 14: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.

The Experiment

• You used restriction enzymes to cut DNA into fragments

• You used gel electrophoresis to separate the samples of DNA that had been cut

• You compared fragments of unknown size to fragments of a known size to calculate the unknown fragment sizes

Page 15: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.

Restriction Enzymes

• Restriction enzymes are specific to an exact recognition sequence

• Sticky ends & Blunt ends

Page 16: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.

Gel Electrophoresis

• Separates molecules of the rate of movement through a gel under electricity

• DNA is negatively charged—will move toward positive pole of the gel

• Different sized fragments move at different rates– Smallest move the most quickly, thus migrate the

farthest

Page 17: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.
Page 18: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.

Analysis of Results

• Each fragment is a particular number of nucleotides long

• To find out the size of the unknown DNA fragments, you ran it along side DNA with known fragment sizes

• HindIII cut DNA into known fragment sizes• It will determine fragment sizes of DNA cut by

EcoRI

Page 19: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.

Graphing HindIII

Page 20: Molecular Genetics Lab Review. Bacterial Transformation Genetic transformation—host organism takes in and expresses foreign DNA Genetic engineering—manipulation.