The sequence of the RNA would be UCG-AUG-UGA.
Transcription produces a strand of messenger RNA that is complementary to the DNA that it transcribed. For example, the DNA sequence AGTCGA would be transcribed by messenger RNA as UCAGCU.
The DNA sequence AGGTACGAT would be transcribed into mRNA as UCCAUGCUA, which would then be translated into the amino acid sequence Serine-Methionine-Leucine.
The sequence of the mRNA transcribed from the DNA gene TTACAGGTCCCA would be complementary to the template strand of the DNA. Since mRNA is synthesized using uracil (U) instead of thymine (T), the corresponding mRNA sequence would be AAUGUCCAGGGU. This sequence reflects the direct transcription of the DNA template, replacing each thymine with uracil.
The base sequence of RNA is complementary to the DNA from which it is transcribed. This means that RNA contains the same genetic information as the DNA template, with thymine (T) being replaced by uracil (U).
Then the corresponding side of the DNA will be tgccaattgattcg. When this side is transcribed, the resulting RNA will look like ugccaauugauucg.
Transcription produces a strand of messenger RNA that is complementary to the DNA that it transcribed. For example, the DNA sequence AGTCGA would be transcribed by messenger RNA as UCAGCU.
if the DNA sequence is A C T G then its resulting mRNA sequence will be complementary so it will be T G A C
TCU
The DNA sequence AGGTACGAT would be transcribed into mRNA as UCCAUGCUA, which would then be translated into the amino acid sequence Serine-Methionine-Leucine.
The sense strand of DNA is the strand that has the same sequence as the mRNA that is transcribed from DNA. The antisense strand is the complementary strand of the sense strand, which is used as a template for mRNA synthesis. The mRNA is transcribed from the antisense strand and contains the same sequence as the sense strand.
A. rRNA Type of RNA molecule transcribed from a DNA template B. codon Sequence of three nucleotides on a messenger RNA molecule C. tRNA RNA component of ribosomes D. anticodon Connects mRNA codon to an amino acid E.mRNA Sequence of three nucleotides on a transfer RNA molecule
The sequence of the mRNA transcribed from the DNA gene TTACAGGTCCCA would be complementary to the template strand of the DNA. Since mRNA is synthesized using uracil (U) instead of thymine (T), the corresponding mRNA sequence would be AAUGUCCAGGGU. This sequence reflects the direct transcription of the DNA template, replacing each thymine with uracil.
Intronsare intervening sequence of DNA; does NOT code for a protein.Exons are expressed squence of DNA; codes for a protein.
The base sequence of RNA is complementary to the DNA from which it is transcribed. This means that RNA contains the same genetic information as the DNA template, with thymine (T) being replaced by uracil (U).
The RNA sequence which would be transcribed from the DNA TAG-GCA-TCG would be: AUC-CGU-AGC This is because with DNA and RNA - Adenine (A) binds to Uracil (U), Thymine (T) binds to A, and Cytosine (C) & Guanine (G) bind to each other.
The amino acid sequence of gcgatatcg cannot be determined directly because it is a DNA sequence. In order to determine the amino acid sequence, the DNA sequence first needs to be transcribed into mRNA and then translated into a protein using the genetic code. Each set of three nucleotides (codon) corresponds to a specific amino acid.
Then the corresponding side of the DNA will be tgccaattgattcg. When this side is transcribed, the resulting RNA will look like ugccaauugauucg.