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Replication is bidirectional (a) Labeled DNAUnidirectional replicationMAVANLabeled DNA-IAVAVALExpected labeling unidirectional versu bidirectional replicoIVAVABidir...

Question

Replication is bidirectional (a) Labeled DNAUnidirectional replicationMAVANLabeled DNA-IAVAVALExpected labeling unidirectional versu bidirectional replicoIVAVABidirektional replicationWhere is origin?VAVAYAUA

Replication is bidirectional (a) Labeled DNA Unidirectional replication MAVAN Labeled DNA- IAVAVAL Expected labeling unidirectional versu bidirectional replico IVAVA Bidirektional replication Where is origin? VAVAYAUA



Answers

Unidirectional replication of a circular DNA molecule like a plasmid that involves nicking one DNA strand and displacing it while synthesizing a new strand is called _________.

So semi conservative replication is how our d n a replicates. So here is the backbone of our DNA. There's one backbone and your Z other. Okay, so semi conservative replication, these two will separate. So the red strain right here in the green strain right here and in semi conservative replication. Both of these will act as a template for a new DNA. So the new D N A. We'll replicate off the red. And then this thing is Black Line is going to represent the green line and then on this side, the same thing is gonna happen. So we act as a template in this black line will be the same as the red line.

So he gets from DNA replication, we get a single strand of DNA, a double stranded DNA, two single strands of DNA or two double strands of DNA. Well, what we put in what we replicating, well, we're replicating, of course the double stranded DNA. That's what we start with. And when we replicate this, what do we get? Well, we get two double stranded DNA and note here, but I am paying attention to be semi conservative nature of DNA replication, so each of the original strands is replicated and we end up of two double strands.

At the start of DNA replication. We are always going to start with our intact, double stranded DNA molecule, so it's double stranded because we have to sugar, phosphate backbone and the components of the backbone are the state marshals you can see down here, and our sugar or D Oxy Rye bows group, now attached to each sugar, is going to be one of four bases. So either guanine Adam mean timing or side of seen. And you'll notice that in this intact, double stranded helix molecule, we'll always have hydrogen bonding holding our base pairs. Together, we're going to mean pain that double stranded helix formation, so guanine and cytosine will always the on it together. And this occurs by three hydrogen bonds, and you'll notice that hydrogen is always bonding to an electro negative molecule. Where with Adam ing and timing, you always have to hydrogen bonds holding these molecules together, and you always see timing and Adami pairing up and again our hydrogen will be bonded to our electro negative molecules

Um so when a cell is open, a cell is about to divide. About two. Divide the DNA, the D N A. Within that nuclear's unwind on wine and they high Trojan and the hydrogen bonds. Barnes joining the complimentary basis, joining the complementary basis break break forming to single parent strength to single parent strengths with the help offer. Enzyme with the help often and sime the help often enzyme, uh, and and help often in time. Uh, our daughter Strand is formed. Our daughter Strand is formed is formed, which is complementary, complimentary toe each bad and strand each parent each parent strand trend with the correct complimentary with the correct complimentary basis basis in the correct order in the correct order. The hydrogen bond the hydrogen bond is then formed is been formed between the strengths strands resulting in thio come complete copies off the A piece off the original DNA DNA one for each daughter cell, one for each daughter. So


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