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Biotechnology

Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

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Page 1: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

Biotechnology

Page 2: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

Selective Breeding

Nonrandom mating to select for characteristics in parents that are desired in the offspring.

Eg. Breeding domestic animals, domestic crops- corn

Page 3: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,
Page 4: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

Genetic Engineering

Direct manipulation of genes to alter hereditary traits.

Advances in technology have enabled scientists to use several different techniques to study and alter DNA sequences.

Page 5: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

Restriction Enzymes Discovered in bacteria. Enzymes cut the DNA at short,

specific sequences. Some restriction enzymes cut the

DNA leaving strands that over hang called “sticky ends”

For example: G A A T T C C T T A A G

Page 6: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

Recombinant DNA Scientists can use sticky ends to join

together segments of DNA from two different organisms, which is called recombinant DNA.

Foreign DNA is put into a plasmid, a circular piece of DNA found in bacteria.

Page 7: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

plasmid

Enzymes cut plasmid and foreign DNA

The desired DNA segment is inserted into the plasmid.

Foreign DNA

Plasmid with foreign DNA

Page 8: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

Transgenic organisms

The plasmid with the new DNA can be inserted into a new organism.

This is creates a transgenic organism

Page 9: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

Agricultural uses: genetically modified organisms (GMO)To give crops disease/ drought

resistance, add nutrients, etcFlavr Savr tomato: modified to

ripen slowerGolden rice: rice with added

genes to make Vitamin A

Page 10: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

Medical uses: Gene therapyGenetic diseases are often

caused by genes that do not function properly.

Scientists can add a functioning gene into a plasmid and insert it into the patient.

Testing treatment for Cystic Fibrosis- missing one gene.

Page 11: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

Gel ElectrophoresisMethod used to separate DNA

fragments based on their charge and size.

1. Create an agarose gel with wells at the top of each lane.

2. Add DNA samples into each well.

3. Electric current pulls DNA towards positive end of the gel.

Page 12: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,
Page 13: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

Gel electrophoresis cont.DNA segments separate by size.

The longer segments move slower so they stay at the top and the shorter segments move faster and are at the bottom.

Page 14: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

Gel electrophoresis cont.

A “ladder” is also added in another lane.

It is made of DNA fragments of known sizes.

It acts like a ruler to measure the unknown fragment lengths.

Page 15: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,
Page 16: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

DNA Fingerprinting A technique used to analyze DNA.

Can compare or identify similarities between samples of DNA.

Use enzymes to cut DNA samples into segments.Everyone has different length

segments because of random repeated sequences.

Page 17: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

Filter DNA through an agarose gel by the process called gel electrophoresis.

Compare the pattern of the DNA bands .

Matching lengths will appear at the same distance.

Page 18: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,
Page 19: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

Cloning

Remove the nucleus from an egg cell.

Replace with a nucleus from the individual to be cloned.

The cell will divide into an embryo.

Page 20: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

Implant embryo into a surrogate mother.

The offspring that is born will be a genetic clone (not related to surrogate mother).

Page 21: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

Dolly- first cloned mammal

Page 22: Biotechnology. Selective Breeding Nonrandom mating to select for characteristics in parents that are desired in the offspring. Eg. Breeding domestic animals,

Dolly was the first animal to be successfully cloned. She was cloned by Ian Wilmut, Keith Campbell and colleagues at the Roslin Institute in Edinburgh, Scotland.Born July 5, 1996Died Feb 14, 2003