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Question
14 how do the four different nucleotides found in dna result in twenty different amino acids used to form proteins in the cell? a the four bases each specify one amino acid, and these then combine to form the other sixteen amino acids b the four nucleic acid bases combine in three letter sequences that each define and amino acid c the four nucleic acid bases are converted into trna molecules which can each attach to sixteen different amino acids d the four nucleic acid bases combine in two letter sequences that each define an amino acid
To solve this, we recall how DNA codes for amino acids. DNA nucleotides (A, T, C, G) form codons (three - letter sequences) that correspond to amino acids.
- Option A is wrong because a single base can't code for an amino acid, and amino acids don't combine to form others in this way.
- Option B is correct as codons are three - nucleotide (base) sequences, and each codon codes for one amino acid.
- Option C is wrong because tRNA has anticodons (complementary to codons) and each tRNA carries one specific amino acid, not sixteen.
- Option D is wrong because two - letter sequences would give only \(4^2 = 16\) combinations, but we have 20 amino acids, and the actual code uses three - letter codons (\(4^3=64\) combinations) to code for 20 amino acids.
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B. The four nucleic acid bases combine in three letter sequences that each define an amino acid