AUA - Ile, AGC - Ser, GCU - Ala, and AAA is Lysine.
The mRNA sequence produced from the DNA sequence "ATTCGACCTACG" would be "UAAGCUGGAUGC." This is achieved through the process of transcription, where RNA polymerase reads the DNA template and synthesizes a complementary mRNA strand.
DNA is not made into mRNA, it is transcribed by mRNA. The DNA molecule is split into two strands by the enzyme helicase. One strand is the sense strand and the other is the anti-sense strand. Then mRNA nucleotides pair with their complimentary DNA bases on the antisense strand. The enzyme RNA polymerase causes the mRNA nucleotides to bond with one another, forming a strand of mRNA.
The strand running in the 3'-5' end will be the one that RNA copies, as this is the direction of transcription
Serine, Isoleucine. Last codon is incomplete.
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 sequence of mRNA is directly dependent on the sequence of DNA in the process of transcription. During transcription, RNA polymerase reads the DNA sequence and synthesizes a complementary mRNA strand. Changes in the DNA sequence can result in changes in the mRNA sequence, affecting the protein product that is ultimately produced.
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.
The mRNA sequence generated from the DNA strand tgacgca would be acugcgu. This is because mRNA is complementary to the DNA template strand, so DNA base T pairs with mRNA base A, DNA base G pairs with mRNA base C, DNA base A pairs with mRNA base U, and DNA base C pairs with mRNA base G.
The DNA coding strand serves as a template for the synthesis of mRNA during transcription. It carries the same sequence as the mRNA, except it has thymine (T) instead of uracil (U). The mRNA produced is complementary to the DNA coding strand.
If a strand of DNA has the sequence aagctc, transcription will result in a mRNA molecule with the complementary sequence uucgag. Transcription is the process of creating a mRNA molecule using DNA as a template.
The complimentary strand of MRNA would be AAUUCCGG.
The DNA strand CAT-TAG would produce a complementary mRNA strand of GUA-AUC.
The mRNA sequence produced from the DNA sequence "ATTCGACCTACG" would be "UAAGCUGGAUGC." This is achieved through the process of transcription, where RNA polymerase reads the DNA template and synthesizes a complementary mRNA strand.
TGCA
The correct mRNA sequence that would be produced from the DNA sequence "tactaggctaat" is "auguccgcuuau". This is because in mRNA, thymine (T) is replaced by uracil (U) and the complementary mRNA sequence is produced from the DNA template during transcription.
messenger RNA (mRNA)
GCT AT