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Which of the following would help slow the evolution of resistance to antibiotics?

          Which of the following would help slow the evolution of resistance to antibiotics?
        

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Biology for AP Courses
Biology for AP Courses
Julianne Zedalis, John Eggebrecht
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Which of the following would help slow the evolution of resistance to antibiotics?
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Transcript

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0:00 Hello everyone.
00:01 So, as we know here that dna have the four bases.
00:07 Okay, this has four nitrogenous bases between purins and pynevidins.
00:14 So they are adenine that is represented as a.
00:20 Then there is thymine which is represented as t.
00:25 Then there is cytosin represented as c.
00:31 And there is guanin which is represented as g.
00:35 So we know that in particularly dna, we find that adenine is having double bonds with the thymine and cytosin is having triple bonds with guanine.
00:50 And these are hydrogen bonds.
00:53 These are actually the hydrogen bonds.
00:57 Often we find that there are hydrogen bonds.
00:59 So now if we want to extract this dna, extract, then we'll find that we need to break the hydrogen bonds, break bonds between the pairs.
01:19 And now to break this bond, we always need a enzyme.
01:25 And that enzyme is known as the dna helicase.
01:29 Dna helicase.
01:33 Dna helicase disrupt this hydrogen bonds between the basic pair to separate them into a y shape.
01:42 Now, as this dna helicase work, the dna is actually broken.
01:49 Broken into a y shape type of structure and that is known as the duplicate fork.
01:59 That is known as duplicate fork.
02:05 And like the place will be the first replica template.
02:14 So this place, this place will be first replica template.
02:25 Now if we say here that what are the formations or what are the processes or steps.
02:34 So, the step one is basically replication, replication forc formation...
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