Which of the following correctly matches the step of polymerase chain reaction (PCR) with its events?Choose 1 answer:Choose 1 answer:(Choice A) Extension - reaction is cooled and primers bind to complementary sequences on template DNA.AExtension - reaction is cooled and primers bind to complementary sequences on template DNA.(Choice B) Annealing - Taq polymerase extends the primers, synthesizing DNABAnnealing - Taq polymerase extends the primers, synthesizing DNA(Choice C, Checked) Denaturation - high temperature separates the DNACDenaturation - high temperature separates the DNA
Question
Which of the following correctly matches the step of polymerase chain reaction (PCR) with its events?Choose 1 answer:Choose 1 answer:(Choice A) Extension - reaction is cooled and primers bind to complementary sequences on template DNA.AExtension - reaction is cooled and primers bind to complementary sequences on template DNA.(Choice B) Annealing - Taq polymerase extends the primers, synthesizing DNABAnnealing - Taq polymerase extends the primers, synthesizing DNA(Choice C, Checked) Denaturation - high temperature separates the DNACDenaturation - high temperature separates the DNA
Solution
The correct answer is (Choice C, Checked) Denaturation - high temperature separates the DNA.
The Polymerase Chain Reaction (PCR) process involves three main steps:
-
Denaturation: This is the first step of PCR where the double-stranded DNA is heated to separate it into two single strands.
-
Annealing: During the second step, the reaction is cooled to allow primers to bind to the DNA template.
-
Extension: In the third step, Taq polymerase extends the primers, synthesizing new strands of DNA.
Therefore, the option that correctly matches the step of PCR with its events is (Choice C) Denaturation - high temperature separates the DNA.
Similar Questions
Which single statement regarding the Polymerase Chain Reaction (PCR) is FALSE?Group of answer choicesPCR amplifies a specific DNA fragmentBoth primers are complimentary to the same short sequenceA heat-stable DNA polymerase is required to synthesize new DNAHeat (95ºC) is required to separate the DNA strands
Organize the following steps of a PCR cycle in the correct sequence.The mixture is cooled to allow the binding of primers to the end of target DNA sequences.Free nucleotides are added in the 5’ to 3’ direction by the Taq DNA polymerase.The reaction mixture is heated to separate the double-stranded DNA.Group of answer choices1, 2, 31, 3, 22, 1, 32, 3, 13, 1, 23, 2, 1
1. QuestionPolymerase chain reaction (PCR) is a DNA manipulation technique used to: Cut DNA molecules at specific sequences of nucleotides Separate DNA molecules according to size Join molecules of DNA together Copy specific regions of DNA2. QuestionWhat occurs in the first step of PCR? DNA strands are separated by heating them Primers bind to target DNA strands Taq DNA polymerase builds a new DNA molecule using the target strand as a template3. QuestionWhat occurs in the second step of PCR? DNA strands are separated by heating them Primers bind to target DNA strands Taq DNA polymerase builds a new DNA molecule using the target strand as a template4. QuestionWhat occurs in the final step of PCR? DNA strands are separated by heating them Primers bind to target DNA strands Taq DNA polymerase builds a new DNA molecule using the target strand as a template5. QuestionWhy are the two strands of nucleotides in a DNA molcule required to be separated during PCR?6. QuestionReferring to the image below, which primer will bind to the sequence of nucleotides? Primer 1 Primer 2 Neither primer will bind7. QuestionHow does Taq DNA polymerase extend a new strand of nucleotides? By adding nucleotides that are identical to the original strand By adding nucleotides that are complementary to the original strand By joining primers together
The PCR reaction is based on A. DNA replication B. Temperature cycles C. Copies of a target DNA sequence D. All the options
A technique known as polymerase chain reaction (PCR) is able to produce millions of copies of a DNA molecule in only a few hours.Which of the following cellular processes is PCR most similar to?Choose 1 answer:Choose 1 answer:(Choice A) ReplicationAReplication(Choice B) TranscriptionBTranscription(Choice C) MitosisCMitosis(Choice D) TranslationDTranslation
Upgrade your grade with Knowee
Get personalized homework help. Review tough concepts in more detail, or go deeper into your topic by exploring other relevant questions.