Structure of Genome Part 3 Flashcards

1
Q

renaturation faster for

A
  • DNA molecules at higher concentration

- easier to find complementary base pairs

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2
Q

rate of renaturation

A
  • inversely proportional to the complexity of the reassociating DNA
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3
Q

complexity

A
  • length of unique sequence DNA

- repeated sequences add to the complexity only once no matter how often they are repeated

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4
Q

cot curves

A
  • Curves that examine the renaturation of DNA and the kinetics of renaturation
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5
Q

if two genomes are different in size (on a bp per genome basis or a mass per genome basis) that when the two genomes are present in the same concentration on a MASS PER VOLUME BASIS.

A
  • the smaller genome will be more concentrated on a MOLECULES OF DNA PER VOLUME BASIS.
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6
Q

two genomes of different sizes are present at the same concentration on a MOLECULES OF DNA PER VOLUME BASIS

A

they will renature at the SAME RATE.

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7
Q
  • Co stands for
  • units of Co
  • t stands for
A
  • concentration of DNA on a mass/volume basis
  • ug/ml or a moles bp/liter.
  • time of reassociation (usually in seconds)
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8
Q

Cot1/2

A
  • a specific cot at which half the renaturing molecules are single-stranded and half are double-stranded
  • the Cot when renaturation is half complete
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9
Q

Does knowing the amount of DNA on a mass per volume basis tell us anything about the size of the DNA molecule?

A

No; independent of of the size of the molecule

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10
Q

Cot1/2 for any specific genome or group of DNA molecules is

A
  • directly related to the complexity of the DNA in genome
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11
Q

Cot 1/2 is a characteristic of any genome or group of DNA molecules

A
  • does not depend on concentration
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12
Q

units for Cot

A

(ug*sec)/mL

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13
Q

How would the Cot½ for E. coli DNA carried out at 1 ug/ml compare to the Cot½ of E. coli DNA carried out at 10 ug/ml?

A

it would be the same

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14
Q

If two genomes of different sizes are present at the same concentration on a MASS PER VOLUME BASIS

A
  • the smaller genome will renature more rapidly.
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15
Q

concentration in terms of cot

A
  • on a MASS PER VOLUME BASIS
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