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Multiple codons code for the same amino acid in the genetic code to provide redundancy and reduce the impact of errors during protein synthesis. This redundancy helps to ensure accurate translation of the genetic information into proteins.

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5mo ago

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Can multiple codons code for the same amino acid in the genetic code?

Yes, multiple codons can code for the same amino acid in the genetic code. This redundancy is known as degeneracy in the genetic code.


Can more than one codon code for the same amino acid in the genetic code?

Yes, multiple codons can code for the same amino acid in the genetic code.


Why are there more codons than amino acids in the genetic code?

There are more codons than amino acids in the genetic code because multiple codons can code for the same amino acid. This redundancy helps protect against errors in the genetic code and allows for greater flexibility in protein synthesis.


How many codons specify the twenty types of amino acids?

There are 61 codons that specify the twenty types of amino acids, since multiple codons can code for the same amino acid due to the redundancy of the genetic code.


Can different codons code for the same amino acid in the genetic code?

Yes, different codons can code for the same amino acid in the genetic code. This redundancy is known as degeneracy in the genetic code.


There can be more than one what for the same amino acid?

There can be more than one codon that codes for the same amino acid. This is due to the redundancy of the genetic code, where multiple codons can specify the same amino acid.


How do different codons code for the same amino acid in the process of protein synthesis?

During protein synthesis, different codons can code for the same amino acid because of redundancy in the genetic code. This means that multiple codons can specify the same amino acid, allowing for flexibility and error correction in the translation process.


What is the ratio of codon to amino acid?

The ratio of codons to amino acids is typically 3:1, as each codon consists of three nucleotides that correspond to one amino acid in the genetic code. However, there are 64 possible codons (including stop codons) but only 20 standard amino acids, which means some amino acids are encoded by multiple codons. This redundancy in the genetic code helps to minimize the effects of mutations.


Are amino acids only represented by one codon?

No. Amino acids are not always represented by only one codon. Several may code for one amino acid.


How are multiple codons able to code for the same amino acids in the process of protein synthesis?

During protein synthesis, multiple codons can code for the same amino acid because of redundancy in the genetic code. This means that different combinations of three nucleotides (codons) can still specify the same amino acid. This redundancy allows for flexibility and accuracy in protein synthesis.


Why do some codons code for the same amino acid as another codon?

Some codons code for the same amino acid as another codon because of redundancy in the genetic code. This redundancy allows for flexibility and accuracy in protein synthesis, as multiple codons can code for the same amino acid, providing a buffer against errors in DNA replication or transcription.


There can be more than one for the same amino acid?

Yes, multiple codons can code for the same amino acid in the genetic code. This redundancy in the genetic code is known as degeneracy. For example, the amino acid leucine is specified by six different codons: UUA, UUG, CUU, CUC, CUA, and CUG.