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Question 1Feliciaand Cait have encoded a message for you using DNA. You will need to use what you’velearned about transcription and translation in order to decode the message contained in this segment of DNA.AAACTTGAATAAACGTAACGACGGTTGCTAACGCGTTAGTGCCGCGCCCTCAGCTATAATGACATGStep 1: TranscriptionIf this segment of DNA is used to build a strand of messenger RNA, what will be the sequence of the nucleotides? Use Watson-Crick base pair rules to arrive at your answer.0 / 5 pointsUUUGAACUUAUUUGCAUUGCUGCCAACGAUUGCGCAAUCACGGCGCGGGAUCGAUAUUACUGUACIncorrect2.Question 2Step 2: TranslationTranslate the message contained in the RNA (your answer from Step 1) into the code to build a protein. Use the codon wheel below to translate your answer to Step 1 into a sequence of amino acids. Find the first letter of your sequence in the inner circle and work outwards to find the letter representing the corresponding amino acid. For example, the codon ATG = M (methionine). In your answer, each amino acid will be represented by a single lette

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Question 1Feliciaand Cait have encoded a message for you using DNA. You will need to use what you’velearned about transcription and translation in order to decode the message contained in this segment of DNA.AAACTTGAATAAACGTAACGACGGTTGCTAACGCGTTAGTGCCGCGCCCTCAGCTATAATGACATGStep 1: TranscriptionIf this segment of DNA is used to build a strand of messenger RNA, what will be the sequence of the nucleotides? Use Watson-Crick base pair rules to arrive at your answer.0 / 5 pointsUUUGAACUUAUUUGCAUUGCUGCCAACGAUUGCGCAAUCACGGCGCGGGAUCGAUAUUACUGUACIncorrect2.Question 2Step 2: TranslationTranslate the message contained in the RNA (your answer from Step 1) into the code to build a protein. Use the codon wheel below to translate your answer to Step 1 into a sequence of amino acids. Find the first letter of your sequence in the inner circle and work outwards to find the letter representing the corresponding amino acid. For example, the codon ATG = M (methionine). In your answer, each amino acid will be represented by a single lette

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AAACTTGAATAAACGTAACGACGGTTGCTAACGCGTTAGTGCCGCGCCCTCAGCTATAATGACATGStep 1: TranscriptionIf this segment of DNA is used to build a strand of messenger RNA, what will be the sequence of the nucleotides? Use Watson-Crick base pair rules to arrive at your answer.

Transcription is the essential process of converting the genetic code stored in DNA into messenger RNA (mRNA). This process is important because DNA is not able to leave the cell. mRNA acts as the messenger, leaving the cell and traveling to the ribosome to be translated into protein.Which of the following RNA strands is the correct transcription of the following strand of DNA?5′  ACCGTA  3′5′  ACCGTA  3′Elimination ToolSelect one answerA3′  TGGCAT  5′3′  TGGCAT  5′B3′  ACCGTA  5′3′  ACCGTA  5′C3′  UGGCAU  5′3′  UGGCAU  5′D3′  ACCGUA  5′3′  ACCGUA  5′

Making a messenger RNA using DNA as a template is called __________________.

The diagram shows a sequence of bases on a DNA template: CAC GTT CGC ATA GAC Which one of the following shows the sequence of bases on the complementary mRNA strand with one substitution mutation? A) CUC GTT CGC UTT GUC B) GTG CAA GGG TAT CTG C) GUG CAA CCG UAU CUG D) GUG CAA GCG UAU GUC E) GTG CAA GCG TAT CTG

A DNA template contains the following bases: 5’-ATT GCG TAA-3’ Which of the following sequences represent the complementary strand that would be synthesised by DNA polymerase? Question 4Answer a. 5’-AAT GCG TTA-3’ b. 5’-TTA CGC AAT-3’ c. 5’-ATT GCG TAA-3’ d. 5’-TAA CGC ATT-3’

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